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Cirugía de la articulación radiocubital distal

Updated Sep 2026

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

¿Por qué se ha recomendado esta operación?

El Dr. Kieran Hirpara, cirujano de extremidad superior en el Mater Private Hospital Rockhampton, comienza por proponer 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 que nos consulte, igualmente necesitará una derivación de su médico de cabecera para poder acceder al reembolso de Medicare. En su consulta, tomamos su historia clínica, examinamos su muñeca y, si es necesario, solicitamos estudios de imagen para determinar la causa de su dolor.

La articulación radiocubital distal es la articulación entre los dos huesos del antebrazo, justo por encima de la muñeca. Se recomienda intervenir quirúrgicamente cuando dicha articulación está desgastada, inestable o dañada tras una lesión, y provoca dolor en el lado del meñique de la muñeca, dificultad para girar el antebrazo o una fuerza de agarre reducida. En casos crónicos, normalmente probamos primero tratamientos no quirúrgicos: modificación de actividades, fisioterapia o terapia de la mano, y uso de férulas. La cirugía se considera cuando estas medidas no logran mejorar suficientemente su estado. Algunas lesiones en esta articulación son inestables desde el principio; en esos casos, podríamos recomendar la cirugía de inmediato. El objetivo de la operación es aliviar su dolor y permitirle girar el antebrazo y utilizar la mano con mayor comodidad y confianza.

Antes de la operación

Una vez que haya programado su cirugía, le daremos instrucciones claras para prepararse. Deberá dejar de comer y beber siete horas antes de la operación. Pedimos que sea siete horas y no menos para que, si el día avanza más rápido de lo previsto, pueda adelantarse su turno en el quirófano. Si toma medicamentos de forma regular, traiga al hospital una lista escrita de los mismos; nosotros le indicaremos cuáles debe suspender y cuándo. En la mayoría de los casos no se requieren exámenes adicionales previos. No obstante, si padece otras afecciones médicas, es posible que necesite análisis de sangre o una consulta con el anestesista, el médico encargado de administrarle la anestesia. Por favor, organice que alguien lo lleve a casa después de la intervención, y el día de la operación use ropa holgada y cómoda.

El día de la intervención

El día de la operación, acude a la unidad de admisiones quirúrgicas del hospital. Allí se le registrará y se le preparará para el quirófano. Conocerá al anestesista, el médico encargado de administrarle la anestesia. Esta intervención se realiza bajo anestesia general. En ocasiones, se añade un bloqueo nervioso regional para aliviar el dolor postoperatorio; el anestesista hablará con usted al respecto ese mismo día.

A continuación, será llevado al quirófano, donde se realizará la operación. Después, despertará en la sala de recuperación, donde las enfermeras le vigilarán mientras la anestesia va desapareciendo. Una vez que su estado sea estable, será trasladado a una planta hospitalaria o podrá volver a casa, según el tipo de intervención y cómo evolucione su recuperación.

Qué implica la operación

Existen varias formas de operar esta articulación; la más adecuada para usted dependerá del problema que presente. Si la articulación se ha dislocado tras una fractura de muñeca, el cirujano volverá a colocar los huesos en su posición correcta y los mantendrá así mientras cicatrizan, a veces mediante un yeso. Si la articulación está desgastada y le causa dolor, el cirujano podría extraer parte del hueso situado en el extremo del hueso del antebrazo, en el lado del meñique de la muñeca. Este procedimiento se realiza a través de una incisión en la parte posterior de la muñeca, en el lado del meñique. Al eliminar esa superficie ósea desgastada, se evita que los dos huesos del antebrazo se froten entre sí al girar el antebrazo.

Si la articulación está laxa en lugar de desgastada, el cirujano puede reconstruir los ligamentos que la mantienen unida. Los ligamentos son fuertes bandas de tejido que conectan un hueso con otro. Para ello se utiliza un fragmento de tendón, el tejido que une el músculo con el hueso, que se pasa a través de pequeños orificios en los huesos para actuar como una nueva correa que mantiene la articulación en su lugar. Esto solo es posible cuando las superficies articulares en sí siguen estando sanas.

Si toda la articulación está muy desgastada, el cirujano podría reemplazarla. Se extrae el hueso dañado del extremo del hueso del antebrazo y se sustituye por una prótesis artificial hecha de metal; a veces también se incluyen piezas de plástico, para que los dos huesos del antebrazo vuelvan a moverse suavemente el uno contra el otro.

Al final de la operación, el cirujano cierra la incisión con puntos de sutura y la cubre con un vendaje. Despertará con la mano y la muñeca vendadas; el vendaje se mantendrá puesto durante unos 10 días.

Después de la operación

Al despertar, se encontrará en la sala de recuperación, donde las enfermeras lo vigilarán a medida que el efecto de la anestesia vaya desapareciendo. Su mano y muñeca estarán vendadas, y es posible que le coloquen un cabestrillo para mantener el brazo en reposo. Le administraremos analgésicos para que se sienta cómodo; si el dolor no disminuye, informe a las enfermeras. Puede levantarse y caminar en cuanto se sienta capaz, pero durante las primeras 24 horas deberá contar con la compañía de alguien. Su equipo médico le indicará si podrá volver a casa el mismo día o si deberá permanecer una noche en el hospital. Dejamos el vendaje puesto durante unos 10 días; por favor, no lo retire antes de ese plazo a menos que se lo indiquemos. Lo cambiaremos o lo retiraremos cuando vengamos a verlo.

Recuperación

Durante los primeros días, su muñeca estará adolorida e hinchada; el lado del meñique podría palpitar, especialmente por la noche. Mantener la mano elevada sobre almohadas, incluso mientras duerme, ayuda a reducir la hinchazón. El analgésico que le proporcionamos funciona mejor si lo toma de forma regular, en lugar de esperar a que el dolor empeore.

Al salir del hospital, su brazo estará vendado y sostenido en un cabestrillo. El vendaje permanece puesto durante unos 10 días; nosotros lo cambiaremos o lo retiraremos durante su siguiente consulta. La rehabilitación posterior a la cirugía la llevará a cabo Ruby Doolan en Extend Rehabilitation. Ruby es terapeuta especializada en mano: ella le guiará en los ejercicios y le confeccionará cualquier férula que necesite. Al principio, los ejercicios son suaves y tienen como objetivo mantener el movimiento de los dedos, el codo y el hombro. Conforme avanza la cicatrización, los ejercicios se centran en girar el antebrazo y recuperar la fuerza de agarre.

