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Enfermedad de Kienböck

Kienböck’s disease — progressive wrist pain from lunate avascular necrosis; diagnosis and treatment options.

Updated Sep 2026
Una ilustración dibujada a mano del hueso semilunar de la muñeca, en la que se muestra la pérdida de su irrigación sanguínea.
Enfermedad de Kienböck avanzada (Etapa IIIB): el hueso semilunar, situado en el centro de la muñeca, ha perdido su irrigación sanguínea y se ha colapsado, alterando la mecánica de la muñeca en su conjunto. 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

El dolor de la enfermedad de Kienböck se localiza en la parte posterior de su muñeca, sobre un pequeño hueso llamado semilunar. Con frecuencia aparece sin ninguna lesión evidente, aunque algunas personas recuerdan haber sufrido una caída o un golpe previamente. La parte posterior de la muñeca también puede verse o sentirse hinchada.

El dolor suele empeorar con la actividad y disminuir con el reposo. Muchas personas lo notan sobre todo al agarrar objetos, apretar algo o soportar peso mediante la muñeca. Es posible que su fuerza de agarre sea menor de lo habitual, y que la muñeca no se doble o gire con la misma libertad que antes.

Las tareas cotidianas que implican carga en la muñeca se vuelven más difíciles: levantarse de una silla, llevar bolsas de compras, retorcer un paño o utilizar herramientas manuales pueden provocar dolor. Algunas personas perciben rigidez y molestia en la muñeca al despertar o después de permanecer inmóviles por un tiempo.

Si el dolor de su muñeca sigue este patrón, merece la pena que lo evalúen. Un examen físico puede orientar hacia la enfermedad de Kienböck, pero se requieren estudios de imagen para confirmarlo.

¿Qué está ocurriendo realmente?

La muñeca está formada por ocho huesos pequeños que trabajan en conjunto. Uno de ellos, el hueso semilunar, se encuentra en el centro de la parte dorsal de la muñeca. Funciona un poco como un amortiguador: absorbe la carga y la transmite de manera uniforme a los huesos situados a cada lado.

En la enfermedad de Kienböck, el flujo sanguíneo hacia este pequeño hueso es insuficiente o se interrumpe. Algunos huesos semilunares reciben irrigación únicamente a través de un único vaso sanguíneo con pocas ramificaciones dentro del hueso; por eso no existe una vía alternativa si dicho flujo se ve comprimido. Cuando la sangre no puede llegar, el hueso se ablanda y puede empezar a degradarse. Se cree que las cargas repetidas sobre la muñeca aumentan la presión interna del hueso, lo cual puede obstruir aún más el flujo sanguíneo. La forma de la muñeca también influye: si uno de los huesos del antebrazo es más corto que el otro, el hueso semilunar soporta una carga superior a la que está diseñado para resistir.

A medida que el hueso se debilita, puede aplanarse o fragmentarse. El hueso contiguo pierde entonces su función amortiguadora y se hunde en el espacio resultante; toda la fila de huesos de la muñeca puede desalinearse. Por eso, a medida que la enfermedad avanza, la fuerza de agarre disminuye y la muñeca se vuelve rígida.

Los médicos clasifican el grado de avance de la enfermedad en distintas etapas. En las fases iniciales, el hueso está blando pero aún intacto. Posteriormente, colapsa y las articulaciones de la muñeca pueden desarrollar artritis degenerativa. La etapa en que se encuentre la enfermedad es crucial, pues determina cuál es el tratamiento adecuado: desde reducir la carga sobre el hueso hasta procedimientos de reconstrucción o, en casos avanzados, extirpación o fusión de partes de la muñeca.

Qué podemos hacer al respecto

El Dr. Kieran Hirpara, cirujano de extremidades superiores en el Mater Private Hospital Rockhampton, comienza con las opciones menos invasivas que se adapten a su condición. Por lo general, los pacientes son derivados a nuestra clínica por su médico de cabecera; si un fisioterapeuta le ha sugerido consultarnos, igualmente necesitará una derivación de su médico de cabecera para poder acceder al reembolso de Medicare. En su primera visita, tomamos su historia clínica, examinamos su muñeca y solicitamos estudios de imagen si resultan necesarios. Estudios como la tomografía computarizada y la resonancia magnética muestran hasta qué punto ha avanzado la enfermedad y nos ayudan a planificar el tratamiento.

En el caso de problemas crónicos como este, normalmente probamos primero el tratamiento no quirúrgico. Esto implica modificar la forma en que utiliza la muñeca, reducir la carga de esfuerzo y usar una férula para permitir el descanso del semilunar. La fisioterapia o terapia de la mano tiene como objetivo mantener el movimiento de la muñeca y preservar su fuerza de agarre mientras el hueso se recupera. Por lo general, damos a este enfoque una oportunidad razonable antes de considerar la cirugía.

Si se requiere medicación para el dolor, los antiinflamatorios simples pueden aliviar el malestar, permitiéndole trabajar en el movimiento y la fortaleza muscular. Estos medicamentos tratan los síntomas, no la enfermedad en sí.

La cirugía se considera cuando el tratamiento no quirúrgico no brinda suficiente alivio, o cuando los estudios de imagen revelan que el hueso está comenzando a colapsar. El objetivo de la mayoría de las intervenciones es reducir la carga sobre el semilunar para que pueda recuperarse. Una opción consiste en acortar ligeramente uno de los huesos del antebrazo, lo que distribuye la carga de manera más uniforme en toda la muñeca. Otra opción es realizar un injerto óseo con su propio suministro sanguíneo, colocado en el semilunar para favorecer su curación. Estos procedimientos buscan equilibrar las cargas articulares y son adecuados para las fases iniciales de la enfermedad.

Una vez que el semilunar ha colapsado de forma considerable o se ha desarrollado artritis por desgaste en la muñeca, pasamos a opciones de rescate. Estas implican sacrificar algo del movimiento de la muñeca a cambio de mayor comodidad y funcionalidad. La carpectomía de fila proximal consiste en extirpar el semilunar y dos huesos adyacentes, permitiendo que los huesos restantes asuman su función. La artrodesis de muñeca une algunos de los huesos de la muñeca para evitar que se froten entre sí. La artrodesis escafo-capitada, que une dos huesos situados en el lado del pulgar de la muñeca, es otra alternativa que podríamos plantearle. Le explicaremos en detalle cada procedimiento y sus consecuencias para su muñeca, y juntos decidiremos cuál es el mejor camino para usted.

