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Fractura del radio distal

Distal radius fractures — assessment, casting, and indications for surgical fixation.

Updated Sep 2026
Una ilustración dibujada a mano de una persona sin rostro que ha caído hacia adelante sobre una mano extendida; la muñeca es la que absorbe el impacto.
Radiografía de una fractura distal del radio con desplazamiento: el patrón de fractura más frecuente en adultos. El extremo del hueso del antebrazo se ha roto justo por encima de la articulación de la muñeca y se ha desplazado fuera de su posición normal. 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

Una fractura distal del radio es una rotura en el extremo del radio, el hueso más grande de los dos que componen el antebrazo, justo por encima de la muñeca. Suele ocurrir cuando una persona cae sobre la mano extendida. La mano actúa como soporte para amortiguar la caída, y la fuerza del impacto se transmite hacia arriba a través de la muñeca. Algunas fracturas se deben a traumatismos de mayor energía, como caídas desde altura o accidentes de tráfico. Cuanto mayor sea el impacto, más compleja puede ser la fractura.

De inmediato, sentirá dolor en la muñeca y esta se hinchará; con frecuencia aparecen hematomas después. Si el hueso roto se ha desplazado, es posible que note un cambio en la forma de su muñeca. Un patrón común consiste en que la parte posterior de la mano se dobla hacia arriba, adoptando una forma similar a la de un tenedor de mesa. En algunos casos, la muñeca parece casi normal; solo hay sensibilidad en un punto concreto y dolor al moverla. En cualquier caso, probablemente evitará usar esa mano, y tareas cotidianas como girar un picaporte, sostener una taza de té o levantarse de una silla le causarán dolor.

La fractura puede dañar más que el hueso: la piel puede presentar desgarros y los nervios que atraviesan la muñeca pueden verse afectados, lo que provoca entumecimiento u hormigueo en los dedos. También es frecuente que se lesionen otras zonas del mismo brazo, como el codo o el hombro; por eso conviene mencionar cualquier otro dolor que sienta.

En los primeros días y semanas, la muñeca suele doler más al moverla y durante la noche. A medida que comienza la cicatrización, este dolor disminuye gradualmente. El objetivo de todo el tratamiento es mantenerlo cómodo y restaurar la funcionalidad de su muñeca.

¿Qué ocurre realmente?

El radio es el hueso más grande de los dos que componen el antebrazo; su extremo distal forma parte de la articulación de la muñeca. En una muñeca sana, este extremo óseo soporta la mayor parte de la carga que va desde la mano al brazo, alrededor del 80 %. Cuando una persona cae sobre la mano, esa carga aumenta bruscamente, y el hueso delgado situado justo por encima de la articulación se dobla y se rompe.

Imagine la articulación de la muñeca como una superficie plana y lisa sobre la cual se deslizan los huesos de la mano. Para que la muñeca funcione correctamente, esa superficie debe permanecer plana y nivelada. Si la fractura desplaza el hueso, dicha superficie se vuelve irregular o inclinada, algo similar a una mesa cuyo una pata es más corta que las demás. La mano sigue apoyándose en ella, pero se mueve de forma inestable, se traba y se desgasta de manera desigual. Por eso, una fractura desplazada altera tanto el movimiento como la sensación de la muñeca, no solo su apariencia.

La fractura también puede dañar los tejidos blandos que mantienen unida la muñeca. El complejo fibrocartilaginoso triangular, una almohadilla de tejido situada en el lado del meñique de la muñeca, entre el radio y el cúbito, es la estructura que con mayor frecuencia resulta lesionada junto con esta fractura. Asimismo, los ligamentos que unen los pequeños huesos de la muñeca entre sí pueden estirarse o desgarrarse. En aproximadamente la mitad de estas fracturas, y en casi todas aquellas que alcanzan la superficie articular, alguna de estas estructuras vecinas también resulta dañada.

El hueso se repara mediante la formación de nuevo tejido óseo a través de la fractura, que se va consolidando lentamente a lo largo de varias semanas. No obstante, los fragmentos desplazados pueden no volver a alinearse por sí solos. Si el hueso se cura en una posición inadecuada, la muñeca puede quedar rígida, débil o causar molestias al girar el antebrazo o al realizar un agarre. Los pequeños pasos o huecos en la superficie articular, así como una inclinación marcada del extremo óseo, son los patrones más asociados a problemas persistentes. Por ello, su cirujano examina cuidadosamente la posición de la fractura y adapta el tratamiento al patrón observado, a su edad y al grado de uso que haga de la muñeca.

Qué podemos hacer al respecto

El Dr. Kieran Hirpara, cirujano de extremidades superiores en el Mater Private Hospital Rockhampton, adapta el tratamiento a su lesión específica. 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 la clínica, tomamos su historia clínica, examinamos su muñeca y solicitamos radiografías y, en ocasiones, una tomografía computarizada, para determinar el patrón de la fractura. El tratamiento adecuado depende del grado de desplazamiento óseo, si la fractura es estable, su edad y cuánto utiliza usted su muñeca. No existe un único tratamiento válido para todas las fracturas; por eso evaluamos las opciones junto con usted y decidimos en conjunto.

Muchas fracturas pueden tratarse sin cirugía. Esto suele ocurrir cuando el hueso no se ha desplazado, o solo se ha desplazado ligeramente, o cuando la fractura es estable. También es frecuente en pacientes mayores cuyas exigencias sobre la muñeca son menores. El tratamiento no quirúrgico consiste en usar una férula o un yeso mientras el hueso se consolida. Si el hueso sí se ha desplazado, primero lo volvemos a su posición correcta; este procedimiento se realiza bajo anestesia para que usted no sienta molestias. Las fracturas desplazadas suelen mantenerse inmovilizadas entre 4 y 6 semanas tras la reducción. En el caso de fracturas sin desplazamiento, se usa una férula durante uno o dos días hasta que disminuye la hinchazón; luego se coloca el yeso, el cual normalmente se retira a las 4 semanas. Controlamos la posición ósea mediante radiografías, una semana después de la reducción y otra vez dos semanas después, pues el hueso puede desplazarse dentro del yeso. Desde el principio, usted debe mover los dedos y el hombro para evitar rigidez y limitar la hinchazón. La fisioterapia comienza en el momento adecuado, una vez retirado el yeso.

La cirugía se recomienda desde el inicio cuando la fractura es inestable o está muy desplazada, cuando afecta a la superficie articular de la muñeca o cuando el hueso no se mantiene en su sitio con el uso de yeso. También se requiere cirugía si existen lesiones nerviosas o vasculares, desgarros en los ligamentos de la muñeca o una herida abierta sobre la zona de la fractura. Los pacientes jóvenes y activos que necesitan una muñeca fuerte y recta para su trabajo o deporte tienen mayor probabilidad de recibir tratamiento quirúrgico. La operación mantiene el hueso en la posición correcta mientras se cura, mediante una placa y tornillos u otro método de fijación. En algunos casos, la decisión entre cirugía y yeso se toma en conjunto: el yeso podría ser suficiente, pero la muñeca podría quedar con una deformidad visible; por eso algunas personas prefieren la cirugía para evitarlo.

Independientemente del camino que elija, las primeras semanas consisten en garantizar su comodidad y proteger la zona afectada. Mantenga la mano elevada, mueva los dedos con frecuencia y tome los analgésicos según las indicaciones. Evite cargar peso sobre la muñeca hasta que se le autorice. Posteriormente, la fisioterapia restaura el movimiento, la fuerza y la capacidad de agarre en la fase adecuada de la cicatrización.