Al principio, necesitará ayuda para realizar tareas que requieren el uso de ambas manos, como vestirse, cocinar o cargar objetos. Una vez que la hinchazón disminuya y recupere el movimiento, las actividades cotidianas se volverán más fáciles. Cuando pueda agarrar cosas sin dolor y girar el antebrazo cómodamente, notará que puede hacer mucho más con la mano. Si conducir forma parte de su recuperación, no debe hacerlo mientras lleve el cabestrillo o la férula, mientras tome analgésicos fuertes, o a menos que pueda sujetar el volante con ambas manos y reaccionar adecuadamente en una frenada de emergencia. Consulte nuestra guía sobre conducción tras una cirugía de extremidad superior.

Cada persona cicatriza a su propio ritmo; su cronograma puede ser distinto. Su cirujano y su terapeuta de mano lo guiarán en cada etapa del proceso.

Qué puede salir mal

La mayoría de los pacientes evolucionan bien, pero en ocasiones pueden surgir problemas. Su cirujano y el equipo lo vigilarán de cerca para detectar cualquier anomalía a tiempo.

Si se ha extraído parte del extremo del hueso del antebrazo, el muñón restante a veces se desplaza o presiona estructuras cercanas. Es posible que sienta un dolor agudo o un crujido en el lado del meñique de la muñeca al girar el antebrazo, o la sensación de que algo se atasca. Comente esto en su próxima consulta.

Algunas personas notan que la muñeca les duele menos, pero queda más rígida, con menor capacidad de flexión hacia adelante. Si el giro del antebrazo le resulta limitado, con frecuencia el hombro asume esa función sin que usted se dé cuenta; por eso la diferencia en la vida diaria suele ser mínima. Indique cualquier movimiento que le resulte insatisfactorio durante la revisión.

Si esta articulación resultó lesionada junto con una fractura de muñeca, puede dislocarse en las primeras fases, a veces dentro de las dos primeras semanas. Esto es fácil de pasar por alto. Esté atento a nuevos dolores, hinchazón o cambios en la forma de la muñeca, y avise a la clínica si los observa.

Un desgarro en el cartílago de amortiguación en ese lado de la muñeca, si no se trata, puede hacer que la articulación se sienta inestable. Es posible notar chasquidos, desplazamientos o un “clic” al cargar peso sobre la muñeca, así como una disminución de la fuerza de agarre. Si la articulación sigue inestable y dolorosa a pesar de otros tratamientos, a veces es necesaria otra cirugía; sin embargo, muchas personas mejoran con el tiempo y no requieren intervención adicional. Los síntomas en el lado cubital de la muñeca suelen mejorar durante el año posterior a la cirugía por fractura.

En el caso de una deformidad de muñeca presente desde la infancia, con el tiempo la articulación puede desgastarse o volverse inestable. En casos graves, los tendones encargados de estirar los dedos pueden desgastarse por la fricción contra un hueso prominente, lo que provoca una pérdida repentina de la capacidad para estirar uno o más dedos. Si algún dedo no se estira, comuníquese con la clínica de inmediato.

Como ocurre en cualquier cirugía de muñeca, los huesos pueden tardar en soldarse o no unirse; además, la zona donde se extrajo hueso puede volverse inestable y dolorosa. Cualquier dolor persistente en la parte posterior de la muñeca debe mencionarse en la revisión.

En la tabla de complicaciones de esta página se detallan las tasas habituales, por si desea conocer los datos específicos.

¿Cuándo deben llamarnos?

Llámenos si tienen fiebre, o si la piel alrededor de la herida se vuelve más roja, hinchada o exudativa. Llámenos si el dolor empeora repentinamente, o si aparece nuevo dolor o hinchazón en la muñeca durante las primeras dos semanas. Infórmenos si un dedo no se puede enderezar, o si la muñeca se siente inestable, hace “clics” o cede al moverse. Acudan a urgencias si presentan hinchazón o dolor en la pantorrilla, dificultad para respirar, dolor en el pecho, entumecimiento en la mano, o si no pueden mover el brazo o los dedos.

En profundidad

Esta sección va más allá de lo necesario para que usted tome sus propias decisiones terapéuticas. La articulación radiocubital distal merece esta lectura adicional, pues es la articulación de la muñeca que peor medimos, la que con mayor frecuencia se culpa prematuramente, y aquella en la que, la mayoría de las veces, esperar es la mejor opción.

No podemos medir el problema de manera fiable

La inestabilidad de esta articulación se diagnostica mayormente mediante la palpación: el examinador desplaza el cúbito respecto al radio y obtiene una impresión clínica. En una revisión de 2025 sobre estrategias de evaluación se concluyó claramente que aún no existen métodos fiables y cuantificables para analizar la inestabilidad de la articulación radiocubital distal; su desarrollo resulta esencial para mejorar el tratamiento [1].

Esto tiene una consecuencia directa para usted. Cuando el diagnóstico depende de una prueba subjetiva, el umbral para considerar una articulación inestable varía entre distintos examinadores, al igual que el umbral para decidir su tratamiento quirúrgico. En este caso, solicitar una segunda opinión no implica desconfianza; es una respuesta razonable ante una prueba cuyas limitaciones son bien conocidas.

La mayoría del dolor en el lado cubital tras una fractura de muñeca desaparece

Este es el hallazgo más útil para cualquier persona que presente dolor en la muñeca tras una fractura del radio distal. Una revisión exhaustiva concluyó que la mayoría de los problemas en el lado cubital de la muñeca tras dichas fracturas pueden tratarse inicialmente de forma no quirúrgica, generalmente durante más de un año, en espera de una mejora significativa con el tiempo [2].

Un año es un período más largo de lo que la mayoría de las personas esperan tener que esperar; por ello, tanto el paciente como el médico sienten la tentación de intervenir antes. No obstante, la excepción señalada en la misma revisión es clara y específica: una subluxación importante y temprana de la articulación que impida físicamente la rotación del antebrazo sí requiere tratamiento en lugar de observación [2].

En resumen, lo recomendable es ser paciente, siempre y cuando existan motivos claros para abandonar ese enfoque.

Cuando es necesario recurrir a una cirugía de rescate, la elección no es tan sencilla como parece

Cuando la articulación está destruida y el tratamiento no quirúrgico ha fracasado realmente, las opciones clásicas son el procedimiento de Darrach, que consiste en extirpar el extremo de el cúbito, y el procedimiento de Sauvé-Kapandji, que fusiona la articulación y crea un espacio más proximal para permitir la rotación.