Qué esperar

La enfermedad de Kienböck normalmente no mejora por sí sola. Tiende a progresar lentamente a lo largo de los años y, sin tratamiento, puede derivar en artritis degenerativa de las articulaciones de la muñeca. No obstante, el ritmo de progresión varía según cada persona; en algunos casos el hueso mantiene su forma durante un año o más sin sufrir cambios.

Con tratamiento, el pronóstico depende del grado de avance de la enfermedad. En las fases iniciales, reducir la carga sobre el hueso puede proporcionar un alivio del dolor duradero. La osteotomía de acortamiento radial, la intervención quirúrgica de acortamiento del antebrazo mencionada anteriormente, permite a muchas personas disfrutar de mejoras durante una década o más; la mayoría conserva una función útil de la muñeca a largo plazo. Asimismo, el injerto óseo con su propio suministro sanguíneo también puede estabilizar la situación a largo plazo. En adolescentes, estas operaciones pueden mejorar tanto los síntomas como el aspecto de la muñeca en las imágenes radiológicas.

En casos avanzados, las intervenciones de rescate como la carpectomía de la fila proximal o la fusión de la muñeca implican sacrificar cierta movilidad a cambio de mayor comodidad. Su objetivo es controlar el dolor y mantener la muñeca operativa para las actividades cotidianas, aunque no pueden devolverla a su estado original.

Hay que reconocer que no existe un único tratamiento que haya demostrado ser superior a los demás para esta afección. Algunas personas responden bien a la cirugía; otras, únicamente a las férulas y a cambios en sus actividades; y unas pocas siguen teniendo problemas a pesar del tratamiento. Aproximadamente una de cada ocho personas sometidas a la operación de acortamiento del antebrazo acaban necesitando posteriormente una intervención de rescate. Aun así, la mayoría de los pacientes tratados logran aliviar el dolor y conservar una muñeca funcional.

Lo que usted puede hacer es proteger el hueso semilunar desde el principio: reducir la carga pesada, usar la férula según las indicaciones y mantener la terapia de la mano; todo ello brinda al hueso una oportunidad de recuperación. Cuanto antes se detecte la enfermedad, más opciones tendrá. Si el dolor de muñeca no mejora, venga a vernos en lugar de esperar a que desaparezca por sí solo.

¿Cuándo consultar a un especialista?

Acuda a su médico de cabecera si presenta dolor en la zona media del dorso de la muñeca que no mejora, especialmente si apareció sin una lesión evidente. Otros signos que merecen atención son la hinchazón en el dorso de la muñeca, una disminución de la fuerza de agarre, o una muñeca que ya no se dobla ni gira con la misma libertad que antes. Solicite una evaluación por parte de un especialista si el reposo, el uso de férulas y la reducción de la carga física no han surtido efecto tras un período razonable de prueba; también si el dolor interfiere con su trabajo o su sueño. La enfermedad de Kienböck suele progresar lentamente; cuanto antes se detecte, más opciones de tratamiento tendrá. Un examen físico puede sugerir su presencia, pero se requieren estudios de imagen para confirmar el diagnóstico.

En mayor profundidad

Esta sección va más allá de lo necesario para que usted tome sus propias decisiones de tratamiento. La enfermedad de Kienböck merece esta lectura adicional debido a un hallazgo preocupante que se repite en toda la literatura al respecto: las cirugías realizadas para tratarla mejoran los síntomas, pero no modifican claramente el efecto de la enfermedad sobre el hueso.

La cirugía alivia el dolor; no se ha demostrado que modifique la evolución de la enfermedad

La comparación más directa disponible consistió en seguir a pacientes a largo plazo tras realizar una osteotomía radial, comparándolos con quienes recibieron tratamiento no quirúrgico. La osteotomía radial no resultó superior al tratamiento no quirúrgico en cuanto a la progresión de la enfermedad según el estadio de Lichtman; sin embargo, sí generó mejores resultados en cuanto al dolor y al rango de movimiento de la muñeca [1].

Estos son dos planteamientos distintos, y así debe entenderse. La intervención quirúrgica mejora la sensación y el movimiento de la muñeca, pero no se ha demostrado que impida el colapso del semilunar. Una comparación a largo plazo posterior entre el tratamiento no quirúrgico y el injerto óseo vascularizado arrojó conclusiones similares [2].

Este es el punto más importante que se debe comprender antes de dar consentimiento para la cirugía. Si la operación se presenta como un medio para salvar el semilunar, dicha afirmación va más allá de la evidencia científica. En cambio, si se propone para reducir el dolor y preservar el movimiento en una muñeca que actualmente duele, entonces sí cuenta con respaldo clínico.

¿Por qué las radiografías y los síntomas no coinciden?

La enfermedad de Kienböck se define mediante criterios radiológicos; los estadios de Lichtman describen la esclerosis, luego el colapso y finalmente la desintegración del carpo. Es lógico suponer que las imágenes radiológicas reflejan el nivel de dolor. Sin embargo, con frecuencia no es así. En algunos cases, el estado radiológico del carpo empeora mientras el paciente siente mejoría; en otros, el dolor persiste aun en etapas tempranas de la enfermedad.

Esa discrepancia explica por qué el hecho de que “la radiografía muestre un peor estado” no constituye, por sí solo, motivo para intervenir quirúrgicamente, y por qué el seguimiento mediante imágenes sucesivas no es un método fiable para tomar decisiones. La decisión debe basarse en los síntomas y en la función de la mano.

Existen numerosas operaciones, y eso en sí mismo es revelador

Acortamiento radial, acortamiento del hueso capitate, injerto óseo vascularizado, descompresión del núcleo, fusiones parciales, carpectomía de la fila proximal: el número de procedimientos descritos es muy elevado. Una revisión sistemática sobre la osteotomía de acortamiento del capitate es una de las adiciones más recientes [3].