Qué esperar

La recuperación de una fractura del radio distal lleva tiempo y se produce en etapas. El peor nivel de dolor e hinchazón suele disminuir en los primeros dos meses. La mayoría de las personas experimentan poco dolor y pueden usar el puño sin dificultad a los seis meses. No obstante, la recuperación no termina ahí; es un proceso continuo que dura años, y muchas personas siguen notando mejoras graduales incluso después del primer año.

Cada persona sana a su propio ritmo. Alrededor del 69 % se recupera rápidamente; aproximadamente el 23 % tarda más tiempo, y cerca del 8 % sigue presentando síntomas significativos al cabo de un año. A los tres y seis meses, la fuerza de agarre en la mano lesionada suele ser menor que en la otra mano. Si el hueso más pequeño situado junto al radio, el cúbito, también sufrió fracturas en la muñeca, la recuperación de la fuerza de agarre y de la capacidad de flexionar el puño será más lenta. Aun así, a largo plazo no hay diferencias en el estado de la muñeca entre quienes tuvieron esa fractura adicional y quienes no. La edad avanzada y la menor densidad ósea se asocian con una recuperación más lenta durante el primer año, al igual que las fracturas más graves y las lesiones de mayor energía. El estado emocional general también influye; el mal humor puede ralentizar todo el proceso de recuperación.

Si al cabo de un año su muñeca sigue causándole molestias, eso no significa que el proceso haya finalizado. Con frecuencia, la mejoría continúa después de ese plazo. No obstante, más de la mitad de las personas que presentan un resultado deficiente al año siguen teniendo discapacidades importantes años después; por eso es conveniente comentarnos cualquier dolor o rigidez persistente en lugar de esperar a que desaparezcan por sí solos.

Ambos tipos de tratamiento conllevan cierto riesgo de que algo no salga según lo previsto. El hueso puede soldarse en una posición inadecuada, situación conocida como malunión; esto ocurre con mayor frecuencia en personas mayores tratadas sin cirugía y puede provocar rigidez, debilidad, dolor o deformación de la muñeca. No toda malunión genera problemas, especialmente en personas mayores que no exigen tanto de su muñeca. La propia cirugía, en ocasiones, puede irritar o dañar los tendones o nervios cercanos a la muñeca. La irritación nerviosa es una de las complicaciones más frecuentes y suele resolverse, aunque en algunos casos persiste durante mucho tiempo. Las tasas de complicaciones varían ampliamente entre estudios, y ningún método de tratamiento se destaca claramente como más seguro que los demás.

Cuándo consultar a un profesional

Busque atención médica de urgencia si la forma de su muñeca ha cambiado visiblemente, si hay una herida abierta sobre la fractura, si siente entumecimiento u hormigueo en los dedos, o si no puede usar la mano ni el brazo en absoluto. El entumecimiento y el hormigueo pueden indicar que un nervio en la muñeca está comprimido, y eso debe evaluarse de inmediato. Si la muñeca parece casi normal pero hay un punto sensible y le duele moverla, igualmente debe ser examinada. Después del tratamiento, consulte a su médico de cabecera o solicite una evaluación especializada si el dolor no disminuye, o si la hinchazón, la movilidad y la capacidad de usar la muñeca no mejoran semana tras semana a medida que cicatriza.

En mayor profundidad

Esta sección profundiza más de lo necesario para que usted tome sus propias decisiones de tratamiento. Vale la pena leer más sobre las fracturas de muñeca, ya que en este tipo de fractura es donde mayor es la discrepancia entre lo que parece correcto en una radiografía y lo que el paciente realmente percibe; además, la intervención quirúrgica más habitual para este caso presenta una tasa de complicaciones superior a la que la mayoría de las personas conocen.

La cirugía mejora la función, pero la magnitud de dicha mejora es importante

Tras analizar datos de 2,254 adultos, se observó que el tratamiento quirúrgico de las fracturas del extremo distal del radio mejoró la puntuación DASH a medio plazo y la fuerza de prensión, en comparación con el tratamiento no quirúrgico; sin embargo, no hubo diferencia en la tasa general de complicaciones [1].

Se trata de un resultado real a favor de la cirugía, pero debe interpretarse teniendo en cuenta su magnitud. La escala DASH va de 0 a 100, y las diferencias reportadas en la literatura suelen ser modestas: reales, medibles, y a menudo menores de lo que los pacientes imaginan al oír que “la cirugía produce mejores resultados”. En definitiva, se trata de una diferencia en la calidad de la recuperación, no de una diferencia entre tener una muñeca funcional o una inútil.

La placa tiene su propio perfil de complicaciones

La placa bloqueable volar es el método de fijación estándar, y es muy eficaz. Pero no está exenta de riesgos.

Un metaanálisis limitado a estudios de alta calidad arrojó una tasa general de complicaciones del 30,8% tras la fijación con placa bloqueable volar; además, se señaló que esta técnica podría estar asociada a más complicaciones relacionadas con el material de fijación de lo que se había reportado anteriormente [2].

Esa cifra requiere ser interpretada con contexto, no debe generar alarma: incluye todo tipo de problemas, tanto leves como autoresolutivos; no significa que el 30,8% de los casos terminen en complicaciones graves. No obstante, es un dato real y superior a la impresión que da la idea de “colocar una placa y tornillos y ya se puede mover la mano”.

La extracción del material de fijación es otro aspecto con una respuesta clara. En un total de 3,690 pacientes se observó una fuerte correlación positiva entre la frecuencia con la que los cirujanos retiraron el material y la frecuencia de complicaciones reportadas; los autores concluyeron que no está justificada la extracción rutinaria si no existen problemas relacionados con la placa [3]. En general, una placa que no genera problemas debe dejarse en su lugar.

La fractura del estiloides ulnar del que le hablaron probablemente no sea relevante

La mayoría de los pacientes con fractura del radio distal también presentan una fractura en la punta del cúbito; con frecuencia se menciona esto como si se tratara de una segunda lesión preocupante.

Tras analizar a 1,403 pacientes, se constató que la presencia simultánea de una fractura del estiloides ulnar no influía en el resultado del tratamiento de la fractura del radio distal. Los autores recomiendan actuar con cautela antes de optar por reparar dicha fractura [4].

Por lo tanto, si en su radiografía se observó ese fragmento óseo, su mera presencia no constituye motivo para realizar una cirugía adicional, ni tampoco indica que el resultado del tratamiento sea peor.

¿Qué es lo que realmente predice un mal resultado?

No se trata del estiloide ulnar, ni tanto de la elección del implante por parte del cirujano, sino del comportamiento mismo de la fractura. En los casos en que la fractura se trata con un yeso, los factores de riesgo para que vuelva a desplazarse tras la reducción incluyen el desplazamiento completo inicial y otros indicadores de un patrón inestable; precisamente la fractura que partía muy desalineada es la que tiene mayor probabilidad de volver a desplazarse.

Por eso, a las muñecas tratadas con yeso se les realizan radiografías nuevamente a la semana y a las dos semanas. Este control no es una mera formalidad; constituye el período en el cual una fractura que se está desplazando aún puede corregirse fácilmente.