Una revisión sistemática que comparó ambos procedimientos determinó que el grado de satisfacción del paciente es comparable independientemente de la patología subyacente; asimismo, se observó una mejora similar en el rango de movimiento, la fuerza y la función general [3]. La diferencia radicaba en la tasa de reoperaciones, que fue mayor en el caso del procedimiento de Sauvé-Kapandji [3].

Esa es una distinción clara. Cuando dos intervenciones quirúrgicas producen el mismo resultado, la que requiere menos reoperaciones resulta más ventajosa. No obstante, el procedimiento de Sauvé-Kapandji sigue siendo útil cuando es importante preservar el soporte ulnar del carpo; precisamente por eso fue desarrollado.

El impacto cubital es un problema distinto que requiere un tratamiento diferente

El dolor en el lado cubital, causado por una longitud relativa excesiva del cúbito —conocido como síndrome de impacto cubital—, se trata acortando la distancia de carga, ya sea mediante una osteotomía para acortar el cuerpo del cúbito o mediante la resección artroscópica de la parte superior de la cabeza cubital. Un metaanálisis realizado en 311 pacientes demostró que ambos métodos son eficaces; sin embargo, el procedimiento artroscópico presenta menos complicaciones y una tasa de reintervención más baja [4].

La osteotomía del cuerpo cubital implica el uso de una placa, conlleva el riesgo de que el hueso no se una adecuadamente, y puede generar otros problemas; en cambio, el procedimiento artroscópico evita todos estos inconvenientes. Cuando la anatomía del paciente lo permite, esta diferencia resulta significativa.

Referencias

[1] Christy M, Wright DJ, Goldfarb CA. Estrategias de evaluación para la inestabilidad de la articulación radiocubital distal: situación actual y necesidad de herramientas mejoradas. J Hand Surg Am. 2025;50(12):1505-14. https://doi.org/10.1016/j.jhsa.2025.06.021

[2] Giddins G. La articulación radiocubital distal tras fracturas distales del radio: ¿cuándo y cómo debemos tratar el dolor, la rigidez o la inestabilidad? J Hand Surg Eur Vol. 2023;48(3):230-45. https://doi.org/10.1177/17531934221140238

[3] Lamont S, Debkowska M, Johnsen P, Froehle A, Cotterell IH, Isaacs J. Resultados de los procedimientos de Darrach y Sauvé-Kapandji: una revisión sistemática. Hand (N Y). 2022;19(1):68-73. https://doi.org/10.1177/15589447221107697

[4] Shi H, Huang Y, Shen Y, Wu K, Zhang Z, Li Q. Procedimiento artroscópico tipo “wafer” frente a osteotomía de acortamiento cubital para el síndrome de impactación cubital: una revisión sistemática y metaanálisis. J Orthop Surg Res. 2024;19(1). https://doi.org/10.1186/s13018-024-04611-4


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

  • Salvage of failed distal radioulnar joint reconstruction requires a thorough understanding of normal anatomy, biomechanics, and the modes of failure of the primary procedure to develop effective strategies [1].
  • Most ulnar-sided wrist problems associated with distal radial fractures can be treated non-operatively initially, typically for over a year, in anticipation of substantial improvement with time [2].
  • Distal radioulnar joint instability is often an underestimated lesion requiring systematic clinical examination and imaging for detection [4].
  • Surgeons recommended distal radioulnar joint treatment in 67% (404 of 607) of the scenarios, most commonly cast immobilization in 41% (247 of 607) [5].
  • The management of distal radioulnar joint instability includes treatment strategies such as percutaneous, arthroscopic, soft-tissue, osteotomy and arthroplasty techniques [6].
  • Ulnar shortening osteotomy is a good option to treat patients with ulnar impaction syndrome regardless of the distal radioulnar joint angle [7].
  • Severely damaged and painful distal radioulnar joints can be reconstructed by resection arthroplasty or by hemi- or total arthroplasty [8].
  • DRUJ ligament reconstruction is indicated when native ligaments are not reparable, provided there is no radius or ulna bony deformity or arthritis of the DRUJ [9].
  • The introduction of ulnar head and total radio-ulnar joint prostheses has provided a new method, but there is presently no evidence that these implants produce long-lasting results [10].
  • When appropriate patient selection criteria are met, partial and total ulnar head replacement typically produce reliable results [39].

Anatomy & Pathophysiology

Bony Anatomy and Kinematics

  • The distal radioulnar joint (DRUJ) is a complex anatomic unit providing an articular link between the distal radius and ulna [11].
  • The DRUJ is composed of both bony and soft tissue structures that, along with the proximal radioulnar joint, allow for rotation (pronation/supination) of the forearm [11].
  • Articular surface contact in the shallow sigmoid notch accounts for about 20% of DRUJ stability [46].
  • The sigmoid notch allows dorsopalmar translation of about 1 cm with the forearm in neutral position [46].
  • During forearm rotation, the ulnar head at its articulation with the sigmoid notch moves from dorsal and distal in full pronation to proximal and palmar in full supination [46].
  • The ulnar styloid extends 2 to 6 mm distal to the ulnar head [46].
  • Anatomical variations in the sigmoid notch and ulnar head significantly influence joint mechanics and treatment outcomes [56].
  • The DRUJ kinematics during handstanding vary with school age in female gymnasts, with high school students showing a significantly larger increase in DRUJ separation compared to elementary school students [51].
  • The Aptis distal radioulnar joint arthroplasty considerably alters forearm kinematics [45].

Soft Tissue Anatomy and Stability

  • The triangular fibrocartilage complex (TFCC) includes the dorsal and volar radioulnar ligaments, ulnar collateral ligament, meniscal homologue, articular disc, ulnolunate ligaments, ulnotriquetral ligaments, and extensor carpi ulnaris sheath [46].
  • The deep fibers of the TFCC attach ulnarly at the head of the ulna called the “fovea,” and the superficial fibers attach to the ulnar styloid tip where it joins with the ulnar collateral ligaments [46].
  • Most of the distal radioulnar ligaments and the ulnocapitate ligament attach to the fovea at the base of the ulnar styloid [46].
  • The articular disc has attachments to the distal radioulnar ligaments and passes from the distal margin of the sigmoid notch to the fovea at the base of the ulnar styloid [46].
  • The thickness of the articular disc has an inverse relationship to the amount of ulnar variance [46].
  • The DRUJ functions as a structure of tensegrity where ligament bundles shift tension based on forearm rotation [54].
  • The flexor carpi ulnaris and extensor carpi ulnaris muscles serve as dynamic stabilizers of the distal radioulnar joint [29].
  • The interaction between ligaments, muscles, and bones is emphasized for DRUJ stability [31].

