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Fractura de clavícula

Clavicle fractures — when conservative management is fine and when fixation is indicated.

Updated Sep 2026
Una ilustración dibujada a mano de una persona sin rostro que ha caído al suelo sobre el hombro, sujetándose la clavícula con dolor.
Radiografía que muestra una fractura desplazada de la clavícula izquierda. Kieran Hirpara 4.0

Esta página se tradujo automáticamente y todavía no la ha revisado un médico. La versión en inglés es la versión oficial.

Qué está sintiendo

La fractura de clavícula ocurre de forma repentina. La mayoría de estas fracturas se deben a una caída sobre el hombro o a un golpe directo en esa zona. El deporte, el ciclismo y los accidentes de tráfico son causas frecuentes. Por lo general, se da cuenta del momento en que ocurre.

De inmediato, siente dolor sobre la clavícula, el hueso que va desde el esternón hasta el hombro. La zona se hincha y presenta hematomas. Si los extremos fracturados se han separado, es posible ver o sentir un bulto a lo largo del hueso; además, el hombro del mismo lado puede quedar más bajo de lo normal. El brazo se siente pesado y no querrá levantarlo ni moverlo. Mantener el brazo inmóvil junto al cuerpo alivia un poco el dolor.

Por lo general, la fractura se produce en la parte media del hueso; aproximadamente el 80 % de las fracturas de clavícula ocurren en esa zona. En ocasiones, los extremos fracturados presionan la piel desde debajo. Su cirujano examinará la piel sobre el bulto, así como el funcionamiento de los nervios y vasos sanguíneos del brazo, ya que estos pasan muy cerca de la fractura.

En los primeros días, el dolor es más intenso al mover el brazo y suele interrumpir el sueño por la noche. Cosas sencillas como vestirse, alcanzar algo en un armario o acostarse sobre ese hombro resultan dolorosas. La hinchazón disminuye durante la primera o segunda semana, y el dolor se atenúa gradualmente a medida que el hueso comienza a unirse. Durante varias semanas seguirá sintiendo molestias si se apoya sobre ese lado o levanta objetos pesados.

La mayoría de las fracturas de clavícula sanan bien sin necesidad de cirugía. Sin embargo, en algunos casos la cirugía es beneficiosa; por ejemplo, cuando el hueso se ha fragmentado, cuando los extremos se han desplazado 2 cm o más, o cuando la fractura se localiza en el extremo externo, cerca del hombro. Su cirujano le explicará qué tratamiento es el más adecuado para su caso concreto y para sus necesidades personales.

¿Qué ocurre realmente?

La clavícula es un hueso delgado y curvo, con forma de una S alargada. Actúa como soporte que conecta el esternón con el omóplato, manteniendo el hombro separado del pecho para que el brazo pueda moverse libremente. A lo largo de su longitud, músculos y ligamentos fuertes lo sujetan; además, los nervios y vasos sanguíneos que van al brazo pasan justo detrás de él.

Cuando una persona cae sobre el punto del hombro, el hueso se rompe. Imagínese un palo de madera que sostiene una tienda de campaña: si dicho palo se rompe por la mitad, la tienda se hunde hacia un lado. Eso es exactamente lo que sucede aquí. El fragmento externo de la fractura desciende por el peso del brazo, mientras que el fragmento interno es traccionado hacia arriba por un músculo del cuello. Los dos extremos se deslizan uno respecto al otro, motivo por el cual se puede ver o palpar un bulto.

El hueso se repara al unir nuevamente los extremos rotos, de forma similar a como una rama agrietada se sella. Si dichos extremos permanecen próximos, se unen por sí solos sin problemas. En cambio, si se han separado o el hueso se ha fragmentado en varias piezas, es posible que no se mantengan estables el tiempo suficiente para soldarse. También pueden unirse en una posición acortada o torcida, alterando así la forma general del hombro.

La ubicación de la fractura también es relevante. La mayoría ocurren en la zona central del hueso, pero algunas se producen en el extremo externo, cerca del hombro, donde fuertes ligamentos unen la clavícula al omóplato. Si esos ligamentos se desgarran junto con el fragmento fracturado, este queda sin soporte y tiende a permanecer separado. En tales casos, suele ser necesaria una intervención quirúrgica para inmovilizarlo mientras cicatriza.

Las fracturas en el extremo interno, próximo al esternón, son poco frecuentes y generalmente se deben a un impacto muy fuerte.

Qué podemos hacer al respecto

El Dr. Kieran Hirpara, cirujano de miembro superior en el Mater Private Hospital Rockhampton, adapta el tratamiento a la lesión específica que usted presenta. Por lo general, los pacientes son derivados a nuestra clínica por su médico de cabecera; si un fisioterapeuta le ha sugerido que nos consulte, igualmente necesitará una derivación de su médico de cabecera para poder acceder al reembolso de Medicare. En esa primera visita, tomamos su historia clínica, examinamos su hombro y solicitamos estudios de imagen cuando resultan necesarios. Por lo general, una radiografía simple basta para visualizar la fractura. En ocasiones se realiza una radiografía en posición vertical, ya que al estar de pie se observa cuánto se han desplazado los fragmentos óseos bajo el peso del brazo.

La mayoría de las fracturas de clavícula se tratan sin cirugía. Si los fragmentos fracturados están muy cerca uno del otro, o si el desplazamiento es mínimo, inmovilizamos el brazo mediante un cabestrillo. En fracturas situadas en la zona media del hueso, esto suele implicar el uso del cabestrillo durante 1 a 3 semanas, hasta que el dolor disminuye. Para fracturas cercanas al extremo interno de la clavícula, podemos mantener el hombro inmóvil durante 2 a 6 semanas. Una vez que el dolor cede, se inicia la movilización del hombro, guiada por la fisioterapia. Volvemos a verle durante las primeras semanas, pues una fractura que inicialmente parecía bien alineada a veces se desplaza antes de consolidarse. Una revisión a las 6 semanas nos ayuda a predecir si el hueso se unirá sin necesidad de intervención quirúrgica.

En ciertos casos, se recomienda la cirugía desde el principio, no como último recurso. Esta puede ser la opción adecuada cuando el hueso se ha desplazado considerablemente, se ha fragmentado en varias piezas o ha acortado 2 cm o más. Las fracturas en el extremo externo, cerca del hombro, donde los ligamentos de soporte se han desgarrado, también pueden requerir cirugía para mantener el hueso estable. Asimismo, la cirugía puede ser conveniente si su trabajo o deporte exigen que recupere el uso del hombro lo antes posible. La operación fija los fragmentos fracturados en su posición normal mientras sanan, permitiéndole mover el brazo y volver al trabajo antes que si se usara únicamente el cabestrillo. La decisión se toma de forma conjunta: muchas de estas fracturas pueden tratarse sin cirugía, pero el bulto resultante de un desplazamiento óseo y el retorno más lento a la actividad pueden no ajustarse a sus necesidades.

En cualquier caso, las primeras semanas son similares. Los analgésicos le mantienen cómodo, especialmente por la noche. Se protege el hombro mientras el hueso se consolida, y se evitan los deportes de contacto durante al menos 2 a 3 meses para que la fractura cicatrice por completo. La fisioterapia comienza en el momento oportuno según su lesión: primero se restaura el movimiento y luego la fuerza.

Qué esperar

La mayoría de las fracturas de clavícula sanan bien. En un grupo de 222 pacientes, el 95 % sanó sin ningún problema. El 5 % restante no logró la unión ósea, situación conocida como no-unión. Si su fractura se trata sin cirugía y los extremos óseos se han separado, la probabilidad de que el hueso no se una aumenta; en fracturas que afectan el centro del hueso, esa probabilidad es de alrededor del 14 %. Una fractura que no se une puede tratarse posteriormente mediante injerto óseo y placa.

Si el hueso se cura en una posición acortada o torcida, esto se denomina mal-unión. En fracturas con desplazamiento tratadas con cabestrillo, es normal que se produzca algún cambio en la forma de la clavícula. En la mayoría de los adultos esto se traduce en una pequeña protuberancia y un hombro ligeramente más bajo; rara vez genera problemas. No obstante, cuando el hueso se acorta más de 2 cm, la posición final puede provocar dolor y debilidad al mover el hombro. En los niños, el hueso suele remodelarse con el tiempo y la protuberancia desaparece.

La recuperación sigue un patrón constante: se usa el cabestrillo durante las primeras 1 a 3 semanas, o más tiempo en algunos casos, y el dolor disminuye progresivamente cada semana. Se debe evitar la práctica de deportes de contacto durante al menos 2 a 3 meses. Si se opta por cirugía, se puede mover el brazo y volver al trabajo antes que con el cabestrillo; además, el hueso se mantiene en su posición normal mientras sana. No obstante, la cirugía también conlleva sus propios riesgos: la placa o la varilla bajo la piel pueden causar irritación; en un estudio comparativo, el 70 % de quienes llevaban placa y el 66 % de quienes llevaban varilla reportaron cierta irritación. Muchas personas también notan entumecimiento cerca de la cicatriz. En general, las complicaciones postquirúrgicas ocurren en aproximadamente el 8 % de los casos.

En cualquier caso, la mayoría de las personas terminan con un hombro que funciona correctamente. Los adolescentes con fracturas totalmente desplazadas obtienen excelentes resultados sin cirugía a los cinco años; los adultos, por su parte, refieren buena funcionalidad del hombro años después de seguir cualquiera de los dos tratamientos. El seguimiento médico riguroso es fundamental, pues una fractura que inicialmente parecía estable puede desplazarse antes de consolidarse.

¿Cuándo consultar a un profesional?

