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Artroplastia del pulgar por contacto

Updated Sep 2026
Una ilustración dibujada a mano que muestra una mano sujetando algo cómodamente entre el pulgar y el dedo índice.
Radiografía posterior a una artroplastia del pulgar: un pequeño implante de doble movilidad recubre la superficie de la articulación entre el trapecio y el metacarpiano del pulgar; esa es la articulación que se deteriora en la artritis basal del pulgar. 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.

¿Por qué se ha sugerido 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 recomendado consultarnos, 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 mano y, si es necesario, solicitamos estudios de imagen para confirmar el diagnóstico.

La artritis de la base del pulgar es una artritis degenerativa en la articulación donde el pulgar se une a la muñeca. Provoca dolor en la base del pulgar, a menudo acompañado de una sensación de “deslizamiento” en la articulación; además, puede dificultar el pellizcar y el agarrar objetos. Girar una llave, abrir la puerta del coche o levantar un libro pueden volverse tareas complicadas. Normalmente probamos primero tratamientos no quirúrgicos, como modificaciones en las actividades cotidianas, fisioterapia o terapia de la mano, y el uso de férulas. La cirugía se considera únicamente cuando estas medidas no logran una mejora suficiente.

La artroplastia de la base del pulgar consiste en reemplazar la articulación deteriorada por una prótesis artificial. Esta opción se ofrece a personas cuya artritis se limita exclusivamente a dicha articulación. El objetivo de la operación es aliviar el dolor y restaurar la longitud, la fuerza y el movimiento del pulgar. La tasa de supervivencia de esta prótesis a los 2 años es del 96 %. Conversaremos con usted para determinar si este procedimiento se adapta a su mano y a sus objetivos terapéuticos.

Antes de la operación

Una vez planificada la cirugía, solicitaremos radiografías de su pulgar y muñeca para medir la articulación y planificar el reemplazo. En algunos casos también será necesario realizar una resonancia magnética o una ecografía. En los días previos a la operación, deberá abstenerse de comer y beber durante siete horas antes del procedimiento. Pedimos que sea un período de siete horas en lugar de uno más corto para poder adelantar su intervención si el programa quirúrgico lo permite. Su cirujano le indicará qué medicamentos habituales debe suspender y cuándo; por ello, lleve una lista por escrito de todos los fármacos que toma, incluyendo pastillas y suplementos. Organice que alguien lo lleve a casa después de la operación, ya que no podrá conducir usted mismo. Use ropa holgada y cómoda, cuyas mangas se puedan quitar fácilmente. Si padece otras enfermedades, es posible que necesite análisis de sangre o una consulta con el anestesista antes del día de la intervención.

El día de la operación

El día de su operación, deberá presentarse en la unidad de admisiones quirúrgicas del hospital. Allí se le registrará y se le preparará para el quirófano. Posteriormente, conocerá al anestesista, el médico encargado de administrar la anestesia y de cuidar de usted mientras está dormido.

Esta operación se realiza bajo anestesia general; usted permanecerá completamente dormido durante todo el procedimiento. En algunos pacientes también se puede aplicar un bloqueo nervioso regional para aliviar el dolor postoperatorio; el anestesista decide al respecto ese mismo día según sus circunstancias individuales.

Después, será llevado al quirófano, donde se lleva a cabo la operación. Una vez finalizada, despertará en la sala de recuperación. Allí, las enfermeras lo vigilarán mientras la anestesia va desapareciendo. Cuando su estado sea estable, será trasladado a la planta de hospitalización o podrá regresar a su casa, según el tipo de intervención y cómo evolucione su recuperación.

¿En qué consiste la operación?

La artroplastia del pulgar sustituye la articulación desgastada en la base del pulgar por una articulación artificial compuesta de piezas metálicas y plásticas. El cirujano realiza una única incisión en la zona a operar para acceder a la articulación.

Una vez alcanzada la articulación, el cirujano retira las superficies articulares deterioradas. Una parte de la nueva articulación se fija al hueso del pulgar, mientras que la otra parte se coloca en el pequeño hueso de la muñeca sobre el cual descansa el pulgar. Ambas partes luego se mueven una contra la otra tal como lo haría una articulación sana. El cirujano cuida de proteger las estructuras cercanas, incluyendo la arteria que pasa próxima a la articulación y el tendón que la cruza.

La nueva articulación restaura la longitud y alineación del pulgar. El objetivo es lograr que el pulgar se mueva, pellizque y agarre objetos con menos dolor que antes.

Una vez colocada la prótesis, el cirujano cierra la incisión con puntos de sutura. Se aplica un vendaje sobre la herida; deberá mantenerlo durante unos 10 días.