Biomechanics and Load Distribution

  • Loads applied to the distal radiocarpal and ulnocarpal joints are distributed about 80% to the distal radius and 20% to the ulna [46].
  • The distal ulna transmits significant loads to the forearm through the triangular fibrocartilage complex [17].
  • A biomechanical analysis showed that increasing ulnar variance by 2.5 mm dramatically increases the load borne by the distal ulna [32].
  • Pressures within the DRUJ change with forearm rotations, with the highest intra-articular pressure recorded in supination under no disruption-no load, no disruption-loaded, and disrupted TFCC conditions [60].
  • Radial lengthening did not demonstrate a benefit in improving DRUJ stability in a triangular fibrocartilage complex injury model [59].

Pathophysiology and Injury Mechanisms

  • Even minor disruptions of the precise anatomic relationships between the distal radius and ulna and ulnar carpus result in pain syndromes [17].
  • The DRUJ can be dislocated by a variety of mechanisms, including low- and high-energy trauma [17].
  • Dislocations are associated with disruption of the ulnar soft-tissue triangular fibrocartilage complex, including the articular disk and associated ligaments [17].
  • A displaced fracture at the ulnar styloid base indicates a high risk of distal radioulnar instability [17].
  • Injuries to the distal radioulnar joint are common in distal radius fractures [11].
  • Failure to recognize and appropriately treat concomitant DRUJ injuries in distal radius fractures can lead to residual wrist disability and has been associated with worse functional outcomes [11].
  • Alterations in DRUJ biomechanics due to injury can lead to instability and incongruency, which can cause ulnar-sided wrist pain, limitations in range of motion, and the development of further pathology [11].
  • Rupture of the distal radioulnar ligaments usually causes diastasis of the distal radioulnar joint, which can be seen on radiographs and is a pathognomonic sign that the ligaments have been ruptured [18].
  • In most patients with irreducible dislocations of the distal radioulnar joint, the extensor carpi ulnaris was entrapped in the joint and prevented closed reduction [18].
  • Positive ulnar variance or protrusion of the ulna distal to its normal articulation with the ulnar notch of the radius and consequent impingement on the carpus can be caused by malunited Colles fracture, malunion or nonunion of the radius, and cessation or abnormality of growth of the distal radius [32].
  • Significant extraarticular deformities of the distal radius adversely affect distal radioulnar joint function [32].
  • Only 6 mm of radial shortening has been shown to cause distal radioulnar joint dysfunction [32].
  • Decreased radial inclination and dorsal tilt led to moderate changes in joint kinematics, while dorsal displacement caused minimal changes [32].
  • Radioulnar arthrosis has been found to be more common than radiocarpal arthrosis [32].
  • Approximately 70% of the patients who developed radioulnar arthrosis require surgical intervention [32].
  • Deterioration of the distal radioulnar joint is believed to be caused by shortening and angular deformities of the distal radius [32].

Classification

TFCC Tear Classification (Palmer)

  • The Palmer classification categorizes triangular fibrocartilage complex (TFCC) tears into traumatic (Class 1) and degenerative (Class 2) types [27, 28].
  • TFCC tear subtypes are defined based on the specific location within the TFCC [27, 28].
  • The class and location of a TFCC tear have important implications for treatment [27, 28].
  • Class 1 (Traumatic) TFCC injuries are subdivided into four types according to the tear's location [58].
  • Type 1-B injuries are peripheral tears located at the ulnar end of the TFCC [58].
  • Class 1A TFCC injuries are characterized by central perforation or tear [27, 28].
  • Class 1B TFCC injuries are characterized by ulnar avulsion with or without ulnar styloid fracture [27, 28].
  • Class 1C TFCC injuries are characterized by distal avulsion involving the origins of the ulnolunate and ulnotriquetral ligaments [27, 28].
  • Class 1D TFCC injuries are characterized by radial avulsion involving the dorsal and/or volar radioulnar ligaments [27, 28].
  • Class 2 (Degenerative) TFCC tears are associated with ulnocarpal impaction syndrome [27, 28].
  • Class 2A TFCC tears are characterized by TFCC wear or thinning [27, 28].
  • Class 2B TFCC tears are characterized by TFCC wear plus lunate and/or ulnar chondromalacia [27, 28].
  • Class 2C TFCC tears are characterized by TFCC perforation plus lunate and/or ulnar chondromalacia [27, 28].
  • Class 2D TFCC tears are characterized by TFCC perforation, lunate and/or ulnar chondromalacia, and lunotriquetral ligament disruption [27, 28].
  • Class 2E TFCC tears are characterized by TFCC perforation, lunate and/or ulnar chondromalacia, lunotriquetral ligament disruption, and ulnocarpal and DRUJ arthritis [27, 28].

Arthroscopic Treatment-Oriented Classification

  • Advances in diagnostic arthroscopy permit a treatment-oriented classification of TFCC peripheral tears into five categories: repairable distal tears, repairable complete tears, repairable proximal tears, non-repairable tears, and tears associated with DRUJ arthritis [58].
  • In the arthroscopic treatment-oriented classification, Class 1 tears should be sutured [58].
  • In the arthroscopic treatment-oriented classification, Class 2 and 3 tears are associated with DRUJ instability and require TFCC reattachment to the fovea [58].
  • In the arthroscopic treatment-oriented classification, Class 4 tears need reconstruction using a tendon graft [58].
  • In the arthroscopic treatment-oriented classification, Class 5 tears require an arthroplasty [58].

DRUJ Instability and Pathology

  • The management of distal radioulnar joint instability includes categorization of instability and treatment strategies such as percutaneous, arthroscopic, soft-tissue, osteotomy, and arthroplasty techniques [6].
  • Arthrosis of the distal radioulnar joint can result from inflammatory arthropathy, traumatic disruption of articular surfaces, traumatic disruption of soft tissue constraints leading to instability, infection, or developmental malformation [36].