Referencias

[1] Ochen Y, Peek J, van der Velde D, Beeres FJP, van Heijl M, Groenwold RHH, et al. Tratamiento quirúrgico versus no quirúrgico de las fracturas del extremo distal del radio en adultos: una revisión sistemática y metaanálisis. JAMA Netw Open. 2020;3(4):e203497. https://doi.org/10.1001/jamanetworkopen.2020.3497

[2] Nwosu C, Rodriguez K, Zeng S, Klifto KM, Klifto CS, Ruch DS. Complicaciones tras la fijación con placa bloqueable volar en fracturas del extremo distal del radio: una revisión sistemática y metaanálisis. J Hand Surg Am. 2023;48(9):861-74. https://doi.org/10.1016/j.jhsa.2023.04.022

[3] Yamamoto M, Fujihara Y, Fujihara N, Hirata H. Revisión sistemática sobre la extracción de la placa bloqueable volar tras fracturas del extremo distal del radio. Injury. 2017;48(12):2650-6. https://doi.org/10.1016/j.injury.2017.10.010

[4] Yuan C, Zhang H, Liu H, Gu J. ¿La presencia simultánea de fractura del estiloide ulnar y fractura del extremo distal del radio predice peores resultados? Un metaanálisis. Injury. 2017;48(11):2575-81. https://doi.org/10.1016/j.injury.2017.08.061


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

  • Fractures of the distal radius are among the most common fractures seen in the emergency department [11].
  • Patients of advanced age with osteoporosis have an increased fracture risk during low-energy falls [11].
  • Fracture patterns vary depending on the mechanism of injury [11].
  • The goals of all treatment for distal radius fractures are to optimize comfort and function [11].
  • Prevention of complications associated with distal radius fractures should be the treating surgeon's primary concern [1].
  • Early diagnosis and treatment are important to avoid long-term consequences of distal radius fractures [1].
  • The management of distal radius fractures is in the midst of a renaissance with novel locking plate designs resulting in a rethinking of the contemporary approach to fracture fixation [7].
  • Treatment of distal radius fractures remains controversial despite a large volume of research [19].
  • The American Academy of Orthopaedic Surgeons Clinical Practice Guideline on the Treatment of Distal Radius Fractures is unable to make any strong recommendations [19].
  • Nearly two-thirds of categories in the AAOS Clinical Practice Guideline are “inconclusive” or “limited” after review of the evidence [19].
  • The most recent Cochrane Review concludes there remains insufficient evidence from randomized controlled trials to determine which methods of treatment are the most appropriate for the more common types of distal radius fractures in adults [19].
  • The best method of operative fixation of distal radius fractures remains unclear [19].
  • Options for management include closed reduction and cast immobilization, closed reduction and percutaneous pinning with or without external fixation, and ORIF [11].
  • Most open fractures and volar shearing fractures are best treated operatively [11].
  • Surgical treatment indications relate to infirmity, functional demands, tolerance of deformity, and personal preferences [11].
  • Loss of reduction including ulnar variance 5 mm or more positive is a characteristic meriting a discussion of surgical treatment [11].
  • Dorsal articular tilt ≥15° (ie, volar apex angulation) is a characteristic meriting a discussion of surgical treatment [11].
  • Loss of radial inclination >10° is a characteristic meriting a discussion of surgical treatment [11].
  • An articular gap or step of 2 mm or more is a characteristic meriting a discussion of surgical treatment [11].
  • Unstable volar extra-articular fractures (Smith fracture) are a characteristic meriting a discussion of surgical treatment [11].
  • Fractures with associated neurovascular injuries are a characteristic meriting a discussion of surgical treatment [11].
  • Fractures with associated intercarpal ligament injuries are a characteristic meriting a discussion of surgical treatment [11].
  • Multiple trauma, such as bilateral distal radius fractures or the need to use crutches for a leg injury, is a relative indication for surgical treatment [11].
  • Current best evidence suggests initial displacement determines the final alignment regardless of the time of immobilization [11].
  • Wrist splints or short arm casts are usually used for immobilization, and the elbow and forearm are usually left free unless there is severe radioulnar joint injury/disruption [11].
  • Displaced fractures are immobilized for 4 to 6 weeks after acceptable closed reduction [11].
  • It is important to encourage elevation, digital range of motion, and functional use of the limb to avoid stiffness of the fingers and forearm and to limit swelling [11].
  • Nondisplaced distal radius fractures are associated with occasional extensor pollicis longus rupture, usually about 4 to 6 weeks after injury [11].
  • External fixation supplemented with percutaneous pins is an excellent option for treating displaced fractures of the distal radius [6].
  • External fixation supplemented with percutaneous pins has reliably good results, a low reoperation rate, and a low complication rate [6].
  • Bridging external fixation can be used to protect pin fixation or to provide ligamentotaxis [11].
  • Full incisions over the radius and index metacarpal at the time of fixator pin placement minimize the risk of iatrogenic injury to the superficial branch of the radial nerve or tethering of the first dorsal interosseous muscle [11].
  • The external fixator and pins typically remain in place for 6 to 8 weeks [11].
  • Bone graft or bone void fillers can be used to structurally support bone defects and perhaps allow earlier removal of the fixator [11].
  • Volar locking plates make it possible to stabilize dorsally displaced fractures from through the volar Henry approach (through the sheath of the flexor carpi radialis tendon) [11].
  • Potential pitfalls of volar locking plate application include intra-articular screw placement and application to inappropriate fracture patterns with prominent implant placement which may lead to tendon rupture [11].
  • The most common tendon to rupture following application of a volar plate is the flexor pollicis longus, due to volar extension of the plate beyond the so-called watershed line [11].
  • Dorsal tendons such as the extensor pollicis longus and extensor digitorum communis can fray and rupture from prominent screw tips following volar insertion [11].
  • Dorsal plates or constructs are now preferred for dorsal shearing fractures and complex articular fractures (in combination with volar plates) [11].
  • Distraction (or bridge) plate fixation is increasingly utilized for complex articular fracture, those with complex metaphyseal or diaphyseal fragmentation in particular [11].
  • A distraction plate is applied between the index or long finger metacarpal and the shaft of the radius, applied with distraction, and removed about 3 months after injury [11].
  • Application of the bridge/distraction plate should not be a substitute for accurate ORIF [11].
  • Volarly displaced extra-articular fractures (Smith fractures) can be treated with reduction and casting if no comminution is present and a good reduction is obtained [11].
  • Volarly displaced extra-articular fractures (Smith fractures) are usually treated surgically with a volar plate and screws [11].
  • Fractures of the radial styloid may be associated with SL ligament injuries because the intra-articular fracture line extends into the joint at that level [11].
  • In the setting of isolated radial styloid fractures, intercarpal ligament injuries must be suspected [11].
  • Nondisplaced or minimally displaced radial styloid fractures may be treated nonsurgically [11].
  • Intra-articular displacement (or diastasis) greater than 2 mm in radial styloid fractures is an indication for surgery [11].
  • Compression screw fixation with partially threaded 3.5- or 4.0-mm cancellous screws can effectively compress the fragments and maintain the reduction in radial styloid fractures [11].
  • The distal radioulnar joint is assessed following stabilization of the radius [11].
  • Slightly greater laxity than the opposite uninjured wrist is to be expected following distal radius fracture treatment [11].
  • Only frank dislocation with forearm rotation merits surgery to stabilize the distal radioulnar joint [11].
  • The presence of a displaced fracture at the base of the ulnar styloid is not in itself an indication for surgical fixation [11].
  • Clinical stability of the DRUJ must be elucidated and compared with the normal contralateral side when possible [11].
  • An associated ulnar styloid fracture does not affect the outcomes of a distal radial fracture [9].
  • Clinicians should be cautious in electing operative treatment for patients with an ulnar styloid fracture [9].
  • Bone graft substitutes are primarily used to provide structural stability and perhaps early return to function in distal radius fractures, where the risk of nonunion is minimal [10].
  • A certain degree of radial height loss is noted in patients undergoing fracture fixation with volar locking plate for extra-articular distal radius fractures [8].
  • Combined median and ulnar nerve palsy related to distal fractures of the radius are exceedingly rare [2].
  • Combined median and ulnar nerve palsy related to distal fractures of the radius require a standardised management strategy [2].
  • DP fragment size is not an indicator of the need for or use of a dorsal approach in DRF fixation [54].