En cirugía, una larga lista de procedimientos alternativos para una misma patología suele ser señal de que ninguno de ellos es claramente superior. Esa es la interpretación correcta en este caso; explica por qué dos cirujanos competentes pueden proponer procedimientos distintos para el mismo problema de muñeca sin que ninguno de ellos esté equivocado.

La lógica subyacente a la mayoría de estos procedimientos es de tipo mecánico: reducir la carga que recibe el hueso semilunar, ya sea acortando el radio para que el cúbito asuma más carga, o acortando el capitate para disminuir la fuerza que se transmite al semilunar. Se trata de intentos por aliviar la carga sobre un hueso cuyo aporte sanguíneo está disminuyendo; no buscan restaurar dicho aporte sanguíneo, con la excepción parcial del injerto vascularizado, que intenta lograr ambas cosas.

¿Qué significa esto para usted?

Tres consecuencias prácticas. La observación vigilante es una opción válida, y no un caso de inacción, especialmente si el dolor es tolerable. El propósito de cualquier intervención quirúrgica debe enunciarse en función de los síntomas, no de la etapa de la enfermedad. Y como ningún procedimiento se ha mostrado claramente superior a los demás, resulta fundamental saber por qué esta operación es la adecuada para su muñeca, para su varianza cubital, para la etapa de su condición y para sus necesidades personales; esto es más importante aquí que en la mayoría de las cirugías de mano.

Referencias

[1] Shin YH, Kim JK, Han M, Lee TK, Yoon JO. Comparación de los resultados a largo plazo de la osteotomía radial y el tratamiento no quirúrgico para la enfermedad de Kienböck: una revisión sistemática. J Bone Joint Surg Am. 2018;100(14):1231-40. https://doi.org/10.2106/JBJS.17.00764

[2] Park JY, Kim JK, Shin YH. Comparación de los resultados a largo plazo entre el tratamiento no quirúrgico y el injerto óseo vascularizado para la enfermedad de Kienböck. Clin Orthop Surg. 2023;15(4):643. https://doi.org/10.4055/cios22307

[3] Simske N, Pourghaed M, Johnson C, Clark DM. Osteotomía de acortamiento del capitate para la enfermedad de Kienböck: una revisión sistemática. Hand (N Y). 2026. https://doi.org/10.1177/15589447261441826


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

Pediatric and Adolescent Management

  • Radial osteotomies are effective in improving short-term clinical outcomes and radiographic findings in teenage patients with Kienböck disease [3].
  • Good and excellent clinical and radiological outcomes can be achieved with both nonsurgical and surgical treatments in skeletally immature patients with Kienböck disease [6].
  • A prospective investigation is needed to delineate the appropriate management and expected outcomes of pediatric and adolescent Kienbock disease [7].
  • Children, adolescents, and elderly patients with Kienböck disease respond well to nonoperative treatments, and this should be considered before any surgical intervention [12].
  • Temporary scaphotrapezoidal joint fixation is recommended for the surgical treatment of adolescent Kienböck's disease [13].

Advanced Disease and Salvage Procedures

  • Functional outcomes in medium-term follow-up are discouraging after scaphocapitate arthrodesis for advanced stages of Kienböck disease [2].
  • The long-term clinical benefits of scaphocapitate arthrodesis for treatment of collapsed Kienböck disease are demonstrated [8].
  • Radial shortening osteotomy for symptomatic Kienböck's disease yields reasonable long-term function, though approximately one in eight patients underwent salvage surgery [9].
  • Radial shortening osteotomy should not be contraindicated in advanced Kienbock's disease (without radiocarpal osteoarthritis) as it achieves long-lasting good clinical results with very few complications [11].
  • Tendon ball arthroplasty in advanced Kienböck's disease results in long-term satisfactory clinical outcomes, despite widespread changes in the bones and joints within the wrist [17].
  • Radial shortening osteotomy offers at least comparable outcomes with proximal row carpectomy in treating Kienböck's disease, particularly in preserving joint function and patient satisfaction [26].

Anatomy & Pathophysiology

Lunate Vascular Anatomy

  • The lunate typically receives arterial contributions from branches entering both dorsally and palmarly [14].
  • In one study, the lunate was supplied by only a single palmar artery in 7% of wrists [14].
  • Intraosseous branching patterns vary, with 31% of specimens in one study showing a single path through the bone without significant arborization [14].
  • A lunate with a single vessel and minimal branching may be at increased risk of osteonecrosis after hyperflexion or hyperextension injuries or a minimally displaced fracture [14].
  • Lunate dislocation can occur without the development of osteonecrosis because the lunate usually dislocates palmarly with a flap of palmar capsule still attached, which transmits sufficient vascular supply to maintain viability [14].
  • Lee (1963) found in cadaver experiments that the lunate had three predictable vascular patterns [42].