Clinical Presentation

General Presentation and Diagnosis

  • Failure to recognize and appropriately treat concomitant distal radioulnar joint injuries in the setting of distal radius fractures can lead to residual wrist disability and is associated with worse functional outcomes [11].
  • Chronic distal radioulnar joint instability results from various traumatic injuries and can lead to chronic functional impairment, pain, and arthritis if left untreated [12].
  • There should be a high index of suspicion to diagnose distal radioulnar joint dislocation because radiographs not taken in the perfect lateral orientation tend to look relatively normal [17].
  • In the presence of forearm and elbow fracture-dislocations, further evaluation of the radioulnar joint is mandatory [17].
  • Dysfunction of the distal radioulnar joint is a frequent source of persistent complaints after distal radial malunions [32].
  • Characteristic symptoms of distal radioulnar joint dysfunction after distal radial malunions include pain, decreased forearm rotation, decreased grip strength, and instability [32].
  • Approximately 70% of patients who developed radioulnar arthrosis require surgical intervention [32].
  • The occurrence of osteoarthritis of the distal radioulnar joint was affected by the presence of osteoarthritis of the adjacent joint [24].

Physical Examination

  • The clinical examination is key, with identification of the distal radioulnar joint surface anatomy and clinical evaluation of the joint [17].
  • The amount of stability should be carefully assessed and compared with that of the opposite wrist [17].
  • The patient should position the wrist to reproduce the pain [17].
  • With the hand pronated, the examiner tries to displace the ulnar head by applying a dorsal to volar load 4 cm proximal to the distal radioulnar joint, known as the "piano key test" [17].
  • Little resistance to ballottement and volar movement of the ulna head corresponds to a positive piano key test [17].
  • Subluxation is much more common than anterior or posterior dislocation [17].
  • Limitation of pronation and supination, or pain associated with such motion, would be expected in the situation of subluxation [17].
  • Palpation of the sixth extensor compartment during resisted pronation is useful to identify any subluxation [17].
  • The reliability of clinical assessment of distal radioulnar joint instability has been questioned [50].
  • A recent publication has shown distal radioulnar joint instability to be more common than previously appreciated [50].
  • After a distal radial fracture, a degree of distal radioulnar joint instability is universally present when measured quantitatively [50].
  • The figure for quantitative instability after distal radial fracture is far greater than the range of 0–35% previously reported in the literature when clinical assessment is the sole determinant of stability [50].
  • Surgeons working in the United Kingdom were unreliable in assessing distal radioulnar joint instability [50].
  • The sensitivity of clinical assessment of distal radioulnar joint instability in wrists previously measured on a validated jig was 24% [50].
  • The specificity of clinical assessment of distal radioulnar joint instability in wrists previously measured on a validated jig was 94% [50].

Imaging and Diagnostic Modalities

  • Distal radioulnar joint instability requires systematic clinical examination and imaging for detection [4].
  • There is substantial surgeon-to-surgeon variation in interpreting MRI signal changes and arthroscopic findings in the distal radioulnar ligaments and central disc [35].
  • Variation in interpreting MRI signal changes and arthroscopic findings raises concerns about overdiagnosis and overtreatment versus underdiagnosis [35].

Investigations

Clinical Examination

  • Distal radioulnar joint instability is often an underestimated lesion requiring systematic clinical examination for detection [4].
  • A thorough knowledge of the anatomy and kinematics of the distal radioulnar joint is necessary to manage pathologic conditions [3].

Imaging

  • Standard well-positioned radiography is the appropriate first step for imaging the distal radioulnar joint [63].
  • High-resolution MRI helps delineate ligamentous structures of the distal radioulnar joint [63].
  • Dynamic CT is indicated for clinical instability of the distal radioulnar joint [63].
  • Imaging the distal radioulnar joint requires knowledge of the complex bony, muscular, and ligamentous anatomy [63].
  • MRI is controversial but newer innovations suggest value in detection and localization of triangular fibrocartilage complex pathology [27].
  • Arthroscopy is the gold standard for detection of triangular fibrocartilage complex tears [27].
  • The arthroscopic trampoline test is performed to assess triangular fibrocartilage complex resiliency by balloting the central portion with a small probe [27].
  • The arthroscopic hook test can be used to demonstrate peripheral detachment of the triangular fibrocartilage complex [27].
  • The arthroscopic suction test can show laxity of the triangular fibrocartilage complex when peripherally scarred in or foveal detachment when the distal radioulnar joint is clinically unstable [27].
  • A nuanced understanding of three-dimensional relationships between ulnar bowing and distal radioulnar joint anatomy can enhance preoperative planning when correcting ulnar-side pathology [62].

Diagnostic Considerations

Treatment

Non-Operative

  • Dorsal dislocation or subluxation of the distal radioulnar joint should be treated by reduction of the ulnar head into the sigmoid fossa and placement of the forearm in full supination [17].
  • The arm should be immobilized in supination, which requires a long arm cast or splint [17].
  • Volar dislocation is relatively rare and is usually stable after reduction [17].
  • If dorsal or volar dislocation or subluxation of the distal ulna cannot be reduced with manipulation in the outpatient setting, closed treatment can be attempted under anesthesia [17].
  • An excellent result can usually be expected if a distal radioulnar joint dislocation is reduced early and immobilized for 1 month in plaster [18].