Busque atención médica urgente si tiene una fractura de clavícula con una herida sobre el lugar de la fractura, entumecimiento u hormigueo en el brazo, o si no puede utilizar el brazo en absoluto. Estos síntomas requieren evaluación inmediata. Los nervios y vasos sanguíneos que van al brazo pasan muy cerca del hueso, por lo que pueden verse afectados por la lesión.

Consulte a su médico de cabecera si el dolor no disminuye, o si la hinchazón, el movimiento y la fuerza del hombro no mejoran semana tras semana a medida que el hueso sana. Una fractura que al principio parecía estable a veces puede desplazarse antes de consolidarse; por eso es importante el seguimiento continuo. Solicite una evaluación especializada si le preocupa la recuperación de su hombro.

En mayor profundidad

Esta sección profundiza más de lo necesario para que usted tome sus propias decisiones de tratamiento. La fractura de clavícula merece una lectura adicional, ya que la cirugía garantiza, sin duda, la consolidación ósea; sin embargo, la evidencia de que mejora el funcionamiento del hombro es considerablemente menor.

La cirugía favorece la consolidación ósea; la diferencia funcional es menor

Se han realizado numerosas comparaciones, y los resultados son consistentes si se interpretan con atención. En un total de 1,760 pacientes, el tratamiento quirúrgico de las fracturas del tercio medio de la clavícula produjo menos casos de no consolidación, menos maluniones y un retorno al trabajo más rápido [1].

Sin embargo, el resultado que más interesa a la mayoría de los pacientes presenta una diferencia menor. En 1,965 pacientes, la cirugía aumentó la probabilidad de consolidación ósea al cabo de un año, pero no elevó los índices funcionales en magnitudes que los pacientes considerarían clínicamente relevantes [2].

Ambas afirmaciones son ciertas al mismo tiempo; la distinción entre ellas es precisamente lo que determina la decisión terapéutica. La cirugía favorece una consolidación ósea más fiable y permite volver al trabajo antes. No obstante, no se ha demostrado que mejore la función del hombro al año de la intervención.

¿Qué factor determina el riesgo de no consolidación?

Si la consolidación ósea es el principal beneficio esperado, entonces la pregunta lógica es: ¿cuál es la probabilidad de que la fractura no se una sin intervención quirúrgica? Pues ese es el riesgo que la cirugía busca eliminar.

Uno de esos factores es cuantificable y modificable. El hábito de fumar implica un cociente de riesgo de 3,68 para la no consolidación en fracturas desplazadas de la tercera media de la clavícula tratadas de forma conservadora; los autores recomiendan informar a los pacientes al respecto y ofrecerles apoyo para dejar de fumar [3].

Un aumento cercano al cuádruple en el riesgo es suficiente para alterar el cálculo del riesgo. En el caso de un fumador con una fractura desplazada, la opción no quirúrgica implica un riesgo considerablemente mayor que en un no fumador con la misma lesión; además, dejar de fumar constituye una intervención inmediata y sin necesidad de incisión alguna.

La fractura en el extremo externo se comporta de manera distinta

Las fracturas en el extremo externo de la clavícula, cerca del hombro, constituyen un problema aparte: el fragmento óseo es pequeño y los ligamentos que normalmente lo sujetan suelen estar dañados, por lo que las tasas de no unión son más elevadas.

Al comparar distintos métodos de fijación en 2,284 pacientes, las placas con gancho arrojaron puntuaciones Constant-Murley significativamente más bajas, así como tasas de complicaciones y revisiones quirúrgicas más altas que la fijación coracoclavicular; no obstante, no hubo diferencias en la tasa de unión ósea. Por otro lado, los pacientes tratados de forma no quirúrgica presentaron buenos resultados funcionales [4].

De esto se desprenden dos conclusiones. En cuanto a los tratamientos quirúrgicos, la placa con gancho rinde peor, lo cual coincide con lo que indica la literatura sobre la misma prótesis en relación con la articulación acromioclavicular. Además, el tratamiento no quirúrgico de estas fracturas permite obtener buenos resultados funcionales a pesar de la mayor tasa de no unión; esto sugiere que dicha no unión suele ser más tolerable de lo que el término implica.

¿Cuánto cuesta realmente una consolidación anómala?

Dado que la ventaja funcional de la cirugía es mínima, vale la pena saber qué implica aceptar una consolidación anómala. Una clavícula que se ha soldado de forma más corta y con inclinación genera un bulto visible y acorta ligeramente el cinturón escapular. La mayoría de las personas se adaptan a ello sin sufrir ninguna pérdida funcional apreciable.

El cambio estético es permanente y real; para algunas personas, eso basta como motivo para optar por la cirugía. Se trata de un motivo legítimo para someterse al procedimiento, aunque distinto del objetivo de lograr un mejor funcionamiento del hombro.

Referencias

[1] Smeeing DP, van der Ven DJ, Hietbrink F, Timmers TK, van Heijl M, Kruyt MC, et al. Tratamiento quirúrgico versus no quirúrgico de las fracturas del tercio medio de la clavícula en pacientes de 16 años o más: revisión sistemática, metanálisis y comparación de ensayos controlados aleatorizados y estudios observacionales. Am J Sports Med. 2016;45(8):1937-45. https://doi.org/10.1177/0363546516673615

[2] Axelrod DE, Ekhtiari S, Bozzo A, Bhandari M, Johal H. ¿Cuál es la mejor evidencia para el manejo de las fracturas desplazadas del tercio medio de la clavícula? Una revisión sistemática y metanálisis de red de 22 ensayos controlados aleatorizados. Clin Orthop Relat Res. 2019;478(2):392-402. https://doi.org/10.1097/CORR.0000000000000986

[3] Dietrich G, Terrier A, Favre M, Elmers J, Stockton L, Soppelsa D, et al. Influencia del tabaquismo en la consolidación de las fracturas desplazadas del tercio medio de la clavícula tratadas de forma conservadora: revisión sistemática y metanálisis. Bone Joint J. 2023;105-B(7):801-7. https://doi.org/10.1302/0301-620X.105B7.BJJ-2022-1336.R1

[4] Uittenbogaard SJ, van Es LJ, den Haan C, van Deurzen DF, van den Bekerom MP. Resultados, tasa de consolidación y complicaciones tras el tratamiento quirúrgico y no quirúrgico de las fracturas distales de la clavícula de tipo II según Neer: revisión sistemática y metanálisis. Am J Sports Med. 2021;51(2):534-44. https://doi.org/10.1177/03635465211053336


Evidence & references

This is the clinical evidence summary written for health professionals. It is technical, and it lists the research this page was built from. You do not need to read it to understand your treatment or to make a decision about it.

Overview

  • If patients with medial clavicle fractures survive the initial trauma, good clinical and functional outcomes are expected regardless of whether surgical or nonsurgical management is chosen [1].
  • Close follow-up is warranted for nonoperatively treated clavicle fractures [2].
  • Specific treatment of clavicle fractures should be individualized based on fracture characteristics and patient expectations rather than broadly applied [9].
  • The most common complications following clavicle fractures, whether treated operatively or non-operatively, are non-unions and malunions [10].
  • Clavicle fixation is a safe and effective procedure in the pediatric population with a lack of serious complications [17].
  • The Sleutel-TRIAL provides level-1 evidence for the comparison of consolidation and functional outcome between two standardised treatment options for dislocated midshaft clavicular fractures [19].
  • Nonoperative treatment of adolescent clavicle fractures demonstrated lower complication rates and similar satisfaction and functional outcomes compared to operative treatment [25].
  • Most mid-shaft clavicle fractures can be treated effectively by non-operative means [36].
  • A select group of patients with completely displaced fractures, shortening of 2 cm or more, or specific indications benefit from surgical fixation which has been shown to result in improved outcomes compared with non-operative measures [36].
  • Current evidence suggests that the majority of clavicular fractures in adolescents can and should be treated nonoperatively [43].
  • Operative treatment with plate and screw application has consistently good outcomes with a low complication rate in selected cases of adolescent clavicular fractures [43].
  • There may be additional circumstances beyond absolute indications for surgical intervention that warrant ORIF at initial presentation for displaced midshaft clavicle fractures in the adolescent population [44].
  • There is an increasing trend toward stabilization and fixation of markedly displaced midshaft clavicle fractures in adolescents due to concerns about symptomatic malunion and poor functional outcomes with nonsurgical management [102].
  • Definitive indications for fixation of markedly displaced midshaft clavicle fractures in adolescents remain unclear [102].
  • Patient selection for surgery may influence functional outcome after midshaft clavicle fracture [107].

Anatomy & Pathophysiology

Bony Anatomy

  • The clavicle is the only long bone to ossify by intramembranous ossification [12].
  • The clavicle begins ossification from two primary centers (medial and lateral) by 5 to 6 weeks of gestation [48].
  • By 7 to 8 weeks of gestation, the clavicle has assumed its overall contour and “S” shape [48].
  • Approximately 80% of clavicle growth occurs from the medial physis [48].
  • The lateral epiphysis of the clavicle fuses at approximately 18 to 19 years of age [48].
  • The medial epiphysis is the last in the body to ossify, occurring at 18 to 20 years of age [48].
  • The medial epiphysis completes ossification at 23 to 25 years of age [48].
  • In the transverse plane, the clavicle resembles an italic S [52].
  • The greater radius of curvature occurs at the medial curve, which is anteriorly convex [52].
  • The smaller lateral curve of the clavicle is posteriorly convex [52].
  • The clavicle is somewhat rounded in its midsection and medially, and relatively flat laterally [52].
  • The distal clavicle is flat in the AP plane [12].
  • The medial end of the clavicle has a 30% incidence of a rhomboid fossa on its inferior surface where the costoclavicular ligaments insert [52].
  • The medial end of the clavicle has a 2.5% incidence of an actual articular surface facing inferiorly toward the first rib [52].
  • The middle portion of the clavicle contains the subclavian groove where the subclavius muscle has a fleshy insertion [52].
  • The lateral portion of the clavicle has a coracoclavicular process when present [52].
  • The conoid ligament attaches to the clavicle at the conoid tubercle [52].
  • The trapezoid ligament attaches to the clavicle at the trapezoid line [52].
  • The distance from the lateral edge of the clavicle to the medial edge of the conoid tubercle is approximately 45 mm in male and female specimens [52].
  • The distance from the lateral edge of the clavicle to the center of the trapezoid tuberosity is approximately 25 mm in male and female specimens [52].
  • The primary blood supply to the clavicle is periosteal [12].
  • There is no nutrient blood supply to the clavicle [12].
  • The clavicle is subcutaneous [12].
  • The muscular envelope of the clavicle includes the platysma, pectoralis major, deltoid, and some of the strap muscles of the neck [12].