Anatomy & Pathophysiology

Bony Anatomy

  • The distal radius articular surface is biconcave and features scaphoid and lunate facets [41].
  • The distal radioulnar joint (DRUJ) articulates with the ulna at the sigmoid notch [41].
  • Lister tubercle is a small dorsal prominence that serves as a landmark for the dorsal approach to the wrist [41].
  • Lister tubercle is a cause of attritional rupture of the extensor pollicis longus (EPL) after a distal radius fracture [41].
  • The distal radius metaphysis has thin cortex and is vulnerable to bending forces [41].
  • The brachioradialis insertion on the radial styloid acts as a deforming force in distal radius fractures [41].
  • In the normal wrist, the distal radius bears 80% of axial load in neutral ulnar variance [41].
  • The carpus encompasses two rows of eight bones that serve as a bridge between the forearm and the hand [24].
  • The proximal carpal row from radial to ulnar includes the scaphoid, lunate, and triquetrum [24].
  • The distal carpal row from radial to ulnar includes the trapezium, trapezoid, capitate, and hamate [24].
  • The scaphoid is a small, irregular S-shaped tubular bone located in the proximal carpal row on the radial aspect of the wrist [37].
  • The scaphoid lies entirely within the wrist joint and is located at a 45-degree plane to the longitudinal and horizontal axis of the wrist [37].
  • The scaphoid has a reduced capacity for periosteal healing and an increased tendency for delayed union and nonunion due to its surface being extensively covered with articular cartilage (over 80%) [37].
  • The scaphoid acts as a midcarpal joint “bridge” linking and synchronizing the motions of the proximal and distal carpal rows as part of the key intercalated segment [37].

Ligamentous Anatomy

  • The extrinsic ligaments of the carpus connect the carpal bones to the forearm bones proximally and the metacarpals distally [39].
  • The extrinsic palmar radiocarpal ligaments include the transverse carpal, radioscaphocapitate, radioscapholunate, radial collateral, long radiolunate, and short radiolunate ligaments [39].
  • The extrinsic ulnocarpal ligaments include the ulnotriquetral, ulnolunate, and ulnocapitate ligaments [39].
  • The strong oblique extrinsic palmar radial ligaments prevent the carpus from translating medially on the angulated slope of the distal radius through two V-shaped ligamentous bands [39].
  • The space of Poirier is an interval of capsular weakness over the capitolunate articulation where the lunate displaces into the carpal canal during dorsal dislocations [39].
  • The arcuate ligament forms a support sling for the midcarpal region, particularly the head of the capitate, improving midcarpal movement and delivering carpal stability [39].
  • The intrinsic ligaments connect individual carpal bones to one another and are intra-articular short fibers [39].
  • The intrinsic ligaments include the palmar midcarpal ligaments, proximal interosseous ligaments, and distal interosseous ligaments [39].
  • The V-shaped scaphotrapezium–trapezoid ligament provides stability to the scaphoid–trapezium–trapezoid articulation as well as the scaphoid itself [39].

Normal Radiographic Parameters

  • Radiographic measurement of an intact distal radius shows an average of 22 to 23 degrees of radial inclination [13].
  • Radiographic measurement of an intact distal radius shows an average of 11 to 12 mm of radial height [13].
  • Radiographic measurement of an intact distal radius shows an average of 11 to 12 degrees of volar tilt [13].
  • Radiographic measurement of an intact distal radius shows ± 2 mm of ulnar variance [13].
  • The average radial height is 11 mm, with less than 5 mm of shortening accepted [41].
  • The average radial inclination is 22 degrees, with less than a 5-degree change accepted [41].
  • The average volar tilt (lunate fossa inclination) is 11 degrees, with less than 10 degrees of dorsal angulation accepted [41].

Pathophysiology and Mechanisms

  • Distal radius fractures occur in a bimodal distribution with peaks for high-energy injuries in young patients and low-energy injuries in elderly patients [29].
  • The incidence of distal radius fractures in the United States is 643,000 per year [29].
  • The main risk factor for distal radius fractures is low bone mineral density, which is also a predictor of future fractures [30].
  • A low-energy distal radius fracture in an older patient is a risk factor for future fragility fractures [29].
  • The injury described by Abraham Colles in 1814 is a transverse fracture of the radius just above the wrist with dorsal displacement of the distal fragment [20].
  • Colles' fracture is the most common of all fractures in older women, with high incidence related to the onset of postmenopausal osteoporosis [20].
  • In Colles' fractures, the radius is fractured at the corticocancellous junction about 2 cm from the wrist [20].
  • In Colles' fractures, the distal fragment is characteristically shifted and tilted both dorsally and towards the radial side [20].
  • The distal end of the radius is subject to many different types of fracture depending on age, transfer of energy, mechanism of injury, and bone quality [20].
  • Treatment options for distal radius fractures depend on whether the fracture is intra- or extra-articular and the degree of fragmentation of the joint surface and metaphysis [20].

Complications and Malunion Pathophysiology

  • Malunion remains a common cause of residual disability after distal radial fractures [13].
  • Not all distal radial malunions are symptomatic, especially in elderly patients with low functional demands [13].
  • Posttraumatic wrist deformities in younger, active patients may be sufficiently disabling to warrant surgical correction [13].
  • Malunion can be caused by failure to achieve or maintain an accurate reduction or by inadequate duration or type of immobilization [13].
  • Reduction is most difficult to obtain and maintain in fractures with marked comminution, severe osteoporosis, or disruption of the distal radioulnar ligaments [13].
  • Older patients have more malunions than younger patients, with a mean age of 60 years for malunions versus 51 years for non-malunions [13].
  • Malunions of the distal radius may be associated with extraarticular deformities, intraarticular malalignment, distal radioulnar joint incongruity or instability, or a combination of these features [13].
  • Extraarticular deformities include shortening and excessive dorsal or volar tilt of the distal radial articular surface [13].
  • Intraarticular incongruity in the radiocarpal joint of more than 2 mm is likely to be associated with a poor functional outcome [13].
  • A 1- to 2-mm step-off at the distal radioulnar joint is likely to be associated with a poor functional outcome [13].
  • Dorsal angulation of more than 20 degrees and radial inclination of less than 10 degrees are likely to be associated with a poor functional outcome [13].
  • Loss of sagittal tilt of 20 to 30 degrees is likely to be associated with a poor functional outcome [13].
  • More than 10 degrees of dorsal tilt leads to decreased wrist flexion [13].
  • 6 mm of radial shortening causes dysfunction of the distal radioulnar joint [13].
  • Fractures with more than 25 or 30 degrees of angulation in the frontal or sagittal plane or 6 mm or more of radial shortening are likely to become symptomatic [13].
  • Patients with constitutional joint laxity may develop midcarpal instability with a dorsal tilt of only 10 to 15 degrees [13].
  • Significant articular incongruity and radial shortening are more consistently correlated with the development of symptoms than other measurements [13].
  • 20 to 30 degrees of dorsal tilt altered the force distribution across the radiocarpal joint and should be considered a prearthritic condition [13].
  • Complications in the treatment of distal radius fractures have been reported in frequencies ranging from 6% to 80% [21].
  • Carpal tunnel syndrome is one of the most common complications of distal radius fractures and can be acute, subacute, or delayed as much as 25 years [21].
  • Acute carpal tunnel syndrome is characterized by progressive pain and neurologic symptoms in the median nerve distribution and necessitates urgent surgical release [21].
  • Median nerve contusion is not progressive and improves over time [21].
  • Ulnar nerve injury is much less common and is most often a neuropraxia that resolves spontaneously [21].
  • The most common tendon to rupture following application of a volar plate is the flexor pollicis longus, due to volar extension of the plate beyond the watershed line [11].
  • Malunion occurs commonly in distal radius fractures, particularly in elderly patients managed nonoperatively [32].
  • Malunion can result in decreased grip strength, limitations in range of motion, pain, and cosmetic deformity [32].
  • Surgical procedures designed to correct malunions of the distal radius rarely result in a normal wrist [32].
  • Deficits in range of motion and grip strength after corrective osteotomy rarely exceed 70% of the contralateral limb [32].