Operative

  • If closed reduction of a distal radioulnar joint dislocation fails, open reduction and soft-tissue reconstruction may be necessary [17].
  • A retinacular flap may be used to transpose the extensor carpi ulnaris to a more dorsal position to stabilize the distal ulna [17].
  • If a distal radioulnar joint dislocation is less than 2 months old and cannot be reduced closed, open reduction with exposure and repair of the triangular fibrocartilage is advised [18].
  • If a distal radioulnar joint dislocation is reduced surgically after more than 2 months, consideration should be given to excision of the distal ulna and distal ligament reconstruction [18].
  • Rupture of the distal radioulnar ligaments usually causes diastasis of the distal radioulnar joint, which is a pathognomonic sign that the ligaments have been ruptured and should be repaired [18].
  • A dorsal approach was used to free the extensor carpi ulnaris, and repair of the triangular fibrocartilage or transosseous pinning was used to stabilize the joint in irreducible dislocations [18].
  • Operations to reconstruct permanently damaged ligaments of the distal radioulnar joint cannot be successful unless the component bones are undeformed [18].
  • Indirect ulnar shortening by distraction through the distal radius fracture site provides a simple and novel strategy for the management of persistent DRUJ instability during volar plating, obviating the need for prolonged immobilization or to alter standard postoperative protocols [40].
  • Advances in minimally invasive surgical techniques have transformed the management of DRUJ instability [41].
  • The combined HS and suture repair effectively restores stability to both the DRUJ and UCJ in patients with TFCC-related ulnocarpal instability, considerably reducing pain and preserving range of motion [61].
  • The Aptis total distal radioulnar joint prosthesis is a good rescue option for patients with previous failed surgical procedures, providing significant improvements in range of motion, grip strength, and pain scores with a mean follow-up of 9.7 years [42].
  • Surgical outcomes are best when performed before the patient displays severe joint destruction, fixed contractures, subluxation, or dislocation [19].
  • Stabilization of the ulnar stump seems to alleviate pain and improve forearm rotation and functional outcomes, although no direct correlation exists between radioulnar convergence and patient outcomes [21].
  • Approximately 2 cm of bone is resected during distal ulna excision [34].
  • If excessive bone is removed during distal ulna excision, distal ulna stability may pose a problem [34].
  • The dorsal edge of the proximal ulna should be made bevel and smooth to minimize the risk of postoperative attrition ruptures of the extensor tendons [34].
  • Reconstruction of the soft tissue support for both the DRUJ and radiocarpal joint is important to correct carpal supination and stabilize the distal ulna after distal ulna excision [34].
  • If the TFCC and radioulnar ligamentous complex are present, they are sutured tightly to the dorsal and ulnar aspect of the radius during distal ulna excision [34].
  • A distally based strip of the ECU tendon can be detached, woven through the ulnar collateral ligament and any remnants of the triangular fibrocartilage, and sutured to the radius to stabilize the distal ulna [34].
  • A distally based slip of the ECU tendon can be passed through the distal end of the ulna through a hole made in the dorsal cortex of the ulna and then sutured back onto itself to stabilize the distal ulna [34].
  • The ulna can be compressed volarward using a Freer elevator and either the capsular tissue or ECU tendon sutured tightly to seat the ulna stump in this volar position to stabilize the ulna stump [34].
  • Treatment goals in the acute setting should be to prevent future instability or incongruency of the distal radioulnar joint [11].
  • Treatment goals in the chronic setting should be to restore stability and congruency of the distal radioulnar joint to allow for painless, full (or improved) motion of the wrist and forearm [11].
  • Treatment in the chronic setting can be challenging [11].
  • Hand therapy is essential after arthroplasty around the wrist [55].
  • Pain-free functional motion with adequate strength is the main goal of all joint reconstructions [55].
  • Loosening of the prosthesis is a leading cause of poor outcome in arthroplasty [55].
  • To protect the prosthesis, patients are discouraged from lifting more than 2 lb regularly and no more than 10 lb [55].

Complications

Post-traumatic Instability and Natural History

  • The presence of untreated triangular fibrocartilage complex (TFCC) tears has been found to correlate with objective and subjective distal radioulnar joint instability at 1 year [57].
  • A prospective longitudinal study found that 45% of patients with distal radial fractures and untreated complete TFCC injuries had laxity of the distal radioulnar joint at 13–15 years [57].
  • Patients with distal radioulnar joint laxity after distal radial fractures had worse grip strength and trends of worse Gartland and Werley and QuickDASH scores compared to patients with stable distal radioulnar joints, although this difference did not reach statistical significance [57].
  • There is evidence that all patients with distal radial fractures have measurable distal radioulnar joint instability [57].
  • There is evidence supporting gradual improvement of ulnar-sided wrist symptoms up to 1 year after distal radial fracture treatment [57].
  • Persistent significant instability of the distal radioulnar joint in patients with distal radial fractures is not seen in large numbers at follow-up [57].
  • A minority of patients presenting with primary TFCC rupture after distal radial fracture treatment experience long-term invalidating complaints due to instability of the distal radioulnar joint [57].
  • Less than 4% of patients treated for distal radial fractures had further surgery for persistent symptomatic distal radioulnar joint instability in one institution's experience [57].
  • The natural history of patients with distal radioulnar joint instability after distal radial fracture treatment seems fairly benign, although this is not supported by robust evidence in the literature [57].
  • The majority of patients with distal radioulnar joint instability after distal radial fracture treatment improve with time, have good function, and do not require further procedures [57].

Complications of Immobilization and Surgical Technique

  • Prolonged immobilization in supination leads to stiffness [57].
  • Indirect ulnar shortening by distraction through the distal radius fracture site provides a strategy for the management of persistent distal radioulnar joint instability during volar plating, obviating the need for prolonged immobilization or to alter standard postoperative protocols [40].

Complications of Salvage and Arthroplasty Procedures

  • The introduction of ulnar head and total radio-ulnar joint prostheses has provided a new method for failed ulnar head resection, but there is presently no evidence that these implants produce long-lasting results [10].
  • Both APTIS distal radioulnar joint arthroplasty and ulnar head replacement yield substantial functional improvements and good long-term survivorship [43].
  • Adding a distally based longitudinal extensor carpi ulnaris strip to ulnar shortening osteotomy for restoring distal radioulnar joint stability seems to be an effective treatment in patients with irreparable degenerative triangular fibrocartilage complex injuries due to ulnar impaction syndrome [44].

Degenerative and Associated Conditions

Recovery

  • Chronic distal radioulnar joint instability can lead to chronic functional impairment, pain, and arthritis if left untreated [12].
  • Stabilization of the ulnar stump seems to alleviate pain and improve forearm rotation and functional outcomes [21].
  • No direct correlation exists between radioulnar convergence and patient outcomes [21].