Ligaments and Soft Tissue Attachments

  • The coracoclavicular (CC) ligaments consist of the conoid (medial) and trapezoid (lateral) components [12].
  • The CC ligaments are the primary stabilizers to superior (vertical) translation of the distal clavicle [12].
  • The trapezius muscle inserts on the posterosuperior surface of the distal end of the clavicle [52].
  • The subclavius muscle has a fleshy insertion on the inferior surface of the middle third of the clavicle [52].
  • The deltoid originates on the anterior portion of the inner surface of the lateral curve of the clavicle [52].
  • The pectoralis major originates from the anterior portion of the medial two-thirds of the clavicle [52].
  • The sternocleidomastoid largely originates on the posterior portion of the middle third of the clavicle [52].
  • The sternohyoid originates on the clavicle just medial to the origin of the sternocleidomastoid [52].
  • The subclavian vein, subclavian artery, and brachial plexus are located posterior to the clavicle [52].
  • The medial anterior curve of the clavicle is described as an accommodation for the subclavian vein and artery and brachial plexus [52].
  • The mean distance of the neurovascular bundle from the posterior border of the clavicle is 9.2 mm [123].

Biomechanics and Functional Role

  • The clavicle serves as the primary stabilizer between the axial skeleton (via the sternoclavicular joint) and the appendicular skeleton (via the acromioclavicular joint) [12].
  • The clavicle acts as the main strut maintaining position of the shoulder girdle when subjected to compression force directed from laterally [54].
  • The clavicle is the only bony articulation between the axial skeleton and the upper limb [54].
  • Functionally, the clavicle mainly acts as a point of muscle attachment [52].
  • Some literature suggests that with good repair of the muscle, the only functional consequences of surgical removal of the clavicle are limitations in heavy overhead activity [52].
  • Others have found that sudden loss of the clavicle in adulthood has a devastating effect on shoulder function [52].
  • The superior shoulder suspensory complex (SSSC) is a bone–soft-tissue ring that provides a stable connection of the glenoid and scapula to the clavicle [12].
  • The SSSC is composed of four bony landmarks: distal clavicle, acromion, coracoid process, and glenoid neck [12].
  • The SSSC includes the supporting ligamentous complexes of the AC joint and the CC ligaments [12].

Mechanism of Injury and Deformity

  • A direct blow to the point of the shoulder is the commonest reported mechanism of injury that produces a midshaft fracture of the clavicle [54].
  • The most common mechanism of injury in clavicle fractures is a direct blow to the shoulder, whether following a fall or because of direct trauma [40].
  • A fall on an outstretched hand can result in a clavicle fracture [40].
  • A fall on the shoulder or the outstretched hand may fracture the clavicle [4].
  • When the shoulder girdle is subjected to compression force directed from laterally, failure can occur in the acromioclavicular articulation, the clavicle, or the sternoclavicular joint [54].
  • Most (85%) clavicle fractures occur in the midshaft of the bone where the bone is narrowest and enveloping soft tissue structures are most scarce [54].
  • The direction of the initial deforming force, and both gravitational and muscular forces on the clavicle result in the typical deformity seen after fracture [54].
  • In a displaced midshaft fracture, the distal fragment is translated inferiorly, anteriorly, and medially (shortened), and rotated anteriorly [54].
  • The lateral fragment of a fractured clavicle is pulled down by the weight of the arm [4].
  • The medial fragment of a fractured clavicle is held up by the sternomastoid muscle [4].
  • The typical deformity of middle-third fractures is caused by a medial fragment pulled superiorly by the sternocleidomastoid muscle, with the weight of gravity pulling downward on the lateral fragment [12].
  • The distal fragment being translated inferiorly, anteriorly, and medially results in the scapula being protracted [54].
  • It is typical to see a large abrasion or contusion on the posterior aspect of the shoulder in patients with displaced midshaft clavicular fractures [54].
  • Simple falls from a standing height are unlikely to produce a displaced fracture in a healthy young person but can result in injury in elderly, osteoporotic individuals [54].
  • Fractures resulting from trivial mechanisms in elderly patients are typically seen in the distal third of the clavicle [54].
  • Clavicle fractures are rarely open, despite being caused by high-energy trauma [40].
  • Vascular and neurological complications are rare [4].
  • Damage to the lung or vessels beneath the clavicle is very rare despite deformity [4].

Classification

Epidemiology and Mechanism

  • Clavicle fractures are the most commonly occurring fracture, with the middle third being the most frequent site [6].
  • A fall on an outstretched hand can result in a clavicle fracture, a mechanism initially thought to be the most common cause [40].
  • The incidence of clavicle fractures was 1.23% [82].

Allman Classification

  • Clavicle fractures were initially classified in 1967 based on their anatomic location and in descending order of incidence [40].
  • In the Allman classification, Type I fractures involve the middle third of the clavicle [40].
  • In the Allman classification, Type II fractures involve the lateral third of the clavicle [40].
  • In the Allman classification, Type III fractures involve the medial third of the clavicle [40].
  • The Allman classification divides the clavicle into thirds [111].

Neer Classification (Distal/Lateral)

  • In 1968, the Neer classification subclassified Type II (lateral third) clavicle fractures into three types depending on the integrity of the CC ligaments and the relationship of the fracture line with the CC ligaments and AC joint [40].
  • Neer Type I lateral third fractures occur lateral to the CC ligaments and are usually stable [40].
  • Neer Type II lateral third fractures are medial to the CC ligaments, are usually unstable, and require surgical management [40].
  • Neer Type IIA lateral third fractures occur medial to the intact conoid and trapezoid ligaments [40].
  • Neer Type IIB lateral third fractures occur lateral to the torn conoid ligament but medial to the intact trapezoid ligament [40].
  • Neer Type III lateral third fractures are intra-articular fractures through the AC joint with intact CC ligaments [40].
  • Neer Type III lateral third fractures are usually stable but can result in the development of AC joint arthritis [40].
  • Neer Type IV lateral third fractures involve disruption of the clavicular periosteal sleeve in pediatric patients, with displacement occurring at the junction of the metaphysis and physis [40].
  • Neer Type V lateral third fractures involve a small, inferior cortical bone fragment remaining attached to the CC ligaments, with the proximal and distal fragments not connected to the coracoid process [40].
  • Neer Type V lateral third fractures are rare and generally require surgical intervention for reduction and stabilization [40].
  • The modified Neer classification remains the predominantly cited classification system for distal clavicle fractures [55].
  • The intra- and interobserver reliability of the modified Neer classification has been demonstrated to be inconsistent, which can lead to incorrect treatment choices and misclassifications in research [55].
  • The interrater agreement of the modified Neer classification system for lateral clavicle fractures was fair [71].
  • Additional 3D CT did not improve the overall level of interrater or intrarater agreement of the modified Neer classification system or associated treatment choice [71].
  • Nondisplaced distal clavicle fractures can be treated with nonoperative management, specifically Neer types I, III, and IV [95].
  • According to the classifications of Neer and Jäger/Breitner, a clear therapeutic strategy for lateral clavicular fractures can be defined [85].

Craig Classification

  • In 1990, Craig introduced a classification of clavicle fractures based on variable fracture patterns seen within the three broad groups of Allman’s classification [41].
  • Craig Group I fractures are fractures of the middle third and account for 80% of clavicle fractures [41].
  • Craig Group II fractures are fractures of the distal third and account for 12% to 15% of all clavicle fractures [41].
  • Craig Group III fractures are fractures of the proximal third [41].
  • Craig Type I distal fractures are interligamentous, occurring between the conoid and trapezoid or between the coracoclavicular and acromioclavicular ligaments, with minimal displacement [41].
  • Craig Type I distal fractures are the most common by a ratio of 4:1 [41].
  • Craig Type II distal fractures are displaced secondary to a fracture medial to the coracoclavicular ligaments [41].
  • Craig Type IIA distal fractures have both conoid and trapezoid ligaments attached to the distal segment [41].
  • Craig Type IIB distal fractures have the conoid ligament torn while the trapezoid ligament remains attached to the distal segment [41].
  • There is no functional difference between Craig Type IIA and Type IIB distal fractures [41].
  • Craig Type III distal fractures involve the articular surface of the acromioclavicular joint alone [41].
  • Craig Type IV distal fractures occur in children with ligaments intact to the periosteum and displacement of the proximal fragment [41].
  • Craig Type V distal fractures are comminuted, with ligaments attached neither proximally nor distally, but to an inferior, comminuted fragment [41].
  • The Craig classification best predicted nonunion or delayed union of lateral third clavicle fractures [40].