Después de la operación

La mayoría de los pacientes permanecen una noche en el hospital tras esta operación, aunque algunos pueden volver a casa el mismo día. Despertará en la sala de recuperación y, una vez estabilizado, será trasladado a la planta de hospitalización. Su mano quedará inmovilizada mediante una férula y el vendaje cubrirá la herida. Puede levantarse y caminar; las enfermeras le ayudarán al principio. Se le administrará analgesia antes de darle el alta, y la ajustaremos si necesita más. 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 venga a consulta. Asegúrese de que alguien permanezca con usted durante las primeras 24 horas después de llegar a casa.

Recuperación

Durante los primeros días, su pulgar y mano estarán adoloridos e hinchados. Esto mejora gradualmente. Mantener la mano elevada sobre almohadas, incluso mientras descansa o duerme, ayuda a reducir la hinchazón y el malestar. Se le administrarán analgésicos antes de darle el alta del hospital; tómelos según las indicaciones.

Su mano quedará inmovilizada mediante un yeso con vendajes sobre la herida. Debe mantener el vendaje puesto durante unos 10 días; nosotros lo cambiaremos o lo retiraremos en su siguiente consulta. La terapia de la mano posterior a la cirugía será realizada por Ruby Doolan en Extend Rehabilitation. Ruby es terapeuta especializada en mano: ella le indicará los ejercicios y confeccionará cualquier tipo de yeso que necesite mientras su pulgar sana. Al principio, los ejercicios protegen la nueva articulación; posteriormente, fomentan el movimiento y la fuerza a medida que esta se estabiliza.

No podrá conducir mientras lleve el yeso, ya que le impedirá agarrar el volante de forma segura. Una vez retirado el yeso y con autorización de su cirujano, podrá volver a conducir. Consulte nuestra página sobre Conducción tras una cirugía de extremidad superior. En casa, aproveche para descansar la mano y evite tareas que requieran agarre fuerte, levantar pesos o torsión, hasta que su terapeuta le indique lo contrario. Al principio, actividades sencillas como vestirse o preparar una comida le llevarán más tiempo; proceda con calma y pida ayuda cuando la necesite.

La recuperación varía según cada persona. Su cronograma puede ser distinto; su cirujano y terapeuta de mano le guiarán en cada etapa.

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 incidencia a tiempo.

Con el tiempo, la nueva articulación puede aflojarse. Es posible que vuelva a sentir dolor en la base del pulgar, o una sensación de chasquido o roce al moverlo. Si esto ocurre, hágalo saber en su próxima consulta.

También puede producirse una dislocación de la articulación, es decir, que las dos partes de la nueva articulación se salgan de su posición. Esto provoca dolor repentino y el pulgar puede quedar deformado o inestable. Si observa esto, comuníquese con la clínica de inmediato.

Puede darse un dolor persistente que no mejore. Si los analgésicos comunes no lo alivian, informe a su cirujano en la siguiente revisión.

El pequeño hueso de la muñeca sobre el cual descansa el pulgar puede fracturarse durante la operación. Por lo general, esto se detecta durante la cirugía; sin embargo, si después siente un dolor agudo más intenso de lo esperado, avise a la clínica.

Algunas personas notan entumecimiento o hormigueo en el dorso del pulgar. Esto ocurre cuando los pequeños nervios cutáneos cercanos a la incisión se irritan; con el tiempo suele mejorar. Si persiste, mencione este síntoma en su revisión.

Un problema poco frecuente es una afección dolorosa que provoca ardor, hinchazón y cambios en la piel de la mano, mucho más allá del lugar de la operación. Si su mano se vuelve dolorosa, hinchada o sensible de esta manera, contacte a la clínica cuanto antes, pues el tratamiento es más eficaz cuando se inicia temprano.

En raras ocasiones, el tendón encargado de estirar el pulgar puede romperse tras la cirugía. Es posible que note que no puede enderezar la punta del pulgar. Si esto sucede, comuníquese con la clínica sin demora.

Las infecciones son poco frecuentes pero graves. Esté atento a un dolor profundo y palpitante que no ceda con analgésicos comunes, enrojecimiento que se extienda desde la herida, fiebre o secreción de líquido desde el corte. Si observa estos signos, contacte a la clínica de inmediato o acuda al servicio de urgencias fuera del horario laboral.

Si el reemplazo articular falla y es necesaria otra intervención, la extracción del implante y la realización de un procedimiento basado en tendones es una opción consolidada. Le explicaremos este proceso si alguna vez fuera necesario.

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

¿Cuándo deben llamarnos?