Key Evidence

  • [L5] Salvage of failed distal radioulnar joint reconstruction requires a thorough understanding of normal anatomy, biomechanics, and the modes of failure of the primary procedure to develop effective strategies. [1] (10.1016/j.hcl.2010.05.004)
  • [L5] Most ulnar-sided wrist problems associated with distal radial fractures can be treated non-operatively initially, typically for over a year, in anticipation of substantial improvement with time. [2] (10.1177/17531934221140238)
  • [L5] A thorough knowledge of the anatomy and kinematics of the distal radioulnar joint is necessary to manage pathologic conditions. [3] (10.1016/j.hcl.2005.08.002)
  • [L5] Distal radioulnar joint instability is often an underestimated lesion requiring systematic clinical examination and imaging for detection. [4] (10.1007/s00402-020-03371-0)
  • [L4] Surgeons recommended distal radioulnar joint treatment in 67% (404 of 607) of the scenarios, most commonly cast immobilization in 41% (247 of 607). [5] (10.1177/17531934261449057)
  • [L5] The purpose of this article is to review distal radioulnar joint instability and its management, covering anatomic and biomechanical advances, categorization of instability, and treatment strategies including percutaneous, arthroscopic, soft-tissue, osteotomy and arthroplasty techniques. [6] (10.1177/1753193414527052)
  • [L4] Ulnar shortening osteotomy is a good option to treat patients with ulnar impaction syndrome regardless of the distal radioulnar joint angle. [7] (10.1177/17531934241262931)
  • [L5] Severely damaged and painful distal radioulnar joints can be reconstructed by resection arthroplasty or by hemi- or total arthroplasty. [8] (10.1016/j.hcl.2020.07.008)
  • [L5] DRUJ ligament reconstruction is indicated when native ligaments are not reparable, provided there is no radius or ulna bony deformity or arthritis of the DRUJ. [9] (10.1016/j.hcl.2020.07.004)
  • [L5] The introduction of ulnar head and total radio-ulnar joint prostheses has provided a new method, but there is presently no evidence that these implants produce long-lasting results. [10] (10.1054/jhsb.2002.0815)
  • [L5] [11] (10.1016/j.hcl.2021.02.011)
  • [L5] Chronic distal radioulnar joint instability results from various traumatic injuries and can lead to chronic functional impairment, pain, and arthritis if left untreated. [12] (10.1016/j.hcl.2010.05.010)
  • [L5] Surgical outcomes are best when performed before the patient displays severe joint destruction, fixed contractures, subluxation, or dislocation. [19] (10.1016/j.hcl.2005.08.009)
  • [L5] Stabilization of the ulnar stump seems to alleviate pain and improve forearm rotation and functional outcomes, although no direct correlation exists between radioulnar convergence and patient outcomes. [21] (10.1016/j.hcl.2014.12.003)
  • [L4] The occurrence of osteoarthritis of the scaphotrapeziotrapezoid and distal radioulnar joints was affected by the presence of osteoarthritis of the adjacent joint. [24] (10.1016/j.jhsa.2023.05.009)
  • [L4] The flexor carpi ulnaris and extensor carpi ulnaris muscles serve as dynamic stabilizers of the distal radioulnar joint. [29] (10.1177/17531934231168299)
  • [L5] The purpose of this review article is to present and illustrate the current understanding of the functional anatomy and pathomechanics of the distal radioulnar joint, emphasizing the interaction between ligaments, muscles, and bones for stability. [31] (10.1177/1753193417693170)
  • [L5] There is substantial surgeon-to-surgeon variation in interpreting MRI signal changes and arthroscopic findings in the distal radioulnar ligaments and central disc, raising concerns about overdiagnosis and overtreatment versus underdiagnosis. [35] (10.1177/17531934241254705)
  • [Paper] [36] (10.1016/j.hcl.2005.08.015)
  • [L4] When appropriate patient selection criteria are met, partial and total ulnar head replacement typically produce reliable results. [39] (10.1177/1753193417693177)
  • [L4] Indirect ulnar shortening by distraction through the distal radius fracture site provides a simple and novel strategy for the management of persistent DRUJ instability during volar plating, obviating the need for prolonged immobilization or to alter standard postoperative protocols. [40] (10.1016/j.jhsa.2018.02.030)
  • [L5] Advances in minimally invasive surgical techniques have transformed the management of DRUJ instability. [41] (10.1177/17531934261417561)
  • [L4] The Aptis total distal radioulnar joint prosthesis is a good rescue option for patients with previous failed surgical procedures, providing significant improvements in range of motion, grip strength, and pain scores with a mean follow-up of 9.7 years. [42] (10.1177/17531934231192375)
  • [L2] Both APTIS DRUJ arthroplasty and ulnar head replacement yield substantial functional improvements and good long-term survivorship. [43] (10.1177/17531934261415827)
  • [L4] Adding a distally based longitudinal extensor carpi ulnaris strip to ulnar shortening osteotomy for restoring distal radioulnar joint stability seems to be an effective treatment in patients with irreparable degenerative triangular fibrocartilage complex injuries due to ulnar impaction syndrome. [44] (10.1177/17531934231197942)
  • [L4] The Aptis distal radioulnar joint arthroplasty considerably alters forearm kinematics, which can have clinical implications. [45] (10.1177/17531934241274142)
  • [L5] [50] (10.1177/17531934241275456)
  • [L4] The DRUJ kinematics during handstanding vary with school age in female gymnasts, with high school students showing a significantly larger increase in DRUJ separation compared to elementary school students. [51] (10.1177/23259671251368997)
  • [L5] The joint functions as a structure of tensegrity where ligament bundles shift tension based on forearm rotation. [54] (10.1016/j.hcl.2010.05.002)
  • [L5] [55] (10.1016/j.hcl.2012.08.025)
  • [L5] Anatomical variations in the sigmoid notch and ulnar head significantly influence joint mechanics and treatment outcomes. [56] (10.1016/j.hcl.2012.03.002)
  • [L5] [57] (10.1177/17531934241268980)
  • [L5] [58] (10.1177/1753193409100120)
  • [L5] Radial lengthening did not demonstrate a benefit in improving DRUJ stability in a triangular fibrocartilage complex injury model. [59] (10.1016/j.jhsa.2025.06.013)
  • [L5] Pressures within the DRUJ changed with forearm rotations, with the highest intra-articular pressure recorded in supination under no disruption-no load, no disruption-loaded, and disrupted TFCC conditions. [60] (10.1016/j.jhsa.2023.11.015)
  • [L4] The combined HS and suture repair effectively restores stability to both the DRUJ and UCJ in patients with TFCC-related ulnocarpal instability, considerably reducing pain and preserving range of motion. [61] (10.1016/j.jhsg.2025.100806)
  • [L4] A nuanced understanding of these 3D relationships can enhance preoperative planning when correcting ulnar-side pathology. [62] (10.1016/j.jhsg.2023.12.006)
  • [L5] Imaging the DRUJ requires knowledge of the complex bony, muscular, and ligamentous anatomy; standard well-positioned radiography is the appropriate first step, while high-resolution MRI helps delineate ligamentous structures and dynamic CT is indicated for clinical instability. [63] (10.1016/j.hcl.2010.07.001)

References

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[2] The distal radioulnar joint after distal radial fractures: when and how do we need to treat pain, stiffness or instability?. Journal of Hand Surgery (European Volume). 2023. DOI: 10.1177/17531934221140238

[3] Hemiresection Arthroplasty of the Distal Radioulnar Joint. Hand Clinics. 2005. DOI: 10.1016/j.hcl.2005.08.002

[4] Distal radioulnar joint instability: current concepts of treatment. Archives of Orthopaedic and Trauma Surgery. 2020. DOI: 10.1007/s00402-020-03371-0