Robinson/Edinburgh Classification

  • The Edinburgh classification was proposed in 1998, dividing clavicular fractures by anatomic location into type I (medial third), type II (middle third), and type III (lateral third) [40].
  • In the Robinson classification, a medial clavicle fracture is defined as a fracture in the medial fifth of the clavicle [113].
  • In the Robinson classification, a lateral clavicle fracture is defined as a fracture in the lateral fifth of the clavicle [113].
  • In the Robinson classification, a clavicle shaft fracture is defined as a fracture in the intermediate three-fifth of the clavicle [113].
  • The Edinburgh classification subgroup A indicates displacement less than 100% and subgroup B indicates displacement more than 100% [40].
  • The Edinburgh classification subgroup 1 indicates no articular involvement and subgroup 2 indicates intra-articular extension of the fracture [40].
  • The Edinburgh classification Type II subgroup 1 indicates simple or wedge-type fractures and subgroup 2 indicates comminuted or segmented fractures [40].
  • The Robinson classification had the best prognostic potential for middle third clavicle fractures [40].
  • The Edinburgh classification has shown a relationship with clinical outcome for shaft fractures [113].
  • Neer Type IIB fractures are also known as Robinson type 3B [93].

AO/OTA Classification

  • The AO/OTA classification assigns the number 15 to the clavicle [113].
  • In the AO/OTA classification, the clavicle is divided into a medial (1), shaft (2), and lateral (3) part [113].
  • The AO/OTA classification uses the A, B, and C system for simple, wedge, and comminuted fractures with additional numbers representing different fracture patterns [113].

Pediatric Classification

  • In children, displacement of the lateral clavicle occurs through the periosteal sleeve rather than through the coracoclavicular ligaments [116].
  • Most injuries to the lateral end of the clavicle in the immature skeleton are fractures involving the metaphyseal or physeal regions (Salter-Harris type I or II fractures) [116].
  • The lateral epiphysis of the clavicle does not ossify until the age of 18 or 19 years [116].
  • Pediatric lateral clavicle injuries are classified into six types based on the Dameron and Rockwood classification [116].
  • Pediatric Type I injuries are caused by low-energy trauma with mild strain of the acromioclavicular ligaments and no disruption of the periosteal tube [116].
  • Pediatric Type II injuries involve complete disruption of the acromioclavicular ligaments with partial damage to the superolateral aspect of the periosteal sleeve [116].
  • Pediatric Type III injuries involve complete disruption of the acromioclavicular ligaments and greater disruption of the periosteal sleeve, resulting in gross instability [116].
  • In Pediatric Type III injuries, the coracoid–clavicle interval is increased by 25% to 100% compared to the uninjured contralateral side [116].
  • Pediatric Type IV injuries involve posterior displacement of the lateral clavicle, which can pierce the trapezius muscle and/or fascia [116].
  • Pediatric Type V injuries involve complete disruption of the superior aspect of the periosteal sleeve, resulting in displacement of the distal clavicle through the trapezial fascia into the subcutaneous tissues [116].
  • In Pediatric Type V injuries, the coracoid-clavicle interval is increased by 100% or more compared to that of the contralateral side [116].
  • Pediatric Type VI injuries involve inferior displacement of the distal clavicle, with the distal end displaced inferior to the coracoid process [116].

Reliability and Assessment Tools

  • The Utrecht Score for clavicle fractures is a compact tool developed to assess functional outcome specifically in patients with a clavicle fracture, consisting of patient-reported and objective measures [32].
  • The Constant score was found to be reliable for assessing patients with clavicle fractures, especially at the group level [94].
  • A new simple classification system for lateral clavicle fractures showed substantial inter- and intraobserver reliability [51].
  • A new classification system for distal clavicle fractures demonstrated moderate interobserver and substantial intraobserver reliability [58].

Clinical Presentation

Epidemiology and Mechanism

  • Clavicular fractures account for 3.8% of all fractures and 35.0% to 45.0% of all shoulder girdle injuries [12].
  • Approximately 80% of clavicular fractures are middle third, 15% are distal third, and 5% are medial third [12].
  • Most clavicular fractures are related to a lateral blow to the shoulder from a fall or a direct blow to the clavicle [12].
  • Adolescent clavicle fractures occurred more commonly in male patients during sports, secondary to a direct blow to the shoulder, and on the nondominant side [72].

Physical Examination

  • The lateral fragment is pulled down by the weight of the arm, while the medial fragment is held up by the sternomastoid muscle [4].
  • The fracture is often displaced, producing a lump along the ‘collar-bone’ [4].
  • Fractures of the outer third are easily mistaken for acromioclavicular injuries [4].
  • A distal neurovascular examination is important because of the proximity of the brachial plexus and the subclavian vessels to the zone of injury [12].
  • Tenting of the skin should be evaluated carefully because it can be a sign of impending open fracture [12].
  • Clinicians must carefully examine patients with isolated clavicle fractures for concomitant injuries to the ipsilateral shoulder girdle, particularly in the context of compression mechanisms [28].

Imaging

  • Upright and supine radiographs, including an AP view of the clavicle and a 15° cephalad tilt view, should be obtained to define displacement when the patient is upright [12].
  • A bilateral panoramic view of both shoulders should be obtained to measure clavicular shortening [12].
  • CT is the most accurate modality for determining fracture shortening and morphology but not typically obtained [12].
  • X-rays show that the fracture is usually in the middle third of the bone and the lateral fragment lies below the medial [4].
  • Outer-third injuries need special views to define any fracture [4].
  • Lateral clavicle fractures can be well visualized with AP radiographs using a Zanca view, which helps delineate the fracture by removing the overlap of the thoracic cage [99].
  • Fractures of the medial clavicle, especially those involving the SC joint, are notoriously difficult to accurately assess with plain radiographs [105].
  • CT scanning is the radiographic procedure of choice when the anatomy of a medial clavicle fracture is unclear [105].
  • CT scanning can help distinguish between a medial epiphyseal fracture and true SC dislocations [105].
  • Once clavicle fractures are healed, further radiographic imaging does not provide any notable information [5].

Prognosis and Outcomes

  • If patients with medial clavicle fractures can survive the initial trauma, there is every reason to expect good clinical and functional outcomes, regardless of whether surgical or nonsurgical management is chosen [1].
  • Medial clavicle fractures have favorable functional outcomes and pain relief at minimum 1-year follow-up among those patients who survive the trauma, but a high proportion will die within 3 years of the injury [18].
  • Most patients with clavicle fractures have an excellent outcome using conservative management [7].
  • Teenage patients with completely displaced clavicle fractures can expect excellent radiographic and clinical outcomes 5 years post-injury if treated non-operatively [34].
  • Clavicle malunion is a distinct clinical entity that can be treated successfully [14].
  • Clavicle fractures were not correlated to an increased occurrence of later diagnosis of subacromial pain syndrome, although the diagnosis was given 1-2 years earlier for people with a previous fracture [8].
  • Medialization of a clavicular fracture more than 20 mm is associated with a measurable decrease in functional outcome [12].

Investigations

Clinical Examination

Radiography

  • Simple anteroposterior (AP) radiographs are usually sufficient to establish the diagnosis of a clavicle fracture [79].
  • The diagnosis may also be made from a single AP chest radiograph, which may be the only available film in an urgent trauma setting [79].
  • The chest radiograph can be used to evaluate the deformity of the involved clavicle relative to the normal side and to look for associated skeletal injuries such as rib, glenoid, and scapular fractures [79].
  • A measurement of length can be made on the chest radiograph comparing the injured to the uninjured side [79].
  • Shortening of 2 cm or more represents a relative indication for primary fixation [79].
  • A radiograph should be taken in the upright position to demonstrate maximal deformity when determining whether operative intervention is warranted [79].
  • Ideally, the radiographic beam for the AP radiograph of the clavicle should be angled 20 degrees superiorly to eliminate the overlap of the thoracic cage and show the clavicle in profile [79].
  • If the torso is internally rotated a similar 20 degrees, the scapula and shoulder girdle are placed parallel to the cassette for a true AP film [79].
  • An upright chest radiograph should be obtained to evaluate midshaft clavicle fracture displacement, as it represents the physiologic stress across the fracture when considering nonoperative management [131].
  • Standard plain unilateral radiographs of the clavicle are insufficient to reliably determine the degree of shortening of clavicle fractures and the need for surgery among shoulder/sports medicine fellowship–trained orthopaedic surgeons [135].
  • When clavicle shortening is considered in the decision to pursue operative management, the use of plain radiograph-based measurements is not recommended [132].

Computed Tomography

  • CT scanning of midshaft clavicular fractures is rarely performed in the clinical setting [79].
  • CT imaging can demonstrate the complex three-dimensional deformity that affects the shoulder girdle with these injuries, including significant scapular angulation and protraction [79].
  • CT is useful for evaluating fractures of the medial third of the clavicle and the remainder of the shoulder girdle, such as the glenoid neck in cases of a “floating shoulder” [79].

Follow-up Assessment

  • Delayed assessment at 6 weeks following displaced midshaft clavicle fracture enables an accurate prediction of patients who are likely to have union with nonoperative management [46].
  • Close follow-up of nonoperatively treated clavicle fractures is warranted [2].