Etiology and Pathogenesis

  • The exact mechanism(s) of Kienböck disease have not been established [1, 20].
  • Mechanical factors described as having an influence in the development of Kienböck disease include ulnar variance, radial inclination, lunate morphology, intraosseous trabecular anatomy, ulnar length, lunate size, and repeated trauma [20].
  • Vascular or biological factors postulated to favour the disease include a single arterial supply to the bone, poor intraosseous anastomoses, or a hypercoagulability status [20].
  • The main aetiopathogenic theory is that repeated stresses to the lunate may induce a raised intraosseous pressure, which causes cessation of arterial blood flow and leads to hypoperfusion [20].
  • This situation is similar to a bony "intracompartmental syndrome" and may cause progressive ischaemia, leading to interstitial oedema and necrosis of marrow fat [20].
  • The pathogenesis of the disease cannot be attributed to one single cause; it seems more likely that a combination of risk and triggering factors is required [20].
  • Disruption of venous outflow has been suggested as a cause of Kienböck disease [14].
  • In vitro intraosseous pressure measurements within normal and necrotic lunates showed marked increases in pressure in the necrotic bones, a finding more consistent with venous stasis than with arterial compromise [14].
  • It is unclear whether increased intraosseous pressure is a cause or a result of the disease process [14].
  • Some believe that unrecognized and untreated fractures of the lunate lead to Kienböck's disease, based on cadaveric work by Verdan who observed that resulting fractures were not visible on standard radiographs but only on histology [61].
  • Others have questioned these findings, with one study suggesting that early venous congestion, not fracture, of the lunate was responsible for the pathogenesis of Kienböck's disease [61].
  • Kienböck disease is more common in patients with an ulnar minus variant [61].
  • Ulter negative variance is a risk factor for Kienböck disease [33, 34].
  • Decreased radial inclination is a risk factor for Kienböck disease [33, 34].
  • Repetitive trauma is a risk factor for Kienböck disease [33, 34].
  • Vascular patterns of the lunate are a risk factor for Kienböck disease [33, 34].
  • Kienböck disease is most common in young men [33, 34].
  • Kienböck disease manifests as atraumatic dorsal wrist pain and decreased grip strength [33, 34].
  • Unexplained dorsal wrist pain in a young adult with negative ulnar variance should prompt magnetic resonance imaging (MRI) evaluation [33, 34].
  • Kienböck disease is suspected in the face of central dorsal pain at the wrist, over the lunate [36].
  • Kienböck disease often appears spontaneously, even if more or less intense or repeated injury events can be put forward [36].
  • Patients with Kienböck disease often have limited mobility and grip strength [36].
  • Kienböck disease is a progressive disease process that can lead to wrist pain and dysfunction [41].
  • Anatomic, mechanical, vascular, and traumatic factors have been suggested to contribute to the disease [41].
  • The natural history of Kienböck disease is unknown [41].
  • Radiographic and clinical findings do not always correlate in Kienböck disease [41].
  • Kienböck's disease is an eponym for idiopathic avascular osteonecrosis of the lunate [61].
  • It usually has an insidious onset without a history of injury [61].
  • Diagnosis is sometimes made after a simple fall that fractures the necrotic bone [61].
  • Osteonecrosis may be the result of interruption of the vascular supply to the lunate, which shows no radiographic evidence of injury until sclerosis and osteochondral collapse [61].
  • The lunate necrosis after perilunate dislocation is probably due to impairment of the arterial vasculature [61].

Carpal Anatomy and Biomechanics

  • The wrist includes the distal radioulnar, radiocarpal, and ulnocarpal joints and the eight carpal bones and their proximal and distal articulations and attached ligaments [44].
  • The eight carpal bones include the scaphoid, lunate, triquetrum, and pisiform in the proximal row and the trapezium, trapezoid, capitate, and hamate in the distal row [44].
  • The radiocarpal joints are formed by the articulation of the distal radius with the scaphoid and lunate through their respective concave facets on the distal radius and the triquetrum on the triangular fibrocartilage [44].
  • The distal concave articular surfaces of the proximal carpal row form the midcarpal articulations with the distal row [44].
  • The distal ulnar convexity articulates at the lesser sigmoid notch of the distal radius [44].
  • There is about a 20-degree inclination of the distal ulna at its articulation with the radius [44].
  • The triangular fibrocartilage complex (TFCC) attaches to the ulnar margin of the lunate fossa of the radius and includes the ulnar collateral ligament, dorsal and volar radioulnar ligaments, articular disc, meniscal homologue, extensor carpi ulnaris sheath, and ulnolunate and ulnotriquetral ligament [44].
  • The space of Poirier is a relatively thin area on the palmar side of the carpus, between the radiolunotriquetral ligament and the radioscapocapitate ligament, overlying the palmar surface of the lunate [44].
  • The distal radius has three articular components: distally the scaphoid and lunate fossae, and medially the sigmoid notch [50].
  • Between the scaphoid and the lunate fossa is a ridge that corresponds with the scapholunate interval [50].
  • The concave elliptical distal radius is oriented in the sagittal plane with an average of 11 degrees of volar tilt [50].
  • In the frontal plane, the average radial inclination is 23 degrees [50].
  • Radial length is measured from the tip of the radial styloid to the ulnar articular surface and averages 13 mm [50].
  • The radius bears 80% of the axial load transmitted through the radiocarpal joint, while the ulna bears 20% in neutral ulnar variance [51].
  • The proximal row of carpal bones form an intercalated segment between the distal carpal row and the distal radius and are bound into a functional unit by the scapholunate interosseous ligament (SLIL) and lunotriquetral interosseous ligament (LTIL) [51].
  • The distal row is rigid, with little motion between its bones due to stout intercarpal ligaments, and thus they act as a functional unit with the scaphoid bridging both rows [51].
  • During wrist flexion from neutral, the proximal row translates dorsally [51].
  • During wrist extension from neutral, the proximal row translates palmarly [51].
  • The scapholunate interosseous ligament (SLIL) is the major stabilizer of the wrist and the most commonly injured wrist ligament [51].
  • The SLIL is C-shaped, consisting of dorsal, palmar, and interosseous portions, with the dorsal portion being the strongest and thickest [51].
  • The SLIL provides a flexion force on the lunate given its attachment to the scaphoid [51].
  • The lunotriquetral interosseous ligament (LTIL) is C-shaped, where the volar portion is the thickest and strongest [51].
  • The LTIL provides an extension moment on the lunate given its attachment to the triquetrum [51].
  • The space of Poirier is an area adjacent to the proximal capitate without ligamentous attachment, situated ulnar to the radioscaphocapitate ligament and radial to the long radiolunate in the floor of the carpal tunnel [51].
  • The space of Poirier is a weak area that is vulnerable to instability; the distal carpal row separates from the lunate through this space during a perilunate dislocation [51].

Disease Progression and Carpal Instability

  • Fragmentation of the lunate results in loss of the mechanical strength of the central column and proximal migration of the capitate [58].
  • Proximal migration of the capitate slackens the radioscaphocapitate (RSC) and scaphocapitate (SC) ligaments and leads to kinematic disruption of the carpus [58].
  • In such circumstances, the loaded scaphoid is apt to follow its natural tendency and progressively collapse into flexion, an example of adaptive carpal instability [58].
  • Rarely does Kienböck disease demonstrate scapholunate gap, dorsal intercalated segment instability (DISI), or dorsal translation of the scaphoid, which are pathognomonic findings of dissociative instability [58].
  • One of the prognostic factors of Kienböck disease is the absence (stage 3A) or presence (stage 3B) of abnormal flexion and pronation deformity of the scaphoid [58].
  • In stage 3A, the carpus remains relatively stable, whereas in stage 3B, it has collapsed [58].
  • DISI can be caused by Kienböck disease [65].
  • In DISI, the lunate extends with midcarpal flexion because the lunate remains connected to the triquetrum through the LTIL, while the scaphoid cannot exert its normal flexion movement [65].