Classification

  • Numerous distal radius classification systems exist, yet there is no consensus as to their reliability or value in treatment planning [52].
  • Orthopaedic surgeons often prefer eponymous, historical systems because the naming convention succinctly communicates the salient features of common fracture patterns [52].
  • The AO/Orthopaedic Trauma Association (OTA) classification system is familiar to orthopaedic surgeons and is used frequently in clinical studies [52].
  • In the AO/OTA classification, Type A fractures are extra-articular (Colles and Smith) [52].
  • In the AO/OTA classification, Type B denotes partial articular fractures (volar and dorsal Barton) [52].
  • In the AO/OTA classification, Type C includes complete articular fractures where no portion of the articular surface is contiguous with the shaft [52].
  • Volar and dorsal shear fractures (partial articular, type B) are inherently unstable [52].
  • A volar lunate facet fragment must be stabilized [52].
  • The wrist can be considered as three columns when evaluating comminuted or complex fracture patterns: the radial column, the middle column, and the ulnar column [52].
  • The radial column includes the radial styloid and scaphoid facet [52].
  • The middle column includes the volar and dorsal lunate facets and sigmoid notch [52].
  • The ulnar column includes the ulnar head and TFCC [52].
  • The middle column should be prioritized in fracture management [52].
  • Failure to stabilize the volar lunate facet fragment can lead to volar subluxation of the carpus [52].
  • The sigmoid notch is important for forearm supination [52].
  • The dorsal and volar lunate facets are the origins of their respective radioulnar ligaments and play a role in DRUJ stability [52].
  • Eponymous systems (Colles, Smith, volar Barton, dorsal Barton) impart a large amount of information with only a few words if used correctly [52].
  • Eponymous systems are often used incorrectly (more broadly than intended) and create confusion [52].
  • Eponymous systems are not comprehensive and do not include all fractures [52].
  • The AO/Orthopaedic Trauma Association classification is comprehensive [52].
  • The AO/Orthopaedic Trauma Association classification has moderate intraobserver and interobserver reliability [52].
  • The AO/Orthopaedic Trauma Association classification involves 144 subtypes, making it cumbersome to use [52].
  • The AO/Orthopaedic Trauma Association classification has decreased reliability with subtyping [52].
  • CT scan should be requested only by experienced hand surgeons in order to help guide treatment, as it does not significantly improve inter- and intra-observer agreement for all classification systems [35].

Clinical Presentation

History and Mechanism

  • The patient history for distal radius fractures usually involves a fall onto an outstretched hand, with some injuries resulting from higher energy mechanisms [48].
  • The low-energy dorsally displaced fracture (Colles' fracture) is the most common of all fractures in older women, with high incidence related to the onset of postmenopausal osteoporosis [20].
  • The risk factors for distal radius fractures are the same as those for other osteoporotic fractures, with the main risk factor being low bone mineral density [30].
  • Clinical risk factors such as a history of prior fracture, endocrine disease, and certain medications place patients at a higher risk of fracture [30].
  • Older adults who sustain distal radius fractures have impaired postural stability compared with similar aged individuals who have not sustained fractures [30].

Physical Examination

  • Patients present with associated pain, swelling, and often visible deformity at the wrist [48].
  • The most typical pattern of deformity is dorsal angulation at the distal radius accompanied by compensatory flexion of the carpus, resulting in a "dinner fork" deformity [48].
  • In patients with less deformity, there may only be local tenderness and pain on wrist movements [20].
  • When there is no obvious deformity but clinical suspicion remains high, point tenderness or pain with percussion at the distal radius can aid in diagnosis [48].
  • Physical examination should include a thorough inspection of the skin to evaluate for open wounds, which most commonly occur on the volar ulnar side [48].
  • A thorough neurologic examination is required to rule out acute carpal tunnel syndrome and to look for median or ulnar nerve injury [48].
  • Patients should be asked about numbness or paresthesias to look for median or ulnar nerve injury [48].
  • Additional details of the history should focus on other areas of pain in the ipsilateral limb to rule out concomitant injury [48].

Imaging and Assessment

  • Standard scaphoid radiographs are used for primary assessment to detect displacement and associated fractures [26].
  • Provocative stress tests may be required to demonstrate dynamic radiocarpal instability [26].
  • CT may be required to better define associated bony injuries [26].
  • MRI can be used to determine the extent of ligamentous disruption [26].
  • There may be radiographic factors other than measures of deformity that some surgeons use to determine recommendations for surgery [12].
  • Combining the obliquity and concavity of the distal radial articular surface makes it difficult to give one particular angle at which the whole distal articular surface can be visualized adequately [18].
  • Metaphyseal collapse ratio is a novel radiographic parameter that provides a reliable measure of metaphyseal comminution and is significantly correlated with other radiographic parameters that predict distal radius fracture instability [17].
  • The distal radioulnar joint is assessed following stabilization of the radius, with slightly greater laxity than the opposite uninjured wrist being expected [11].
  • The presence of a displaced fracture at the base of the ulnar styloid is not in itself an indication for surgical fixation, and clinical stability of the distal radioulnar joint must be elucidated and compared with the normal contralateral side when possible [11].

Investigations

Radiographic Assessment

  • Standard scaphoid radiographs are used for the primary assessment of distal radius fractures to detect displacement and associated fractures [26].
  • In patients with ulnar translation, the radiographic appearance is often dramatic with the lunate positioned just distal to the ulna and a large space between the radial styloid and the scaphoid [26].
  • A decrease in the ulnocarpal index may provide the only clue to diagnosis when ulnar shift is subtle [26].
  • Metaphyseal collapse ratio is a novel radiographic parameter that provides a reliable measure of metaphyseal comminution [17].
  • Metaphyseal collapse ratio is significantly correlated with other radiographic parameters that predict distal radius fracture instability [17].
  • Dual-energy CT can be used to decrease metal artifact in areas of previous internal fixation, which can make recognition challenging [55].