Treatment

General Principles and Epidemiology

  • Historically, most clavicle fractures have been managed nonoperatively [23].
  • In a study year, 8.6% of clavicle fractures were managed by primary surgery [23].
  • The highest prevalence of primary surgery was in OTA type B diaphyseal fractures, where 10.4% were managed surgically [23].
  • 7.2% of OTA type C lateral fractures were treated with primary surgery [23].
  • There were no OTA type A medial fractures in the study year [23].
  • Fractures of the clavicle constitute 2% to 5% of all fractures in adults [24].
  • Fractures of the clavicle constitute 35% to 44% of all fractures in the shoulder [24].
  • The incidence of clavicle fractures is 50 to 64 per 100,000 persons annually [24].
  • The risk for clavicle fracture is increased in men aged 30 years or younger and all patients older than 70 years [24].
  • Middle third fractures comprise approximately 69% to 81% of all clavicle fractures [24].
  • Lateral third fractures account for approximately 17% to 28% of all clavicle fractures [24].
  • Medial third fractures constitute the remaining 2% to 3% of all clavicle fractures [24].
  • Treatment of clavicle fractures should be tailored to each patient and the type of fracture, amount of displacement and comminution, age and level of activity of the patient, and to some extent, the aesthetic appearance of the shoulder [24].
  • Specific treatment of clavicle fractures should not be broadly applied but rather should be individualized based on fracture characteristics and patient expectations [9].
  • A targeted approach to the management of mid-shaft clavicle fractures is needed, with simple fractures treated nonoperatively and complex displaced fractures considered for surgery to prevent non-union [76].

Non-Operative Management

  • Nonsurgical management has been the preferred initial mode of treatment for most clavicle fractures [24].
  • Nonoperative care is the treatment of choice for most fractures of the clavicle shaft, especially those that are minimally displaced or undisplaced or those that occur in elderly, ill, noncompliant, or sedentary individuals in whom the risk of surgical intervention is too high or the potential benefit is too low [69].
  • Nondisplaced clavicle fractures continue to be treated conservatively with a simple sling until the fracture is healed according to radiographs and clinical assessment [80].
  • Accurate closed reduction is neither possible nor essential for undisplaced middle-third fractures [4].
  • For undisplaced middle-third fractures, all that is needed is to support the arm in a sling until the pain subsides, usually 1–3 weeks [4].
  • Thereafter, active shoulder exercises should be encouraged, particularly in older patients [4].
  • Most surgeons use a sling when treating clavicle fractures nonoperatively [23].
  • The sling is usually maintained for 2 weeks and then physical therapy is started [23].
  • Comparative studies have shown no advantage of the figure-of-eight bandage over a simple sling [23].
  • The figure-of-eight bandage was associated with a higher pain score and no difference in the amount of clavicular shortening compared to a sling [23].
  • The sling caused less discomfort and fewer complications than the figure-of-eight bandage [23].
  • Patients preferred the sling over the figure-of-eight bandage [69].
  • There is little or no convincing evidence that any significant improvement can be made to the original position of the fracture in most cases [69].
  • One must typically accept the displacement seen on injury films [69].
  • Nonoperative management of adolescent mid-shaft clavicle fractures results in excellent functional outcomes at long-term follow-up [15].
  • Comparably excellent outcomes of severe clavicle fractures in adolescent athletes can be achieved with non-operative treatment [61].
  • Proportional shortening of 8% is not associated with impaired function or patient dissatisfaction [23].
  • Proportional shortening of 8% did not significantly correlate with the DASH score, Constant score, or SF-12 score at any time during follow-up [23].
  • There was no correlation between proportional shortening of 8% and patient satisfaction [23].
  • Radiographic malunion was universal in the non-operative group for completely displaced middle third fractures [33].
  • The non-union rate was 14% in the non-operative group for completely displaced middle third fractures [33].
  • Complications, including non-union and symptomatic malunion, were more frequent in the non-operative group for completely displaced middle third fractures [33].
  • There was a direct relationship in the non-operative group between increased displacement and worse DASH score [33].
  • Nonsurgical and surgical management provide similar results for distal clavicle fractures [68].
  • Fracture displacement and the development of nonunion may not, in isolation, affect outcome especially in the elderly for distal and medial clavicle fractures [70].

Operative Management: Indications

  • A select group of patients with completely displaced fractures, shortening of 2 cm or more, or specific indications benefit from surgical fixation [36].
  • For healthy, active adults, midshaft clavicular fractures should undergo consideration for surgical stabilization if significantly displaced (2 cm of shortening, 100% displacement or significant comminution) [70].
  • Indications for operative treatment of midshaft clavicle fractures include displacement >2 cm [39].
  • Indications for operative treatment of midshaft clavicle fractures include shortening >2 cm [39].
  • Indications for operative treatment of midshaft clavicle fractures include increasing comminution (>3 fragments) [39].
  • Indications for operative treatment of midshaft clavicle fractures include segmental fractures [39].
  • Indications for operative treatment of midshaft clavicle fractures include open fractures [39].
  • Indications for operative treatment of midshaft clavicle fractures include impending open fractures with soft tissue compromise [39].
  • Indications for operative treatment of midshaft clavicle fractures include obvious clinical deformity [39].
  • Indications for operative treatment of midshaft clavicle fractures include scapular malposition and winging on initial examination [39].
  • Associated injuries that are indications for operative treatment include vascular injury requiring repair [39].
  • Associated injuries that are indications for operative treatment include progressive neurologic deficit [39].
  • Associated injuries that are indications for operative treatment include ipsilateral upper extremity injuries/fractures [39].
  • Associated injuries that are indications for operative treatment include multiple ipsilateral upper rib fractures [39].
  • Associated injuries that are indications for operative treatment include “floating shoulder” [39].
  • Associated injuries that are indications for operative treatment include bilateral clavicle fractures [39].
  • Patient factors that are indications for operative treatment include polytrauma with requirement for early upper extremity weight-bearing/arm use [39].
  • Patient factors that are indications for operative treatment include patient motivation for rapid return of function (e.g., elite sports or the self-employed professional) [39].
  • Treating displaced middle-third fractures with shortening of more than 2 cm by simple splintage incurs a risk of symptomatic malunion and an increased incidence of non-union [4].
  • There is a growing trend towards internal fixation of acute clavicular fractures associated with severe displacement, fragmentation or shortening [4].
  • Outer-third fractures are quite troublesome and may need open reduction and internal fixation [4].
  • Fractures of the outer (lateral) third with elevation of the clavicular shaft due to rupture of the coracoclavicular ligament may also require internal fixation [4].
  • Operative repair should be reserved for medically well, physically active patients who stand to benefit the most from a rapid restoration of normal anatomy and stable fixation [39].
  • The consensus is that operative intervention should be reserved for older, larger adolescents with severely displaced fractures [39].
  • There may be additional circumstances beyond absolute indications for surgical intervention that warrant ORIF at initial presentation in the adolescent population [44].

Operative Management: Techniques and Outcomes

  • Specific contoured locking plates are available for clavicle fracture fixation [4].
  • An advantage of internal fixation is that the patient can mobilize the arm and return to work and independence more quickly [4].
  • The use of a pre-contoured plate facilitates surgical care of clavicular fractures, reducing hardware prominence and secondary surgical procedures [70].
  • Dual plating may be used as an adjuvant in highly comminuted cases [70].
  • Dual plating with 2.4- or 2.7-mm plates may additionally have a benefit of decreased hardware prominence [70].
  • High-quality evidence shows that surgical treatment of displaced clavicle fractures in adults results in higher union rates and better early patient-reported outcomes compared with nonsurgical treatment [63].
  • Long-term outcomes are similar between surgical and nonsurgical treatment for displaced clavicle fractures in adults [63].
  • Plate fixation significantly reduced nonunion, although not having a significant effect on final functional outcomes [16].
  • Secondary surgical procedures were performed less often in the surgically treated group when excluding planned hardware removals [16].
  • When plate removal was included, revision surgeries were not different between surgical and nonoperative groups [16].
  • Surgical management outperformed nonsurgical management in both Disabilities of the Arm, Shoulder and Hand and Constant scores, although averages do not reach minimally clinically important difference at a minimum of 1-year posttreatment follow-up [16].
  • The number needed to treat for decreased nonunion in surgically treated patients is 10 [16].
  • Risk of revision surgery across all treatment arms when including plate removal was the same [16].
  • The operative group had significantly better Constant and DASH scores at all time points compared to the non-operative group for completely displaced middle third fractures [33].
  • The operative group was significantly more likely to be satisfied with their shoulder compared to the non-operative group [33].
  • There was no significant difference between groups for range of motion for completely displaced middle third fractures [33].
  • There is consistent evidence that the rates of malunion and nonunion are less with primary surgery [23].
  • There is essentially no evidence that primary surgical treatment improves final patient function [23].
  • Tamaoki et al. reported no difference in the DASH scores at 6 weeks, 6 months, and 1 year between operative and nonoperative groups [23].
  • Tamaoki et al. reported no difference in pain levels, time to return to previous activities, and dissatisfaction with the cosmetic result between operative and nonoperative groups [23].
  • Analysis of the DASH score favored operative management in a review of published evidence [23].
  • Functional outcome is excellent following the treatment of both acute and non-united clavicle fractures, but recovery occurs earlier following acute treatment [27].
  • Operative treatment of displaced medial clavicle fractures provides an excellent long-term functional outcome [13].
  • In a randomized study, the percentage of patients reporting implant irritation was no different between plate (70%) and intramedullary nail (66%) fixation [16].
  • Intramedullary fixation was associated with a higher likelihood of implant removal (82%) compared to plate fixation (50%) [16].
  • Superiorly applied plate fixation is an effective treatment for clavicular nonunion [64].
  • Treatment of middle-third clavicle non-union after initial failure of conservative treatment with stable fixation and bone graft is a reliable, well-suited and effective treatment [75].
  • Clavicle fixation for delayed and non-union is a cost-effective intervention but outcomes are worse compared to patients that unite with non-operative management [60].
  • Bone marrow injection for the treatment of clavicle nonunion is promising, with low morbidity and preliminary success justifying further trials [59].
  • Nonunion of the clavicle is treated by bone graft and plating [4].
  • In a unit, there is no clearly favoured method of internal fixation of lateral clavicle fractures [100].
  • Ipsilateral os acromiale may be a relative contraindication to the clavicle hook plate [103].