Classification

Osseous Staging (Lichtman)

  • The Lichtman classification for Kienböck's disease has good reliability and reproducibility [43].
  • Stage III of Kienböck disease is the most common stage at initial presentation [37].
  • Lichtman Stage IIIA is defined by lunate fragmentation without changes in carpal alignment [37].
  • Lichtman Stage IIIB is defined by lunate fragmentation associated with fixed anterior flexion of the scaphoid, proximal migration of the capitate, and loss of carpal height [37].
  • Lunate collapse and the appearance of radiocarpal or midcarpal degenerative arthritis occur in Lichtman Stage IV [37].
  • The diagnosis of Kienböck disease in the precollapse stages is not well defined, as evidenced by substantial interobserver variability [29].
  • Traditional radiographic indices measured on plain radiographs have poor diagnostic performance in the detection of carpal collapse in Kienböck's disease [16].
  • High-resolution computed tomography has been shown to be more accurate than conventional radiography in the assessment of the osseous microstructure of the lunate in Kienböck disease [39].
  • Assessment of the internal osseous structure and integrity of the lunate is often not possible by conventional radiography owing to superimposition of other information in the image [39].

Vascular Staging

  • A separate vascular classification for Kienböck disease was developed by Schmitt et al. [39].
  • The Schmitt classification is one of three existing classifications (osseous, vascular, cartilage) that Lichtman et al. recently combined into a unified classification and treatment algorithm [39].

Articular Cartilage Staging

  • A separate cartilage classification for Kienböck disease was developed by Bain and Begg [39].
  • The Bain and Begg arthroscopic classification provides a high probability of good long-term relief of pain and a minimal chance of requiring a salvage procedure when used for an articular-based approach to treatment [67].
  • Contrary to current classifications, the articular cartilage of the lunate degenerates in early stages of Kienböck disease [5].

Unified Classification and Treatment Algorithms

  • Lichtman et al. recently developed a unified classification and treatment algorithm combining the osseous, vascular, and cartilage classifications [39].
  • The unified classification and treatment algorithm coordinates osseous, vascular, and articular data alongside patient age to allow for more precise and individualized treatment plans [24].
  • A new treatment algorithm has been proposed that integrates traditional osseous classification with perfusion/viability and articular cartilage-based classifications [46].
  • Bone morphology is particularly important for choosing the most appropriate treatment in Kienböck disease, specifically for determining surgical treatment decisions from stage III and IV [39].

Clinical Presentation

  • Kienböck disease is suspected clinically in the presence of central dorsal pain at the wrist over the lunate [36].
  • The onset of Kienböck disease often appears spontaneously, although more or less intense or repeated injury events may be present [36].
  • Patients with Kienböck disease often exhibit limited mobility and grip strength [36].
  • Clinical examination can suggest the presence of Kienböck disease but cannot confirm the diagnosis [36].
  • Dorsal wrist swelling is a common manifestation of Kienböck disease and constitutes part of the pathology [53].
  • The diagnosis of Kienböck disease in precollapse stages is not well defined, as evidenced by substantial interobserver variability [29].
  • Traditional radiographic indices measured on plain radiographs have poor diagnostic performance in detecting carpal collapse in Kienböck disease [16].
  • Lunate morphology may affect the severity of Kienböck disease at the time of initial presentation [10].

Investigations

Imaging Modalities and Diagnostic Performance

  • High-resolution computed tomography (CT) is more accurate than conventional radiography in assessing the osseous microstructure of the lunate in Kienböck disease [39].
  • Computed tomography of the lunate in Kienböck disease is an important investigative tool [66].
  • Proton density–weighted MRIs reflected the extent and localization of the necrotic area in Kienböck-diseased lunates, as evidenced by comparison with histological analyses of the lunate specimens [70].
  • Fast-field echo images using a 47-mm microscopy coil did not reflect the extent and localization of the necrotic area in Kienböck-diseased lunates when compared with histological analyses [70].
  • MRI is the modality of choice for imaging radiographically occult fractures of the hand and wrist [52].
  • The primary advantages of MRI compared with CT and radiography are improved tissue characterization, especially of soft tissues such as ligamentous structures and synovium, and the lack of ionizing radiation [52].
  • Dynamic contrast enhancement has been used with inconsistent results to assess for the presence of avascular necrosis in the lunate or scaphoid after injury [52].
  • 3T MRI is much preferred for hand and wrist imaging, especially for imaging small fields of view [52].

Staging and Classification

  • The lunate consists of osseous, vascular, and cartilaginous components, for each of which a separate classification has been developed: osseous (Lichtman), vascular (Schmitt), and cartilage (Bain) [39].
  • Lichtman et al. recently developed a unified classification and treatment algorithm combining the three existing classifications [39].
  • Bone morphology is particularly important for choosing the most appropriate treatment in Kienböck disease, particularly for surgical decisions from stage III and IV [39].
  • The authors propose a unified classification and treatment algorithm that coordinates osseous, vascular, and articular data alongside patient age to allow for more precise and individualized treatment plans for Kienböck disease [24].

Radiographic Progression and Indices

  • Radiographic progression of Kienböck disease over 1 year or more seems slight on average regardless of treatment [21].
  • There were no differences in changes in carpal height ratio, Stahl index, and carpal angles between patients who had radial shortening osteotomy and those who had nonsurgical treatment [21].
  • Nearly half of the patients had no decrease in the carpal height ratio and/or the Stahl index over a minimum 1-year interval [21].
  • Kienböck's disease progresses substantially faster than previously described [5].