Secondary Imaging Modalities

  • Secondary imaging modalities are predominantly used in the assessment of scaphoid fractures and the diagnosis of intercarpal ligament injury and any associated instability [44].
  • Ultrasound scanning (USS) is used for suspected carpal fractures and ligament injuries [44].
  • CT (2D/3D) is used for suspected carpal fractures, fracture displacement, malunion, nonunion, and bone loss [44].
  • 3D imaging is useful in reconstructive procedures for malunions and nonunions [44].
  • Dynamic CT is used by some for ligament injuries [44].
  • Bone scintigraphy is used for suspected carpal fractures and avulsion injuries [44].
  • Arthrography ± videofluoroscopy is used for ligament injuries [44].
  • MRI is used for suspected carpal fractures, avascular necrosis (AVN) of carpal bones, and ligament injuries [44].
  • Wrist arthroscopy is used for suspected carpal fractures, fracture displacement, and ligament injuries [44].
  • Live/video fluoroscopic evaluation of the wrist can provide diagnostic clarity for dynamic instability [44].
  • Sensitivities for live/video fluoroscopic evaluation are reported between 86% and 95% for diagnosing scapholunate ligament injury [44].
  • Specificity for live/video fluoroscopic evaluation is reported between 80% and 97% for diagnosing scapholunate ligament injury [44].
  • Live/video fluoroscopic evaluation provides an improved detection for low-grade injuries compared to static radiographs [44].
  • Ultrasound scanning (USS) provides an additional tool for the detection of carpal ligament injuries [44].
  • Ultrasound scanning (USS) is operator dependent and has yet to be universally adopted because of this [44].

Scaphoid Fracture Imaging

  • X-rays for scaphoid fractures should include AP, lateral, and two oblique views [27].
  • The fracture may not be seen on X-rays in the first few days after the injury [27].
  • Two weeks later, the break is usually much clearer due to bone resorption at the fracture site and slight displacement of fragments [27].
  • A CT scan is more sensitive for diagnosing a scaphoid fracture [27].
  • CT is particularly useful in confirming the alignment of the bone fragments if surgery is planned [27].
  • CT is useful to confirm whether the fracture has united or not [27].
  • MRI is the definitive way to confirm or exclude a diagnosis of scaphoid fracture if the technique is available [27].
  • 10–15% of scaphoid fractures are not visible on initial X-rays [25].
  • If MRI is not available, repeated X-rays are needed 2 weeks later as shifting of the bones and resorption at the fracture line can make the fracture more apparent [25].
  • If there is still doubt after a further 2 weeks, X-ray again [25].
  • An anteroposterior (AP) view with the fist clenched can be added if there is a suspicion of a scapholunate injury [25].
  • In the lateral X-ray, the axes of the radius, lunate, capitate and third metacarpal are co-linear [25].
  • In the lateral X-ray, the scaphoid projects at an angle of about 45 degrees to the line of the radius [25].
  • Dorsal intercalated segmental instability (DISI) is characterized by the lunate tilting backwards and the axes of the capitate and metacarpals lying behind (dorsal to) that of the radius [25].
  • Volar intercalated segment instability (VISI) is characterized by the lunate and scaphoid tilting somewhat volarwards and the capitate and metacarpals lying anterior (volar) to the radius [25].
  • The lateral intrascaphoid angle is normally 30 degrees ±5 degrees on a sagittal view [44].
  • An angle greater than 35 degrees is used as a cut-off for displacement of the lateral intrascaphoid angle [44].
  • The AP intrascaphoid angle is normally 40 degrees ± 5 degrees on coronal views [44].
  • The dorsal cortical angle is normally 140 degrees, with abnormal values greater than 160 degrees on a sagittal view [44].
  • The scaphoid height-to-length ratio is normally 0.60, with abnormal values greater than 0.65 on a sagittal view [44].
  • The intra and interobserver reliability of the lateral intrascaphoid angle is poor and poor to moderate, respectively [44].
  • The intra and interobserver reliability of the dorsal cortical angle is moderate to excellent for both [44].
  • The intra and interobserver reliability of the scaphoid height-to-length ratio is excellent and moderate to excellent, respectively [44].

Outcome Measures

  • The minimal clinically important difference (MCID) of the DASH score is 9 [14].
  • The minimal clinically important difference (MCID) of the PRWE score is 18 [14].
  • The MCID of DASH is more sensitive in detecting clinical changes after surgical treatment of distal radial fractures [14].
  • The MCID of PRWE is more specific in detecting clinical changes after surgical treatment of distal radial fractures [14].

Treatment

General Principles and Indications

  • Treatment options include closed reduction and cast immobilization, closed reduction and percutaneous pinning with or without external fixation, and open reduction internal fixation (ORIF) [11].
  • Injury and patient characteristics meriting a discussion of surgical treatment include loss of reduction with ulnar variance 5 mm or more positive, dorsal articular tilt ≥15°, and loss of radial inclination >10° [11].
  • Injury and patient characteristics meriting a discussion of surgical treatment include an articular gap or step of 2 mm or more [11].
  • Injury and patient characteristics meriting a discussion of surgical treatment include unstable volar extra-articular fractures (Smith fracture) [11].
  • Injury and patient characteristics meriting a discussion of surgical treatment include fractures with associated neurovascular injuries [11].
  • Injury and patient characteristics meriting a discussion of surgical treatment include fractures with associated intercarpal ligament injuries [11].
  • Surgery is indicated for unstable fractures, defined as a fracture criterion predictive of instability, inadequate initial closed reduction, or loss of reduction during follow-up [46].
  • Other indications for surgery include open fractures, those with certain associated injuries, and high-energy injuries in young patients [46].
  • The presence of three or more of the following factors before reduction is predictive of secondary displacement after closed reduction: dorsal comminution, dorsal angulation >20°, ulnar styloid fracture, intra-articular extension, and age older than 60 years [46].
  • American Academy of Orthopaedic Surgeons clinical practice guidelines recommended surgery for postreduction radial shortening >3 mm, dorsal tilt >10°, or intra-articular displacement or step-off >2 mm [46].
  • A 2020 meta-analysis showed that median term DASH scores and grip strength favored surgical treatment compared to nonsurgical management, although there was no difference for patients older than 60 years [46].
  • Restoration of radiographic parameters (volar tilt, radial inclination, and radial height) does not necessarily translate into improvement in functional outcome in patients older than 60 years [46].
  • In a prospective cohort of patients older than 55 years, ulnar positivity >2 mm was associated with worse patient-reported outcomes at 1 year regardless of treatment type [46].
  • Shortening of >5 mm weakens the wrist and substantially limits rotation [46].
  • Open distal radius fractures are managed with prompt initiation of intravenous antibiotics and surgical débridement and irrigation [46].
  • In a 2020 retrospective study of 90 open distal radius fractures, 74% were managed with immediate ORIF at the time of irrigation and débridement [46].
  • The authors of a 2020 retrospective study concluded that immediate definitive treatment provides satisfactory outcomes for open distal radius fractures [46].
  • For the young patient, restoration of bony anatomy should be the priority [29].
  • For the elderly patient, restoring height, tilt, and inclination is not necessary or sufficient to achieve pain relief and good function [29].
  • The treating physician must practice an individualized, patient-specific approach that requires a thorough understanding of the treatment options, their relative merits and disadvantages, and the patient’s priorities and expectations [29].
  • Prevention of complications associated with distal radius fractures should be the treating surgeon's primary concern, with early diagnosis and treatment being important to avoid long-term consequences [1].
  • Optimal outcomes in the treatment of forearm fracture–dislocations depend on early recognition and management, with restoration and maintenance of anatomic alignment being the key principles [5].
  • The best method of operative fixation of distal radius fractures remains unclear due to ongoing controversy and insufficient evidence from randomized controlled trials [19].