Complications and Cosmetic Outcomes

  • Damage to the lung or vessels beneath the clavicle is very rare [4].
  • Malunion is inevitable in displaced fractures [4].
  • In children, the bone is soon remodelled after malunion [4].
  • In adults, the slight deformity has to be accepted unless there is a very unsightly bump with skin irritation [4].
  • Non-union sometimes occurs in middle-third fractures [4].
  • The "Droopy" shoulder complaint was reported by 0 patients in the operative group and 10 patients in the nonoperative group (p=0.001) [37].
  • The "Bump/asymmetry" complaint was reported by 0 patients in the operative group and 22 patients in the nonoperative group (p=0.001) [37].
  • The "Scar" complaint was reported by 3 patients in the operative group and 0 patients in the nonoperative group (p=0.253) [37].
  • The "Sensitive/painful fracture site" complaint was reported by 9 patients in the operative group and 10 patients in the nonoperative group (p=0.891) [37].
  • The "Hardware irritation/prominence" complaint was reported by 11 patients in the operative group and 0 patients in the nonoperative group (p=0.001) [37].
  • The "Incisional numbness" complaint was reported by 18 patients in the operative group and 0 patients in the nonoperative group (p=0.001) [37].
  • 52 patients in the operative group and 26 patients in the nonoperative group were satisfied with the appearance of the shoulder (p=0.001) [37].
  • The incidence of clavicle fracture repair increased by 705% from 2001 to 2012 in Sweden [37].
  • The overall incidence of clavicle fractures increased from 36 per 100,000 person-years in 2001 to 59 per 100,000 person-years in 2012 [37].
  • The authors recommend a more prolonged surveillance period in children with recurrent fractures of the clavicle [21].

Complications

General and Non-Operative

  • Vascular and neurological complications following clavicle fractures are rare [4].
  • In children, malunion is soon remodelled, but in adults the slight deformity has to be accepted unless there is a very unsightly bump with skin irritation [4].
  • Non-union sometimes occurs in middle-third fractures and is treated by bone graft and plating [4].
  • Treating displaced middle-third clavicle fractures with shortening of more than 2 cm by simple splintage incurs a risk of symptomatic malunion, mainly pain and lack of power during shoulder movements [4].
  • Treating displaced middle-third clavicle fractures with shortening of more than 2 cm by simple splintage incurs an increased incidence of non-union [4].
  • There is a direct relationship in the non-operative group between increased displacement and worse DASH score [33].
  • The affected shoulder side was more symptomatic than the unaffected side 10 to 30 years after the trauma when midshaft clavicle fractures were treated conservatively [110].
  • Ipsilateral clavicle fracture and acromioclavicular joint injury has an incidence of 6.8% overall [115].

Operative

  • Complication rates following surgical clavicle fracture care averaged 8.1% [57].
  • Hardware irritation or prominence was reported by 11 of 62 patients in the operative group compared to 0 of 49 in the non-operative group [37].
  • Incisional numbness was reported by 18 of 62 patients in the operative group compared to 0 of 49 in the non-operative group [37].
  • A limited incision approach for plating of acute midshaft clavicle fractures achieved a low complication rate comparable to the reported rate for standard incision techniques [31].
  • Operative treatment with plate and screw application has consistently good outcomes with a low complication rate in selected adolescent cases [43].
  • The technique of clavicle pinning resulted in minimal complications [74].
  • Complications in the plate group for adolescent displaced midshaft clavicle fractures were minor [39].
  • Five patients in the nonoperative group of an adolescent study with a mean of 26 mm of shortening developed a symptomatic malunion, with four patients choosing corrective osteotomy [39].

Recovery

General Outcomes and Prognosis

  • Patients with medial clavicle fractures who survive the initial trauma are expected to have good clinical and functional outcomes regardless of whether surgical or nonsurgical management is chosen [1].
  • Medial clavicle fractures have favorable functional outcomes and pain relief at minimum 1-year follow-up among patients who survive the trauma [18].
  • A high proportion of patients with medial clavicle fractures will die within 3 years of the injury [18].
  • Adolescent mid-shaft clavicular fracture displacement does not predict nonunion or inferior functional outcome at long-term follow-up [15].
  • Functional outcome is excellent following the treatment of both acute and non-united clavicle fractures [27].
  • Recovery occurs earlier following acute treatment compared to non-united clavicle fractures [27].
  • Patients reported a good quality of life and functional outcome after plating for midshaft clavicular fractures [83].
  • In a large cohort with long-term follow-up, a limited incision approach for plating of acute midshaft clavicle fractures achieved good functional and radiographic outcomes [31].
  • The complication rate for limited incision plating of acute midshaft clavicle fractures is comparable to the reported rate for standard incision techniques [31].
  • Patients had very good clinical outcomes following operative management of an extra-lateral distal clavicle fracture pattern [29].
  • Sixty-eight patients with medial clavicle fractures identified over a 5-year period showed excellent functional results following conservative management [22].

Nonoperative Management and Follow-up

  • Nonoperative management of displaced distal clavicle fractures results in higher nonunion rates [42].
  • Shoulder function remains excellent following nonoperative management of displaced distal clavicle fractures [42].
  • The risk of complications and delayed surgery is low following nonoperative management of displaced distal clavicle fractures [42].
  • Proportional shortening of 8% in nonoperatively treated clavicle fractures is not associated with impaired function or patient dissatisfaction [23].
  • Proportional shortening of 8% did not correlate with patient satisfaction in nonoperatively treated clavicle fractures [23].
  • A sling is usually maintained for 2 weeks when treating clavicle fractures nonoperatively, after which physical therapy is started [23].
  • Comparative studies have shown no advantage of the figure-of-eight bandage over a simple sling for nonoperative management of clavicle fractures [23].
  • The figure-of-eight bandage is associated with higher pain scores compared to a simple sling [23].
  • There is no difference in the amount of clavicular shortening between the use of a figure-of-eight bandage and a simple sling [23].

Complications and Risk Factors

  • The prognosis for obtaining bony union after infected clavicle fractures is poor, with only two of six patients achieving union [126].
  • Risk factors for nonunions in lateral clavicle fractures include early mechanical stress, a lateral clavicular fragment larger than 3 cm, and time delay to surgery [136].
  • A fracture involving the upper one-third of the ribs significantly increases the rate of the clavicle fracture being > 100% displaced on early follow-up [129].
  • Clavicle fractures were not correlated to an increased occurrence of later diagnosis of subacromial pain syndrome (SAPS) [8].
  • The diagnosis of subacromial pain syndrome was given 1-2 years earlier for people with a previous clavicle fracture [8].