La mayoría de los problemas se resuelven con el tiempo, pero algunos requieren atención inmediata. Llámenos si tiene fiebre, o si la herida se vuelve más roja, hinchada o comienza a supurar líquido. Llámenos si el dolor empeora a pesar de tomar analgésicos, o si aparece entumecimiento nuevo en la mano o el pulgar. Acuda a urgencias si experimenta dolor intenso y repentino, hinchazón en la pantorrilla o dificultad para respirar; estos síntomas pueden indicar la presencia de un coágulo sanguíneo. Acuda a urgencias también si no puede mover el pulgar ni la mano en absoluto. Si algo le parece anormal y no está seguro, llame a la clínica. Preferimos que nos informe de ello a tiempo.

¿Dónde leer más sobre esta afección?

Esta página trata sobre la intervención quirúrgica en sí. La afección que se trata, así como las evidencias sobre cuándo la cirugía resulta útil y cuándo no, se explican con mayor detalle en la página Artritis basal del pulgar.


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

  • The Elektra prosthesis for trapeziometacarpal osteoarthritis demonstrated fast pain relief, maintenance of mobility, and a gradual increase in grip strength [1].
  • The Elektra prosthesis for trapeziometacarpal osteoarthritis had a revision rate of 44% after 72 months [1].
  • Trapeziometacarpal prosthesis enhances function, thumb length, and patient recovery in TMC arthrosis [2].
  • Limiting the magnitude of thumb loads after arthroplasty may contribute positively to the longevity of the procedure [3].
  • The Touch® trapeziometacarpal joint arthroplasty has a 96% implant survival rate at 2 years [4].
  • The Touch® trapeziometacarpal joint arthroplasty is recommended as the standard treatment for patients with isolated trapeziometacarpal joint osteoarthritis [4].
  • The MOOVIS prosthesis is recommended for the treatment of advanced trapeziometacarpal osteoarthritis in people having an activity without too many manual constraints due to the absence of prosthesis instability [5].
  • The Elektra prosthesis for trapeziometacarpal osteoarthritis showed poor outcomes after 2 years, leading authors to not recommend this implant [6].
  • Total joint arthroplasty in primary trapeziometacarpal joint arthritis results in low pain levels, excellent mobility, clinical function, and high patient satisfaction [7].
  • The MAÏA trapeziometacarpal prosthesis represents a long-term solution for surgical treatment of thumb rhizarthrosis [8].
  • MAÏA TMC total joint arthroplasty provides very good results for pain relief, strength, mobility, and restoration of the thumb length [10].
  • MAÏA TMC total joint arthroplasty provides correction of most thumb z-deformities [10].

Anatomy & Pathophysiology

Bony Anatomy & Joint Mechanics

  • The thumb metacarpal is independent and articulates with the trapezium [26].
  • The thumb ray is the most divergent of the five rays of the hand [26].
  • The thumb has a more proximal and lateral position than the four fingers, allowing movement inward and outward from the palm [21].
  • The web space of the thumb is the largest and deepest of the hand [21].
  • The thumb is described as the master digit of the hand, representing the dominant element that gives value to all other digits [26].
  • The hand consists of 19 bones, 17 articulations, and 19 muscles situated entirely within the hand [21].

Prosthesis Design & Biomechanics

  • The Touch® prosthesis reproduces the concept of dual mobility consisting of a mobile prosthetic head in a polyethylene insert that is freely moveable within a metal cup [13].
  • The Touch® prosthesis comprises two concentric articulations: a smaller articulation between the head and polyethylene insert, and a larger articulation between the polyethylene insert and metal cup [13].
  • The Touch® prosthesis utilizes metal-on-polyethylene bearings [13].
  • The Touch® prosthesis is modular, composed of a titanium alloy stem (Ti–6Al–4 V), an M30 stainless steel intermediate implant, and an M30 stainless steel hemispheric cup [13].
  • The Touch® prosthesis head is covered by a pre-assembled high-density 7-mm diameter polyethylene insert [13].
  • Implant fixation for the Touch® prosthesis is achieved by a press-fit effect and a double-layer porous titanium and hydroxyapatite coating that promotes osteointegration [13].
  • The total in vitro range of motion of the Touch® prosthesis is 117 degrees [13].