Non-Operative Management

  • Wrist splints or short arm casts are usually used for distal radius fractures, and the elbow and forearm are usually left free unless there is severe radioulnar joint injury or disruption [11].
  • The distal radioulnar joint is assessed following stabilization of the radius, and slightly greater laxity than the opposite uninjured wrist is to be expected [11].
  • Clinical stability of the distal radioulnar joint must be elucidated and compared with the normal contralateral side when possible [11].
  • Multiple clinical studies have documented equivalent patient-reported outcomes with cast treatment despite high rates of malunion and diminished grip strength in elderly patients [46].
  • A 2016 meta-analysis showed no difference in outcomes between surgical and nonsurgical treatment in patients older than 60 years [46].

Operative Management: Percutaneous Pinning and External Fixation

  • Closed reduction and percutaneous pinning with or without external fixation uses 0.62-inch or 1.6-mm K-wires [11].
  • Bone graft or bone void fillers can be used to structurally support bone defects and perhaps allow earlier removal of the external fixator [11].
  • External fixation supplemented with percutaneous pins is an excellent option for treating displaced fractures of the distal radius, with reliably good results, a low reoperation rate, and a low complication rate [6].

Operative Management: Open Reduction Internal Fixation (ORIF)

  • Potential pitfalls of volar locking plate fixation include intra-articular screw placement and application to inappropriate fracture patterns with prominent implant placement which may lead to tendon rupture [11].
  • Volar comminution fractures are preferably treated with a volar plate [47].
  • Dorsal shear fractures are preferably treated with a dorsal plate [47].
  • Dorsal comminution fractures are preferably treated with a dorsal plate, considering bone graft for support [47].
  • Die punch fractures are preferably treated with a dorsal plate, considering bone graft for support [47].
  • Distal articular shear fractures are preferably treated with a dorsal spanning plate or external fixator [47].
  • Isolated radial styloid fractures are preferably treated with lag screws if large enough or a buttress plate [47].
  • Lunate facet involvement is preferably treated with a volar plate with ulnar buttress [47].
  • Dorsal shearing injuries or fractures with significant articular comminution are addressed dorsally to allow better visualization of articular surfaces, elevation of depressed articular fragments, and bone grafting when required [47].
  • When using dorsal plating, care is taken to repair the extensor retinaculum over the plate leaving the EPL transposed [47].
  • Fragment-specific fixation is reserved for rare cases that cannot be addressed with volar or dorsal approaches alone due to postoperative stiffness from multiple incisions [47].
  • Highly comminuted and unstable injuries are often treated with a dorsal spanning plate or external fixator, depending on the ease of reduction and physical demands of the patient [47].
  • Dorsal spanning plates preclude reduction once applied, making them preferable in cases where the reduction holds easily or can be provisionally pinned [47].
  • External fixation allows manipulation after application so is preferred when the reduction is difficult and may require further manipulation or is not easily pinned [47].
  • In patients who are active or need to weight-bear immediately, dorsal spanning plates can allow quick return to activity while the fracture heals [47].
  • Surgeons should consider each case individually and choose the method that is likely to result in the best outcome in their hands, given the lack of data supporting one method over another [47].
  • Careful attention to surgical technique during volar locking plate fixation, such as proper placement proximal to the watershed line, is important to prevent implant prominence and potential complications such as flexor tendon irritation and rupture [49].
  • Reduction of the lunate facet and ensuring distal radioulnar joint congruence in the treatment of distal radius fractures are paramount for the restoration of forearm supination, which is directly related to patient satisfaction and function [49].
  • Results from a randomised clinical trial comparing stainless steel versus titanium volar multi-axial locking plates will contribute to the evidence on operative management of distal radius fractures and plate material type [4].

Complications and Adverse Outcomes

  • In the setting of open injuries or complete ulnar palsy, exploration may be warranted [21].
  • Combined median and ulnar nerve palsy related to distal fractures of the radius are exceedingly rare but require a standardised management strategy [2].
  • Not all distal radial malunions are symptomatic, especially malunions in elderly patients with low functional demands, in which no further treatment is indicated [13].
  • Older patients have more malunions than younger patients, with a mean age of 60 years for patients with malunions versus 51 years for those without [13].
  • Radiographic measurement of alignment of an intact distal radius shows an average of 22 to 23 degrees of radial inclination, 11 to 12 mm of radial height, 11 to 12 degrees of volar tilt, and ± 2 mm of ulnar variance [13].
  • Parameters likely to be associated with a poor functional outcome include intraarticular incongruity in the radiocarpal joint of more than 2 mm, a 1- to 2-mm step-off at the distal radioulnar joint, dorsal angulation of more than 20 degrees and radial inclination of less than 10 degrees, and the loss of sagittal tilt of 20 to 30 degrees [13].
  • Fractures with more than 25 or 30 degrees of angulation in the frontal or sagittal plane or 6 mm or more of radial shortening were likely to become symptomatic [13].
  • Significant changes to distal radioulnar joint mechanics as well as ligament lengthening occur with malunion of the distal radius, which may contribute to the dysfunction associated with these injuries [13].
  • Significant articular incongruity and radial shortening are more consistently correlated with the development of symptoms than are other measurements [13].
  • The minimal clinically important difference (MCID) of the DASH score is 9 and the MCID of the PRWE is 18 in surgically treated distal radial fractures [14].
  • The MCID of DASH is more sensitive and the MCID of PRWE is more specific in detecting clinical changes after surgical treatment of distal radial fractures [14].

Complications

General Principles and Incidence

  • Soft tissue complications associated with distal radius fractures may be more problematic than the bone injury itself [22].

Nerve Injury

Tendon Injury

Malunion

  • Not all distal radial malunions are symptomatic, especially malunions in elderly patients with low functional demands [13].
  • In one study, malunion was found to be associated with higher arm-related disability regardless of age [13].
  • Older patients have more malunions, with a mean age of 60 years for patients with malunions compared to 51 years for those without [13].
  • Treatment of malunion should focus on the symptomatic patient and not on radiographic appearance [32].
  • Some authors have argued that in cases of intra-articular malunion, early treatment may be warranted before there is evidence of degeneration [32].
  • A malunion of the distal radius is defined as radial inclination <10 degrees, volar tilt >20 degrees or dorsal tilt >20 degrees, radial height <10 mm, ulnar variance >2+ mm, or intra-articular incongruity or diastasis >2 mm [32].
  • Corrective osteotomy designed to restore normal radiocarpal and distal radioulnar relationships is indicated for symptomatic malunion [32].
  • More recent data support intervention as early as 6 weeks for malunion correction, resulting in a technically less challenging case and a shorter overall period of patient disability [32].
  • Following malunion correction, range of motion and grip strength rarely exceed 70% of the contralateral limb [32].