Treatment

General Principles and Non-Operative Management

  • The natural history of Kienböck's disease is generally considered a progressive condition that can end in Stage IV changes [4].
  • Treatment strategies for Kienböck's disease focus on biomechanical unloading, vascularized bone grafts, or salvage procedures depending on the stage [4].
  • There is limited, low-quality evidence that surgical treatment slows progression of Kienböck's disease [56].
  • Many uncontrolled case series document slight improvement in motion and grip after surgical treatment without clear evidence that this is better than placebo or no intervention [56].

Operative: Joint-Leveling and Osteotomies

  • The Lichtman classification directs treatment for Kienböck disease [33, 34].
  • First-line surgical treatment for Kienböck disease includes a joint-leveling procedure or core decompression of the radius [33, 34].
  • Radial shortening osteotomy is indicated for patients with ulnar-negative variance [33, 34].
  • Radial shortening osteotomy provides decade-long improvement in 75% of patients and seems to be a reasonable treatment for symptomatic Kienböck’s disease [19].
  • Radial shortening osteotomy offers at least comparable outcomes with proximal row carpectomy (PRC) in treating Kienböck's disease, particularly in preserving joint function and patient satisfaction [26].
  • Capitate shortening is a safe and effective approach for treatment of the early stages of Kienböck's disease and can be associated with a satisfying outcome [45].

Operative: Vascularized Bone Grafting

  • Supplemental vascularized bone grafting is described as part of the first-line surgical treatment for Kienböck disease [33, 34].
  • Vascularized bone grafting for stage III Kienböck disease demonstrated favorable long-term results and is recommended as a surgical treatment [15].
  • The treatment of Kienböck disease with vascularized bone graft from the dorsum of the radius has encouraging results and needs no other additional procedures [73].
  • Vascularized grafts in general have demonstrated satisfactory clinical results in Kienböck disease, with excellent pain relief and improvement in range of motion and strength [64].
  • Improved results were found in postoperative grip strength, pain relief, and function when a vascularized graft was combined with 4 months’ temporary scaphocapitate (SC) pinning [64].
  • For Kienböck disease without collapse or injury to the articular surfaces, 5 plus 4 ECA grafts are currently considered a primary option [68].
  • Osteochondral MFT flaps may prove to be a useful option to replace fragmented and very small proximal pole scaphoid nonunions and proximal lunate bone and cartilage in Kienböck cases, as an alternative to more common salvage procedures [68].
  • The osteochondral, or MFT, flap has been used for replacement of the majority of the lunate, including the proximal articular surface [64].
  • In a series of 16 patients treated with MFT flaps for lunate replacement, all but 1 patient had a good clinical result [64].
  • In a series of 16 patients treated with MFT flaps for lunate replacement, radiographic changes demonstrated either no further collapse or improvement in lunate and carpal height over time in 14 of 16 patients [64].

Operative: Arthroscopic Procedures

  • Arthroscopic lunate core decompression appears to be an effective and safe surgery for treating Kienböck disease on the basis of mid-term follow-up [59].

Operative: Arthrodesis and Salvage Procedures

  • For Stage IIIB Kienböck disease, a salvage procedure for associated carpal instability and/or degenerative osteoarthritis is proximal row carpectomy (PRC) [33, 34].
  • Scaphocapitate arthrodesis is an effective procedure for treatment of Kienböck disease associated with satisfactory functional outcomes and significant improvement in pain scores and grip strength [25].
  • Nonetheless, functional outcomes in medium-term follow-up are discouraging after scaphocapitate arthrodesis for advanced stages of Kienböck disease [2].
  • Scaphocapitate arthrodesis should be considered as a treatment option for wrist salvage in the patient with advanced Kienbock's disease [79].
  • In scaphocapitate arthrodesis for Kienböck disease, debate remains regarding whether to remove the lunate, with a preference stated to not remove it [69].
  • Studies have demonstrated successful pain relief is achieved without excision of the lunate in scaphocapitate arthrodesis for Kienböck disease [69].
  • Expected outcomes for scaphocapitate arthrodesis include 50% to 60% range of motion in comparison to the opposite wrist [69].
  • Expected outcomes for scaphocapitate arthrodesis include 80% grip strength [69].
  • The nonunion rate for scaphocapitate arthrodesis is 15% [69].
  • Minimum recovery time before sports participation after scaphocapitate arthrodesis is 3 months [69].
  • Longer-term studies of outcome for scaphocapitate arthrodesis have demonstrated rates of progression of radioscaphoid arthritis between 9% and 50% [69].
  • Progression of radioscaphoid arthritis after scaphocapitate arthrodesis has not proven to be predictably clinically relevant [69].
  • Patients who smoke have a higher likelihood of nonunion after scaphocapitate arthrodesis [69].

Operative: Adolescent-Specific Procedures

  • Surgical management of Kienböck's disease in adolescent patients can yield satisfactory outcomes in those that fail conservative management [28].

Complications

  • Kienböck disease is a progressive condition that can end in Stage IV changes [4].
  • The articular cartilage of the lunate degenerates in early stages of Kienböck disease [5].
  • Approximately one in eight patients undergoing radial shortening osteotomy for symptomatic Kienböck's disease underwent salvage surgery [9].
  • Scaphocapitate arthrodesis for advanced stages of Kienböck disease yields discouraging functional outcomes in medium-term follow-up [2].

Recovery

  • Kienböck's disease is generally considered a progressive condition that can end in Stage IV changes [4].
  • Contrary to current classifications, the articular cartilage of the lunate degenerates in early stages of Kienböck's disease [5].
  • In a study comparing radial shortening osteotomy to nonsurgical treatment, there were no differences in changes to carpal height ratio and Stahl index between the two groups [21].
  • Nearly half of patients with Kienböck disease had no decrease in the carpal height ratio and/or the Stahl index over a minimum 1-year interval [21].
  • Radial shortening osteotomy provides decade-long improvement in 75% of patients with symptomatic Kienböck's disease [19].
  • Radial shortening osteotomy for symptomatic Kienböck's disease yields reasonable long-term function [9].
  • The medium- and long-term results of radial shortening osteotomy for Kienböck's disease in patients with negative ulnar variance are comparable to short-term results [35].
  • Radial shortening osteotomy for Kienböck's disease in patients with negative ulnar variance provides long-lasting pain relief [35].
  • Radial osteotomies are effective in improving short-term clinical outcomes in teenage patients with Kienböck disease [3].
  • Radial osteotomies are effective in improving radiographic findings in teenage patients with Kienböck disease [3].
  • Vascularized bone grafting for stage III Kienböck disease demonstrated favorable long-term results [15].
  • Free vascularized iliac bone grafting for Kienböck's disease results in clinical and radiological improvements that last for a long period of time [22].
  • The longer-term results of titanium lunate arthroplasty for stage III Kienböck disease are promising [31].
  • Tendon ball arthroplasty in advanced Kienböck's disease results in long-term satisfactory clinical outcomes [17].
  • Tendon ball arthroplasty in advanced Kienböck's disease is associated with widespread changes in the bones and joints within the wrist [17].
  • Based on retrospective data from uncontrolled studies, no active treatment is superior in the treatment of Kienböck's disease [40].
  • There are insufficient data to determine whether the outcomes of any intervention for Kienböck's disease are superior to placebo or the natural history of the disease [40].