Key Evidence

  • [L5] If patients with medial clavicle fractures can survive the initial trauma, there is every reason to expect good clinical and functional outcomes, regardless of whether surgical or nonsurgical management is chosen. [1] (10.1097/corr.0000000000001916)
  • [L2] Close follow-up of nonoperatively treated clavicle fractures is warranted. [2] (10.1016/j.jse.2018.01.004)
  • [L3] Once clavicle fractures are healed, further radiographic imaging does not provide any notable information. [5] (10.5435/jaaos-d-17-00598)
  • [L3] Most patients with clavicle fractures have an excellent outcome using conservative management. [7] (10.1016/j.jse.2019.06.022)
  • [L4] Clavicle fractures were not correlated to an increased occurrence of later diagnosis of SAPS, although the diagnosis was given 1-2 years earlier for people with a previous fracture. [8] (10.1016/j.xrrt.2024.01.008)
  • [L5] Specific treatment of clavicle fractures should not be broadly applied but rather should be individualized based on fracture characteristics and patient expectations. [9] (10.1016/j.jse.2011.08.053)
  • [L4] Operative treatment of displaced medial clavicle fractures provides an excellent long-term functional outcome. [13] (10.1007/s00068-018-1024-6)
  • [L4] Clavicle malunion is a distinct clinical entity that can be treated successfully. [14] (10.3109/17453674.2010.480939)
  • [L3] Nonoperative management of adolescent mid-shaft clavicle fractures results in excellent functional outcomes at long-term follow-up. [15] (10.1302/0301-620x.103b5.bjj-2020-1929.r1)
  • [L4] Clavicle fixation is a safe and effective procedure in the pediatric population with a lack of serious complications. [17] (10.1177/2325967119s00056)
  • [L4] Medial clavicle fractures have favorable functional outcomes and pain relief at minimum 1-year follow-up among those patients who survive the trauma, but a high proportion will die within 3 years of the injury. [18] (10.1097/corr.0000000000001839)
  • [L1] This trial will provide level-1 evidence for the comparison of consolidation and functional outcome between two standardised treatment options for dislocated midshaft clavicular fractures. [19] (10.1186/1471-2474-12-196)
  • [L5] The authors recommend a more prolonged surveillance period in children with recurrent fractures of the clavicle. [21] (10.1097/bpb.0000000000000231)
  • [Paper] Sixty eight patients with medial clavicle fractures were identified over a 5 year period, with excellent functional results seen following conservative management. [22] (10.1016/j.injury.2016.06.011)
  • [L2] Nonoperative treatment of adolescent clavicle fractures demonstrated lower complication rates and similar satisfaction and functional outcomes compared to operative treatment. [25] (10.1177/2325967119s00428)
  • [L3] Functional outcome is excellent following the treatment of both acute and non-united clavicle fractures, but recovery occurs earlier following acute treatment. [27] (10.1016/j.otsr.2017.03.021)
  • [L4] Clinicians must carefully examine patients with isolated clavicle fractures for concomitant injuries to the ipsilateral shoulder girdle, particularly in the context of compression mechanisms. [28] (10.1177/03635465000280062301)
  • [L4] The patients had very good clinical outcomes following operative management of an extra-lateral distal clavicle fracture pattern. [29] (10.1016/j.jse.2020.10.006)
  • [L5] In this large cohort with long-term follow-up, a limited incision approach for plating of acute midshaft clavicle fractures achieved good functional and radiographic outcomes with a low complication rate comparable to the reported rate for standard incision techniques. [31] (10.1016/j.jse.2025.06.002)
  • [L4] The Utrecht Score for clavicle fractures is a compact yet complete tool that was developed to assess functional outcome specifically in patients with a clavicle fracture, consisting of patient-reported and objective measures. [32] (10.1007/s00068-018-0979-7)
  • [L2] Teenage patients with completely displaced clavicle fractures can expect excellent radiographic and clinical outcomes 5 years post-injury if treated non-operatively. [34] (10.1177/2325967123s00041)
  • [L4] Nonoperative management of displaced distal clavicle fractures results in higher nonunion rates, but shoulder function remains excellent, and risk of complications and delayed surgery are low. [42] (10.1016/j.jse.2023.12.006)
  • [L4] Current evidence suggests that the majority of clavicular fractures in adolescents can and should be treated nonoperatively, although operative treatment with plate and screw application has consistently good outcomes with a low complication rate in selected cases. [43] (10.2106/jbjs.22.01036)
  • [Case_report] Although ORIF of displaced midshaft clavicle fractures remains controversial in the adolescent population, there may be additional circumstances beyond absolute indications for surgical intervention that warrant ORIF at initial presentation. [44] (10.1016/j.xrrt.2023.03.004)
  • [L1] Delayed assessment at 6 weeks following displaced midshaft clavicle fracture enables an accurate prediction of patients who are likely to have union with nonoperative management. [46] (10.2106/jbjs.19.00955)
  • [L4] The presented classification system as well as associated treatment algorithms for lateral clavicle fractures showed substantial inter- and intraobserver reliability. [51] (10.1016/j.jse.2025.04.021)
  • [L5] The modified Neer classification remains the predominantly cited classification system for distal clavicle fractures, yet its intra- and interobserver reliability has been demonstrated to be inconsistent, which can lead to incorrect treatment choices and misclassifications in research. [55] (10.1097/corr.0000000000001456)
  • [L3] Complication rates following surgical clavicle fracture care averaged 8.1%. [57] (10.1186/s12891-022-05075-5)
  • [L3] The study demonstrated moderate interobserver and substantial intraobserver reliability of the new classification system and the associated treatment choice for distal clavicle fractures. [58] (10.1016/j.otsr.2018.05.015)
  • [L4] Bone marrow injection for the treatment of clavicle nonunion is promising, with low morbidity and preliminary success justifying further trials. [59] (10.1016/j.jse.2006.05.001)
  • [L3] Clavicle fixation for delayed and non-union is a cost-effective intervention but outcomes are worse compared to patients that unite with non-operative management. [60] (10.1177/1758573221990367)
  • [L2] Comparably excellent outcomes of severe clavicle fractures in adolescent athletes can be achieved with non-operative treatment. [61] (10.1177/2325967121s00214)
  • [L1] High-quality evidence shows that surgical treatment of displaced clavicle fractures in adults results in higher union rates and better early patient-reported outcomes compared with nonsurgical treatment, though long-term outcomes are similar. [63] (10.5435/jaaos-d-23-00472)
  • [L4] Superiorly applied plate fixation is an effective treatment for clavicular nonunion. [64] (10.1016/j.jse.2008.05.046)
  • [L4] Nonsurgical and surgical management provide similar results for distal clavicle fractures. [68] (10.5435/00124635-201107000-00002)
  • [L4] [69] (10.1016/j.ocl.2009.12.005)
  • [L3] The interrater agreement of the modified Neer classification system for lateral clavicle fractures was fair, and additional 3D CT did not improve the overall level of interrater or intrarater agreement of the classification system or associated treatment choice. [71] (10.1177/0363546515593949)
  • [L4] Adolescent clavicle fractures occurred more commonly in male patients during sports, secondary to a direct blow to the shoulder, and on the nondominant side. [72] (10.1177/2325967120921344)
  • [L4] The technique of clavicle pinning resulted in minimal complications, short hospital stay and excellent functional outcomes. [74] (10.4103/0973-6042.57895)
  • [L4] Treatment of middle-third clavicle non-union after initial failure of conservative treatment with stable fixation and bone graft is a reliable, well-suited and effective treatment. [75] (10.1016/j.otsr.2013.09.011)
  • [L5] A targeted approach to the management of mid-shaft clavicle fractures is needed, with simple fractures treated nonoperatively and complex displaced fractures considered for surgery to prevent non-union. [76] (10.1016/j.injury.2020.11.066)
  • [L4] Nondisplaced clavicle fractures continue to be treated conservatively with a simple sling until the fracture is healed according to radiographs and clinical assessment. [80] (10.3810/psm.2011.09.1930)
  • [L4] The incidence of clavicle fractures was 1.23%. [82] (10.1016/j.injury.2011.04.008)
  • [L3] Patients reported a good quality of life and functional outcome after plating for midshaft clavicular fractures. [83] (10.1016/j.injury.2017.10.032)
  • [L4] According to the classifications of Neer and Jäger/Breitner, a clear therapeutic strategy for lateral clavicular fractures can be defined. [85] (10.1016/0020-1383(95)00156-5)
  • [L4] [93] (10.1302/0301-620x.95b7.31316)
  • [L4] The Constant score was found to be reliable for assessing patients with clavicle fractures, especially at the group level. [94] (10.1016/j.jse.2016.02.022)
  • [Paper] Nondisplaced distal clavicle fractures can be treated with nonoperative management (Neer types I, III, and IV). [95] (10.2106/jbjs.rvw.25.00260)
  • [L4] In our unit there is no clearly favoured method of internal fixation of lateral clavicle fractures. [100] (10.1007/s00590-021-03173-z)
  • [L5] There is an increasing trend toward stabilization and fixation of markedly displaced midshaft clavicle fractures in adolescents due to concerns about symptomatic malunion and poor functional outcomes with nonsurgical management, though definitive indications for fixation in this population remain unclear. [102] (10.5435/00124635-201301000-00002)
  • [L4] Ipsilateral os acromiale may be a relative contraindication to the clavicle hook plate. [103] (10.1186/s12891-021-04841-1)
  • [L1] This review shows that patient selection for surgery may influence functional outcome after midshaft clavicle fracture. [107] (10.1177/1758573218777996)
  • [L4] The affected shoulder side was more symptomatic than the unaffected side 10 to 30 years after the trauma when midshaft clavicle fractures were treated conservatively. [110] (10.1186/s13018-023-04450-9)
  • [L5] [111] (10.1007/s10140-018-1586-y)
  • [L4] [113] (10.1007/s00068-019-01122-4)
  • [L3] Ipsilateral clavicle fracture and AC joint injury is much more common than traditionally believed, with an incidence of 6.8% overall. [115] (10.1016/j.injury.2016.12.021)
  • [L5] [123] (10.1016/s0020-1383(15)30035-8)
  • [L4] The prognosis for obtaining bony union after infected clavicle fractures is poor, with only two of six patients achieving union. [126] (10.1097/01.blo.0000183088.60639.05)
  • [L2] In addition, a fracture involving the upper one-third of the ribs significantly increases the rate of the clavicle fracture being > 100% displaced on early follow-up. [129] (10.1097/bot.0000000000000758)
  • [L4] An upright chest radiograph should be obtained to evaluate midshaft clavicle fracture displacement, as it represents the physiologic stress across the fracture when considering nonoperative management. [131] (10.1097/bot.0000000000000727)
  • [L4] When clavicle shortening is considered in the decision to pursue operative management, the use of plain radiograph-based measurements is not recommended. [132] (10.4055/cios.2016.8.4.367)
  • [L3] Standard plain unilateral radiographs of the clavicle are insufficient to reliably determine the degree of shortening of clavicle fractures and the need for surgery among shoulder/sports medicine fellowship–trained orthopaedic surgeons. [135] (10.1177/0363546514523926)
  • [L4] Risk factors for nonunions include early mechanical stress, a lateral clavicular fragment larger than 3 cm, and time delay to surgery. [136] (10.1007/s00402-018-3075-x)

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e. Exceptions and Limitations means fair use, fair dealing, and/or any other exception or limitation to Copyright and Similar Rights that applies to Your use of the Licensed Material.

f. Licensed Material means the artistic or literary work, database, or other material to which the Licensor applied this Public License.

g. Licensed Rights means the rights granted to You subject to the terms and conditions of this Public License, which are limited to all Copyright and Similar Rights that apply to Your use of the Licensed Material and that the Licensor has authority to license.

h. Licensor means the individual(s) or entity(ies) granting rights under this Public License.

i. NonCommercial means not primarily intended for or directed towards commercial advantage or monetary compensation. For purposes of this Public License, the exchange of the Licensed Material for other material subject to Copyright and Similar Rights by digital file-sharing or similar means is NonCommercial provided there is no payment of monetary compensation in connection with the exchange.

j. Share means to provide material to the public by any means or process that requires permission under the Licensed Rights, such as reproduction, public display, public performance, distribution, dissemination, communication, or importation, and to make material available to the public including in ways that members of the public may access the material from a place and at a time individually chosen by them.

k. Sui Generis Database Rights means rights other than copyright resulting from Directive 96/9/EC of the European Parliament and of the Council of 11 March 1996 on the legal protection of databases, as amended and/or succeeded, as well as other essentially equivalent rights anywhere in the world.

l. You means the individual or entity exercising the Licensed Rights under this Public License. Your has a corresponding meaning.