Other Complications

Recovery

Malunion and Residual Disability

  • Malunion remains a common cause of residual disability after distal radial fractures despite improvements in treatment since the early 1980s [13].
  • Modern investigators have not confirmed Colles’ 1814 observation that deformity will persist, but that the wrist eventually will “enjoy perfect freedom in all its motions and be completely exempt from pain” [13].
  • No further treatment is indicated for asymptomatic malunions in elderly patients with low functional demands [13].
  • Malunion has been found to be associated with higher arm-related disability regardless of age [13].
  • Fracture characteristics and initial treatment contribute to the development of a malunion [13].
  • Older patients have more malunions than younger patients [13].
  • The mean age of patients with malunions was 60 years, whereas the mean age of patients without malunions was 51 years [13].

Radiographic Parameters and Deformity Thresholds

  • Radiographic measurement of alignment of an intact distal radius shows an average of 22 to 23 degrees of radial inclination [13].
  • Radiographic measurement of alignment of an intact distal radius shows an average of 11 to 12 mm of radial height [13].
  • Radiographic measurement of alignment of an intact distal radius shows an average of 11 to 12 degrees of volar tilt [13].
  • Radiographic measurement of alignment of an intact distal radius shows an average of ± 2 mm of ulnar variance [13].
  • No absolute radiographic criteria define a significant distal radial malunion [13].
  • Significant changes to distal radioulnar joint mechanics as well as ligament lengthening occur with malunion of the distal radius [13].
  • 20 to 30 degrees of dorsal tilt altered the force distribution across the radiocarpal joint [13].
  • 20 to 30 degrees of dorsal tilt should be considered a prearthritic condition [13].

Complications and Nerve Injury

  • Early diagnosis and treatment of complications is important to avoid long-term consequences [1].
  • Early accurate diagnosis of intrinsic carpal ligament injuries provides for best outcomes [16].
  • Delayed diagnosis of intrinsic carpal ligament injuries leads to arthritis within 10 years if not treated [16].

Outcome Measures and Functional Recovery

Fixation and Alignment Maintenance

  • Although superior radiological results were attained with volar plating, these results did not correlate with a better functional outcome compared to k-wiring at 32 months follow up [23].

Key Evidence

  • [Paper] Prevention of complications associated with distal radius fractures should be the treating surgeon's primary concern, with early diagnosis and treatment being important to avoid long-term consequences. [1] (10.1016/j.hcl.2014.12.002)
  • [Paper] Combined median and ulnar nerve palsy related to distal fractures of the radius are exceedingly rare but require a standardised management strategy. [2] (10.1016/j.otsr.2018.04.026)
  • [L2] Results from this trial will contribute to the evidence on operative management of distal radius fractures and plate material type. [4] (10.1186/1471-2474-15-74)
  • [L5] Optimal outcomes in the treatment of forearm fracture–dislocations depend on early recognition and management, with restoration and maintenance of anatomic alignment being the key principles. [5] (10.1016/j.hcl.2015.01.010)
  • [L1] External fixation supplemented with percutaneous pins is an excellent option for treating displaced fractures of the distal radius, with reliably good results, a low reoperation rate, and a low complication rate. [6] (10.1016/j.hcl.2009.08.008)
  • [Paper] The management of distal radius fractures is in the midst of a renaissance with novel locking plate designs resulting in a rethinking of the contemporary approach to fracture fixation. [7] (10.1016/j.hcl.2005.04.001)
  • [Paper] A certain degree of radial height loss is noted in patients undergoing fracture fixation with volar locking plate for extra-articular distal radius fractures. [8] (10.1016/j.otsr.2021.102842)
  • [L1] Based on this meta-analysis, an associated ulnar styloid fracture does not affect the outcomes of a distal radial fracture and clinicians should be cautious in electing operative treatment for patients with an ulnar styloid fracture. [9] (10.1016/j.injury.2017.08.061)
  • [L4] Bone graft substitutes are primarily used to provide structural stability and perhaps early return to function in distal radius fractures, where the risk of nonunion is minimal. [10] (10.1016/j.hcl.2012.02.004)
  • [Paper] There may be radiographic factors other than measures of deformity that some surgeons use to determine recommendations for surgery. [12] (10.1007/s12593-014-0164-0)
  • [L4] The study suggests that the MCIDs of DASH and PRWE were 9 and 18, respectively; and when the DASH and PRWE are used to measure subjective outcomes, the MCID of DASH is more sensitive and the MCID of PRWE is more specific in detecting clinical changes after surgical treatment of distal radial fractures. [14] (10.1177/1753193419864900)
  • [L5] Early accurate diagnosis of intrinsic carpal ligament injuries provides for best outcomes, while delayed diagnosis leads to arthritis within 10 years if not treated. [16] (10.1016/j.hcl.2015.01.003)
  • [Paper] Metaphyseal collapse ratio, a novel radiographic parameter, was found to provide a reliable measure of metaphyseal comminution, and to be significantly correlated with other radiographic parameters that predict distal radius fracture instability. [17] (10.1016/j.otsr.2013.05.002)
  • [L5] Combining the obliquity and concavity of the distal radial articular surface, it is difficult to give one particular angle at which the whole distal articular surface can be visualized adequately. [18] (10.1016/s0020-1383(02)00323-6)
  • [L5] This review focuses on soft tissue complications encountered during the management of distal radius fractures, including tendon injury, nerve dysfunction, vascular compromise, skin problems, compartment syndrome, and complex regional pain syndrome, noting that complications associated with soft tissues may be more problematic than the bone injury itself. [22] (10.1016/j.hcl.2009.11.002)
  • [L3] Although superior radiological results were attained with volar plating, these results did not correlate with a better functional outcome compared to k-wiring at 32 months follow up. [23] (10.1016/j.injury.2015.08.040)
  • [Paper] CT scan should be requested only by experienced hand surgeons in order to help guide treatment, as it does not significantly improve inter- and intra-observer agreement for all classification systems. [35] (10.1016/j.injury.2014.06.017)
  • [Paper] DP fragment size is not an indicator of the need for or use of a dorsal approach in DRF fixation. [54] (10.1055/s-0040-1712328)
  • [L5] Metal artifact in an area of previous internal fixation can make recognition challenging, but dual-energy CT can be used to decrease this artifact. [55] (10.5435/jaaosglobal-d-17-00043)

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[12] Radiographs Versus Radiographic Measurements in Distal Radius Fractures. Journal of Hand and Microsurgery. 2015. DOI: 10.1007/s12593-014-0164-0

[13] Campbell S Operative Orthopaedics 4 Volume Set. RESECTION OF PROXIMAL PART OF RADIAL SHAFT > DISTAL RADIUS.

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[22] Soft Tissue Complications of Distal Radius Fractures. Hand Clinics. 2010. DOI: 10.1016/j.hcl.2009.11.002

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[32] Rockwood And Green S Fractures In Adults. 42: Fractures of the Distal Radius and Ulna > Malunion.

[35] Does the CT improve inter- and intra-observer agreement for the AO, Fernandez and Universal classification systems for distal radius fractures?. Injury. 2014. DOI: 10.1016/j.injury.2014.06.017

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[54] The Die Punch Fragment: Analysis of Fragment Geometry and Need for Fixation. Journal of Hand and Microsurgery. 2022. DOI: 10.1055/s-0040-1712328

[55] Giant Cell Tumor of Distal Radius After Open Reduction Internal Fixation for Distal Radius Fracture. JAAOS: Global Research and Reviews. 2017. DOI: 10.5435/jaaosglobal-d-17-00043

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