Key Evidence

  • [L5] [1] (10.5435/jaaos-d-20-00020)
  • [L4] Nonetheless, functional outcomes in medium-term follow-up are discouraging after scaphocapitate arthrodesis for advanced stages of Kienböck disease. [2] (10.1016/j.jhsa.2013.08.063)
  • [L4] The current results indicate that radial osteotomies are effective in improving not only short-term clinical outcomes, but also radiographic findings in teenage patients with Kienböck disease. [3] (10.1097/01.blo.0000173254.46899.72)
  • [L5] The natural history of Kienbock's disease is not fully known, though it is generally considered a progressive condition that can end in Stage IV changes; treatment strategies focus on biomechanical unloading, vascularized bone grafts, or salvage procedures depending on the stage. [4] (10.1016/j.hcl.2006.07.003)
  • [L4] Kienböck's disease progresses substantially faster than previously described and, contrary to current classifications, the articular cartilage of the lunate degenerates in early stages. [5] (10.1016/j.jhsa.2014.06.032)
  • [L4] Good and excellent clinical and radiological outcomes can be achieved with both nonsurgical and surgical treatments in skeletally immature patients with Kienböck disease. [6] (10.1016/j.jhsa.2018.02.029)
  • [L3] A prospective investigation is needed to delineate the appropriate management and expected outcomes of pediatric and adolescent Kienbock disease. [7] (10.1016/j.jhsg.2026.101068)
  • [L4] The long-term clinical benefits of scaphocapitate arthrodesis for treatment of collapsed Kienböck disease are demonstrated. [8] (10.1177/1753193413496177)
  • [L4] Radial shortening osteotomy for symptomatic Kienböck's disease yields reasonable long-term function, though approximately one in eight patients underwent salvage surgery. [9] (10.1055/s-0040-1714750)
  • [L3] Lunate morphology may affect the severity of Kienböck disease at the time of initial presentation. [10] (10.1016/j.jhsa.2014.12.024)
  • [L4] Radial shortening osteotomy should not be contraindicated in advanced Kienbock's disease (without radiocarpal osteoarthritis) as it achieves long-lasting good clinical results with very few complications. [11] (10.1055/s-0039-1688947)
  • [L4] Children, adolescents, and elderly patients with Kienböck disease respond well to nonoperative treatments, and this should be considered before any surgical intervention. [12] (10.2106/jbjs.24.01090)
  • [L4] We therefore recommend this procedure for the surgical treatment of adolescent Kienböck's disease. [13] (10.1016/j.jhsa.2008.09.019)
  • [L5] [14] (10.5435/00124635-200103000-00006)
  • [L3] Vascularized bone grafting for stage III Kienböck disease demonstrated favorable long-term results and is recommended as a surgical treatment. [15] (10.1016/j.jhsa.2013.02.010)
  • [L3] Traditional radiographic indices measured on plain radiographs have poor diagnostic performance in the detection of carpal collapse in Kienböck's disease. [16] (10.1177/17531934231153966)
  • [L4] Tendon ball arthroplasty in advanced Kienböck's disease results in long-term satisfactory clinical outcomes, despite widespread changes in the bones and joints within the wrist. [17] (10.1177/1753193412471183)
  • [L4] Radial shortening osteotomy provides decade-long improvement in 75% of patients and seems to be a reasonable treatment for symptomatic Kienböck’s disease. [19] (10.1177/1753193413512222)
  • [L5] [20] (10.1177/17531934221146851)
  • [L4] [21] (10.1016/j.jhsa.2016.02.016)
  • [L4] Free vascularized iliac bone grafting for Kienböck's disease is a reasonable treatment option, and clinical and radiological improvements last for a long period of time. [22] (10.1016/j.jhsa.2007.11.005)
  • [L5] The authors propose a unified classification and treatment algorithm that coordinates osseous, vascular, and articular data alongside patient age to allow for more precise and individualized treatment plans for Kienböck disease. [24] (10.1016/j.jhsa.2022.03.014)
  • [L4] Scaphocapitate arthrodesis is an effective procedure for treatment of Kienböck disease associated with satisfactory functional outcomes and significant improvement in pain scores and grip strength. [25] (10.1016/j.jhsg.2023.03.014)
  • [L4] Radial shortening osteotomy offers at least comparable outcomes with PRC in treating Kienböck's disease, particularly in preserving joint function and patient satisfaction. [26] (10.1016/j.jhsa.2026.02.031)
  • [L4] Surgical management of Kienböck ' s disease in adolescent patients can yield satisfactory outcomes in those that fail conservative management. [28] (10.1055/s-0040-1701511)
  • [L4] Surgeons should be aware that the diagnosis of Kienböck disease in the precollapse stages is not well defined, as evidenced by the substantial interobserver variability. [29] (10.1177/1558944716677538)
  • [L4] The longer-term results of TLA for stage III Kienböck disease are promising. [31] (10.1016/j.jhsa.2018.02.009)
  • [L3] The medium- and long-term results of radial shortening osteotomy for Kienböck's disease in patients with negative ulnar variance are comparable to short-term results, providing long-lasting pain relief. [35] (10.1097/blo.0b013e318041d309)
  • [L4] [36] (10.1016/j.otsr.2021.103161)
  • [L4] [37] (10.1177/1753193416676723)
  • [L3] [39] (10.1177/17531934241286115)
  • [L4] Based on retrospective data from uncontrolled studies, no active treatment is superior in the treatment of Kienböck's disease and there are insufficient data to determine whether the outcomes of any intervention are superior to placebo or the natural history of the disease. [40] (10.1016/j.jhsa.2010.02.002)
  • [L5] [41] (10.1016/j.jhsa.2012.06.029)
  • [L4] [42] (10.1177/1753193408098481)
  • [L4] The Lichtman et al. classification for Kienböck's disease has good reliability and reproducibility. [43] (10.1177/1753193410373862)
  • [L2] Capitate shortening is a safe and effective approach for treatment of the early stages of Kienböck's disease and can be associated with a satisfying outcome. [45] (10.1177/15589447221081564)
  • [L5] The manuscript reviews recent advances in diagnostics, classification, and treatment options for Kienböck disease to present a new treatment algorithm that integrates traditional osseous classification with perfusion/viability and articular cartilage-based classifications. [46] (10.1016/j.jhsa.2016.02.013)
  • [L3] Dorsal wrist swelling in Kienböck ' s disease is a common manifestation and constitutes a part of pathology of Kienböck ' s disease, although further study is required to clarify the relation between wrist swelling and etiology of Kienböck ' s disease. [53] (10.1055/s-0038-1661420)
  • [L5] There is limited, low-quality evidence that surgical treatment slows progression of Kienböck's disease, and many uncontrolled case series document slight improvement in motion and grip after surgical treatment without clear evidence that this is better than placebo or no intervention. [56] (10.1016/j.jhsa.2009.10.013)
  • [L4] Arthroscopic lunate core decompression appears to be an effective and safe surgery for treating Kienböck disease on the basis of mid-term follow-up. [59] (10.1016/j.jhsa.2023.02.011)
  • [L4] Computed tomography of the lunate in Kienböck disease is an important investigative tool. [66] (10.1016/j.jhsa.2018.05.008)
  • [L4] This study confirms that the Bain and Begg arthroscopic classification and an articular-based approach to Kienböck disease provide a high probability of good longterm relief of pain and a minimal chance of requiring a salvage procedure. [67] (10.1016/j.jhsa.2020.11.004)
  • [L4] Proton density–weighted MRIs but not fast-field echo images using a 47-mm microscopy coil reflected the extent and localization of the necrotic area in Kienböck-diseased lunates, as evidenced by comparison with histological analyses of the lunate specimens. [70] (10.1016/j.jhsa.2011.09.027)
  • [L4] The treatment of Kienböck disease with vascularized bone graft from the dorsum of the radius has encouraging results and needs no other additional procedures. [73] (10.1007/s00402-008-0586-x)
  • [L4] Given the significant postoperative reduction in associated pain symptoms at the time of follow-up, scaphocapitate arthrodesis should be considered as a treatment option for wrist salvage in the patient with advanced Kienbock's disease. [79] (10.1007/s11552-014-9705-z)