[5] Factors associated with variation in treatment of the distal radioulnar joint after plate fixation of distal radial fractures. Journal of Hand Surgery (European Volume). 2026. DOI: 10.1177/17531934261449057

[6] Instability of the distal radioulnar joint. Journal of Hand Surgery (European Volume). 2014. DOI: 10.1177/1753193414527052

[7] Does the distal radioulnar joint orientation influence the outcome of ulnar shortening osteotomy: a retrospective study. Journal of Hand Surgery (European Volume). 2024. DOI: 10.1177/17531934241262931

[8] Solutions for the Unstable and Arthritic Distal Radioulnar Joint. Hand Clinics. 2020. DOI: 10.1016/j.hcl.2020.07.008

[9] Chronic Distal Radioulnar Joint Instability. Hand Clinics. 2020. DOI: 10.1016/j.hcl.2020.07.004

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[21] Management of Complications of Distal Radioulnar Joint. Hand Clinics. 2015. DOI: 10.1016/j.hcl.2014.12.003

[24] Prevalence and Associated Factors for Primary Osteoarthritis of the Scaphotrapeziotrapezoid, Radiocarpal, and Distal Radioulnar Joints in the Japanese General Elderly Population. The Journal of Hand Surgery. 2025. DOI: 10.1016/j.jhsa.2023.05.009

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[28] Miller S Review Of Orthopaedics. SECTION 16 PATELLAR TRACKING IN TOTAL KNEE ARTHROPLASTY > DISTAL RADIOULNAR JOINT, TRIANGULAR FIBROCARTILAGE COMPLEX, AND WRIST ARTHROSCOPY > 2. TFCC tears.

[29] Stability of the distal radioulnar joint with and without activation of forearm muscles. Journal of Hand Surgery (European Volume). 2023. DOI: 10.1177/17531934231168299

[31] Distal radioulnar joint: functional anatomy, including pathomechanics. Journal of Hand Surgery (European Volume). 2017. DOI: 10.1177/1753193417693170

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[34] Green S Operative Hand Surgery. Distal Radioulnar Joint in Rheumatoid Arthritis.

[35] Pain and instability ascribed to the distal radioulnar ligaments and central disc as part of the triangular fibrocartilage complex: a round table discussion. Journal of Hand Surgery (European Volume). 2024. DOI: 10.1177/17531934241254705

[36] Use of an Ulnar Head Endoprosthesis for Treatment of an Unstable Distal Ulnar Resection: Review of Mechanics, Indications, and Surgical Technique. Hand Clinics. 2005. DOI: 10.1016/j.hcl.2005.08.015

[39] Non-constrained implant arthroplasty for the distal radioulnar joint. Journal of Hand Surgery (European Volume). 2017. DOI: 10.1177/1753193417693177

[40] Radial Distraction to Stabilize Distal Radioulnar Joint in Distal Radius Fixation. The Journal of Hand Surgery. 2018. DOI: 10.1016/j.jhsa.2018.02.030

[41] Restoring balance in the distal radioulnar joint: advancements in minimally invasive surgical approaches. Journal of Hand Surgery (European Volume). 2026. DOI: 10.1177/17531934261417561

[42] Long-term results of the AptisTM total distal radioulnar joint prosthesis after previous failed surgical procedures. Journal of Hand Surgery (European Volume). 2023. DOI: 10.1177/17531934231192375

[43] Efficacy and safety of prosthetic arthroplasty of the distal radioulnar joint: a systematic review. Journal of Hand Surgery (European Volume). 2026. DOI: 10.1177/17531934261415827

[44] An alternative treatment for degenerative triangular fibrocartilage complex injuries with distal radioulnar joint instability: first experience with 48 patients. Journal of Hand Surgery (European Volume). 2023. DOI: 10.1177/17531934231197942

[45] Performance of the Aptis distal radioulnar joint implant: kinematic and geometric analysis. Journal of Hand Surgery (European Volume). 2024. DOI: 10.1177/17531934241274142

[46] Campbell S Operative Orthopaedics 4 Volume Set. MALPOSITIONED NONUNION OF SCAPHOID FRACTURES ("HUMPBACK" DEFORMITY) > DISTAL RADIOULNAR AND ULNOCARPAL JOINT INJURIES.

[50] The reliability of clinical assessment of distal radioulnar joint instability among non-United Kingdom European surgeons. Journal of Hand Surgery (European Volume). 2024. DOI: 10.1177/17531934241275456

[51] Distal Radioulnar Joint Kinematics Evaluated Using Ultrasonography During Handstanding in Female Gymnasts. Orthopaedic Journal of Sports Medicine. 2025. DOI: 10.1177/23259671251368997

[54] Understanding Stability of the Distal Radioulnar Joint Through an Understanding of Its Anatomy. Hand Clinics. 2010. DOI: 10.1016/j.hcl.2010.05.002

[55] Rehabilitation Following Thumb CMC, Radiocarpal, and DRUJ Arthroplasty. Hand Clinics. 2013. DOI: 10.1016/j.hcl.2012.08.025

[56] Anatomy and Biomechanics of the Distal Radioulnar Joint. Hand Clinics. 2012. DOI: 10.1016/j.hcl.2012.03.002

[57] Round table discussion. Distal radioulnar joint instability after surgical treatment of distal radial fractures. Journal of Hand Surgery (European Volume). 2024. DOI: 10.1177/17531934241268980

[58] New trends in arthroscopic management of type 1-B TFCC injuries with DRUJ instability. Journal of Hand Surgery (European Volume). 2009. DOI: 10.1177/1753193409100120

[59] Effect of Radial Lengthening on the Stability of the Distal Radioulnar Joint: A Biomechanical Cadaveric Study. The Journal of Hand Surgery. 2026. DOI: 10.1016/j.jhsa.2025.06.013

[60] Intra-Articular Pressure in the Distal Radioulnar Joint: A Biomechanical Study. The Journal of Hand Surgery. 2025. DOI: 10.1016/j.jhsa.2023.11.015

[61] Extensor Retinaculum Capsulorrhaphy and Suture Repair for Ulnocarpal and Distal Radioulnar Joint Instability: One-Year Results. Journal of Hand Surgery Global Online. 2025. DOI: 10.1016/j.jhsg.2025.100806

[62] Ulnar Bowing and Distal Radioulnar Joint Anatomy: A Three-Dimensional, In Situ Clinical Assessment. Journal of Hand Surgery Global Online. 2024. DOI: 10.1016/j.jhsg.2023.12.006

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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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