Section 2 -- Scope.

a. License grant.

1. Subject to the terms and conditions of this Public License, the Licensor hereby grants You a worldwide, royalty-free, non-sublicensable, non-exclusive, irrevocable license to exercise the Licensed Rights in the Licensed Material to:

a. reproduce and Share the Licensed Material, in whole or in part, for NonCommercial purposes only; and

b. produce, reproduce, and Share Adapted Material for NonCommercial purposes only.

2. Exceptions and Limitations. For the avoidance of doubt, where Exceptions and Limitations apply to Your use, this Public License does not apply, and You do not need to comply with its terms and conditions.

3. Term. The term of this Public License is specified in Section 6(a).

4. Media and formats; technical modifications allowed. The Licensor authorizes You to exercise the Licensed Rights in all media and formats whether now known or hereafter created, and to make technical modifications necessary to do so. The Licensor waives and/or agrees not to assert any right or authority to forbid You from making technical modifications necessary to exercise the Licensed Rights, including technical modifications necessary to circumvent Effective Technological Measures. For purposes of this Public License, simply making modifications authorized by this Section 2(a) (4) never produces Adapted Material.

5. Downstream recipients.

a. Offer from the Licensor -- Licensed Material. Every recipient of the Licensed Material automatically receives an offer from the Licensor to exercise the Licensed Rights under the terms and conditions of this Public License.

b. No downstream restrictions. You may not offer or impose any additional or different terms or conditions on, or apply any Effective Technological Measures to, the Licensed Material if doing so restricts exercise of the Licensed Rights by any recipient of the Licensed Material.

6. No endorsement. Nothing in this Public License constitutes or may be construed as permission to assert or imply that You are, or that Your use of the Licensed Material is, connected with, or sponsored, endorsed, or granted official status by, the Licensor or others designated to receive attribution as provided in Section 3(a)(1)(A)(i).

b. Other rights.

1. Moral rights, such as the right of integrity, are not licensed under this Public License, nor are publicity, privacy, and/or other similar personality rights; however, to the extent possible, the Licensor waives and/or agrees not to assert any such rights held by the Licensor to the limited extent necessary to allow You to exercise the Licensed Rights, but not otherwise.

2. Patent and trademark rights are not licensed under this Public License.

3. To the extent possible, the Licensor waives any right to collect royalties from You for the exercise of the Licensed Rights, whether directly or through a collecting society under any voluntary or waivable statutory or compulsory licensing scheme. In all other cases the Licensor expressly reserves any right to collect such royalties, including when the Licensed Material is used other than for NonCommercial purposes.

Section 3 -- License Conditions.

Your exercise of the Licensed Rights is expressly made subject to the following conditions.

a. Attribution.

1. If You Share the Licensed Material (including in modified form), You must:

a. retain the following if it is supplied by the Licensor with the Licensed Material:

i. identification of the creator(s) of the Licensed Material and any others designated to receive attribution, in any reasonable manner requested by the Licensor (including by pseudonym if designated);

ii. a copyright notice;

iii. a notice that refers to this Public License;

iv. a notice that refers to the disclaimer of warranties;

v. a URI or hyperlink to the Licensed Material to the extent reasonably practicable;

b. indicate if You modified the Licensed Material and retain an indication of any previous modifications; and

c. indicate the Licensed Material is licensed under this Public License, and include the text of, or the URI or hyperlink to, this Public License.

2. You may satisfy the conditions in Section 3(a)(1) in any reasonable manner based on the medium, means, and context in which You Share the Licensed Material. For example, it may be reasonable to satisfy the conditions by providing a URI or hyperlink to a resource that includes the required information.

3. If requested by the Licensor, You must remove any of the information required by Section 3(a)(1)(A) to the extent reasonably practicable.

4. If You Share Adapted Material You produce, the Adapter's License You apply must not prevent recipients of the Adapted Material from complying with this Public License.

Section 4 -- Sui Generis Database Rights.

Where the Licensed Rights include Sui Generis Database Rights that apply to Your use of the Licensed Material:

a. for the avoidance of doubt, Section 2(a)(1) grants You the right to extract, reuse, reproduce, and Share all or a substantial portion of the contents of the database for NonCommercial purposes only;

b. if You include all or a substantial portion of the database contents in a database in which You have Sui Generis Database Rights, then the database in which You have Sui Generis Database Rights (but not its individual contents) is Adapted Material; and

c. You must comply with the conditions in Section 3(a) if You Share all or a substantial portion of the contents of the database.

For the avoidance of doubt, this Section 4 supplements and does not replace Your obligations under this Public License where the Licensed Rights include other Copyright and Similar Rights.

Section 5 -- Disclaimer of Warranties and Limitation of Liability.

a. UNLESS OTHERWISE SEPARATELY UNDERTAKEN BY THE LICENSOR, TO THE EXTENT POSSIBLE, THE LICENSOR OFFERS THE LICENSED MATERIAL AS-IS AND AS-AVAILABLE, AND MAKES NO REPRESENTATIONS OR WARRANTIES OF ANY KIND CONCERNING THE LICENSED MATERIAL, WHETHER EXPRESS, IMPLIED, STATUTORY, OR OTHER. THIS INCLUDES, WITHOUT LIMITATION, WARRANTIES OF TITLE, MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, NON-INFRINGEMENT, ABSENCE OF LATENT OR OTHER DEFECTS, ACCURACY, OR THE PRESENCE OR ABSENCE OF ERRORS, WHETHER OR NOT KNOWN OR DISCOVERABLE. WHERE DISCLAIMERS OF WARRANTIES ARE NOT ALLOWED IN FULL OR IN PART, THIS DISCLAIMER MAY NOT APPLY TO YOU.

b. TO THE EXTENT POSSIBLE, IN NO EVENT WILL THE LICENSOR BE LIABLE TO YOU ON ANY LEGAL THEORY (INCLUDING, WITHOUT LIMITATION, NEGLIGENCE) OR OTHERWISE FOR ANY DIRECT, SPECIAL, INDIRECT, INCIDENTAL, CONSEQUENTIAL, PUNITIVE, EXEMPLARY, OR OTHER LOSSES, COSTS, EXPENSES, OR DAMAGES ARISING OUT OF THIS PUBLIC LICENSE OR USE OF THE LICENSED MATERIAL, EVEN IF THE LICENSOR HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH LOSSES, COSTS, EXPENSES, OR DAMAGES. WHERE A LIMITATION OF LIABILITY IS NOT ALLOWED IN FULL OR IN PART, THIS LIMITATION MAY NOT APPLY TO YOU.

c. The disclaimer of warranties and limitation of liability provided above shall be interpreted in a manner that, to the extent possible, most closely approximates an absolute disclaimer and waiver of all liability.

Section 6 -- Term and Termination.

a. This Public License applies for the term of the Copyright and Similar Rights licensed here. However, if You fail to comply with this Public License, then Your rights under this Public License terminate automatically.

b. Where Your right to use the Licensed Material has terminated under Section 6(a), it reinstates:

1. automatically as of the date the violation is cured, provided it is cured within 30 days of Your discovery of the violation; or

2. upon express reinstatement by the Licensor.

For the avoidance of doubt, this Section 6(b) does not affect any right the Licensor may have to seek remedies for Your violations of this Public License.

c. For the avoidance of doubt, the Licensor may also offer the Licensed Material under separate terms or conditions or stop distributing the Licensed Material at any time; however, doing so will not terminate this Public License.

d. Sections 1, 5, 6, 7, and 8 survive termination of this Public License.

Section 7 -- Other Terms and Conditions.

a. The Licensor shall not be bound by any additional or different terms or conditions communicated by You unless expressly agreed.

b. Any arrangements, understandings, or agreements regarding the Licensed Material not stated herein are separate from and independent of the terms and conditions of this Public License.

Section 8 -- Interpretation.

a. For the avoidance of doubt, this Public License does not, and shall not be interpreted to, reduce, limit, restrict, or impose conditions on any use of the Licensed Material that could lawfully be made without permission under this Public License.

b. To the extent possible, if any provision of this Public License is deemed unenforceable, it shall be automatically reformed to the minimum extent necessary to make it enforceable. If the provision cannot be reformed, it shall be severed from this Public License without affecting the enforceability of the remaining terms and conditions.

c. No term or condition of this Public License will be waived and no failure to comply consented to unless expressly agreed to by the Licensor.

d. Nothing in this Public License constitutes or may be interpreted as a limitation upon, or waiver of, any privileges and immunities that apply to the Licensor or You, including from the legal processes of any jurisdiction or authority.


Creative Commons is not a party to its public licenses. Notwithstanding, Creative Commons may elect to apply one of its public licenses to material it publishes and in those instances will be considered the “Licensor.” The text of the Creative Commons public licenses is dedicated to the public domain under the CC0 Public Domain Dedication. Except for the limited purpose of indicating that material is shared under a Creative Commons public license or as otherwise permitted by the Creative Commons policies published at creativecommons.org/policies, Creative Commons does not authorize the use of the trademark "Creative Commons" or any other trademark or logo of Creative Commons without its prior written consent including, without limitation, in connection with any unauthorized modifications to any of its public licenses or any other arrangements, understandings, or agreements concerning use of licensed material. For the avoidance of doubt, this paragraph does not form part of the public licenses.

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