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NC NonCommercial — not for commercial use

Attribution-NonCommercial 4.0 International


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Using Creative Commons Public Licenses

Creative Commons public licenses provide a standard set of terms and conditions that creators and other rights holders may use to share original works of authorship and other material subject to copyright and certain other rights specified in the public license below. The following considerations are for informational purposes only, are not exhaustive, and do not form part of our licenses.

Considerations for licensors: Our public licenses are intended for use by those authorized to give the public permission to use material in ways otherwise restricted by copyright and certain other rights. Our licenses are irrevocable. Licensors should read and understand the terms and conditions of the license they choose before applying it. Licensors should also secure all rights necessary before applying our licenses so that the public can reuse the material as expected. Licensors should clearly mark any material not subject to the license. This includes other CC- licensed material, or material used under an exception or limitation to copyright. More considerations for licensors: wiki.creativecommons.org/Considerations_for_licensors

Considerations for the public: By using one of our public licenses, a licensor grants the public permission to use the licensed material under specified terms and conditions. If the licensor's permission is not necessary for any reason--for example, because of any applicable exception or limitation to copyright--then that use is not regulated by the license. Our licenses grant only permissions under copyright and certain other rights that a licensor has authority to grant. Use of the licensed material may still be restricted for other reasons, including because others have copyright or other rights in the material. A licensor may make special requests, such as asking that all changes be marked or described. Although not required by our licenses, you are encouraged to respect those requests where reasonable. More considerations for the public: wiki.creativecommons.org/Considerations_for_licensees


Creative Commons Attribution-NonCommercial 4.0 International Public License

By exercising the Licensed Rights (defined below), You accept and agree to be bound by the terms and conditions of this Creative Commons Attribution-NonCommercial 4.0 International Public License ("Public License"). To the extent this Public License may be interpreted as a contract, You are granted the Licensed Rights in consideration of Your acceptance of these terms and conditions, and the Licensor grants You such rights in consideration of benefits the Licensor receives from making the Licensed Material available under these terms and conditions.

Section 1 -- Definitions.

a. Adapted Material means material subject to Copyright and Similar Rights that is derived from or based upon the Licensed Material and in which the Licensed Material is translated, altered, arranged, transformed, or otherwise modified in a manner requiring permission under the Copyright and Similar Rights held by the Licensor. For purposes of this Public License, where the Licensed Material is a musical work, performance, or sound recording, Adapted Material is always produced where the Licensed Material is synched in timed relation with a moving image.

b. Adapter's License means the license You apply to Your Copyright and Similar Rights in Your contributions to Adapted Material in accordance with the terms and conditions of this Public License.

c. Copyright and Similar Rights means copyright and/or similar rights closely related to copyright including, without limitation, performance, broadcast, sound recording, and Sui Generis Database Rights, without regard to how the rights are labeled or categorized. For purposes of this Public License, the rights specified in Section 2(b)(1)-(2) are not Copyright and Similar Rights.

d. Effective Technological Measures means those measures that, in the absence of proper authority, may not be circumvented under laws fulfilling obligations under Article 11 of the WIPO Copyright Treaty adopted on December 20, 1996, and/or similar international agreements.

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.


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