Pathophysiology & Complications

  • Aseptic cup loosening is cited as the most common reason for implant failure in thumb carpometacarpal joint replacement, leading to revision rates of 42%–51% [15].
  • Proximal migration of the thumb is a major drawback of resection-suspension arthroplasty that can lead to compromised pinch strength and disability [15].
  • Polyethylene liner fracture in the Touch prosthesis can present as persistent clicking during thumb motion without antecedent trauma or pain [11].
  • Standard radiographs and CT scans may show a well-aligned implant without evidence of loosening in cases of polyethylene liner fracture [11].
  • Stress-view imaging (dynamic x-ray) using a fluoroscopic image intensifier can reveal instability of the carpometacarpal I joint and decentralization of the head compared with the cup in cases of polyethylene liner fracture [11].
  • Dynamic radiographic imaging with longitudinal traction is important for making a timely diagnosis of polyethylene liner fracture when standard radiographs are normal [14].
  • Revision surgery for polyethylene liner fracture involves exchanging only the liner, which restores stability [11].

Classification

  • The Touch® prosthesis reproduces the original concept of dual mobility as defined by Gilles Bousquet for a total hip prosthesis [13].
  • The Touch® prosthesis consists of a mobile prosthetic head in a polyethylene insert that is freely moveable within a metal cup [13].
  • The Touch® prosthesis was developed in 2013 based on the principle of a ball-and-socket joint with three degrees of freedom [13].
  • The Touch® prosthesis is modular and composed of a titanium alloy stem (Ti–6Al–4 V) available in five sizes [13].
  • The Touch® prosthesis includes an M30 stainless steel intermediate implant with a 4-mm diameter head covered by a pre-assembled high-density 7-mm diameter polyethylene insert [13].
  • The Touch® prosthesis polyethylene insert is available in three lengths and two angles [13].
  • The Touch® prosthesis includes an M30 stainless steel hemispheric cup available in two sizes (9 and 10 mm in diameter) [13].
  • Implant fixation for the Touch® prosthesis is primary by a press-fit effect and secondary by means of a double-layer porous titanium and hydroxyapatite coating [13].
  • The double-layer porous titanium and hydroxyapatite coating promotes and accelerates osteointegration [13].
  • The total in vitro range of motion of the Touch® prosthesis is 117° [13].

Clinical Presentation

  • Persistent clicking during thumb motion without antecedent trauma or pain can be a clinical sign of polyethylene liner fracture in a Touch prosthesis [11].
  • Grip and pinch strength may remain clinically unchanged compared with the contralateral side despite the presence of a fractured polyethylene liner [11].
  • Standard radiographs may appear normal in cases of polyethylene liner fracture, failing to reveal the diagnosis [14].
  • Computed tomography (CT) scans may demonstrate a well-aligned implant without evidence of loosening even when a polyethylene liner fracture is present [11].
  • Stress-view imaging using a fluoroscopic image intensifier can reveal instability of the carpometacarpal I joint during the application of translatory stress forces on the thumb [11].
  • Stress-view imaging may show a hint of possible decentralization of the prosthetic head compared with the cup in cases of polyethylene liner fracture [11].

Investigations

  • A careful physical examination is essential to direct care and future testing if indicated [17].

Treatment

Prosthetic Design and Mechanics

  • The Touch® prosthesis cup is available in two sizes: 9 and 10 mm in diameter [13].
  • Implant fixation for the Touch® prosthesis is primary by a press-fit effect and secondary by a double-layer porous titanium and hydroxyapatite coating [13].

Clinical Outcomes and Survival

  • Trapeziometacarpal prosthesis enhances function, thumb length, and patient recovery [2].
  • Total joint arthroplasty in primary trapeziometacarpal joint arthritis results in low pain levels, excellent mobility and clinical function with high patient satisfaction [7].
  • The Elektra prosthesis for trapeziometacarpal osteoarthritis has a revision rate of 44% after 72 months [1].
  • The Elektra prosthesis for trapeziometacarpal osteoarthritis is not recommended due to poor outcomes after only 2 years [6].
  • MAÏA TMC joint prosthesis is a reliable long-term surgical procedure for TMC joint osteoarthritis, improving overall function beyond 10 years [19].
  • The Moovis prosthesis is recommended for the treatment of advanced trapeziometacarpal osteoarthritis for people having an activity without too many manual constraints [5].

Complications and Technical Considerations

  • A fracture of the polyethylene liner in a Touch trapeziometacarpal prosthesis can present as persistent clicking during thumb motion without antecedent trauma or pain [11].
  • Stress-view imaging using a fluoroscopic image intensifier can reveal instability of the carpometacarpal I joint and possible decentralization of the head compared with the cup in cases of suspected polyethylene liner fracture [11].
  • Exchanging only the polyethylene liner restores stability after a liner fracture in a Touch prosthesis [11].
  • Correct implant position can lead to reliable medium-term results after trapeziometacarpal joint arthroplasty with unconstrained cups [9].
  • Attentive reaming of the trapezium and careful cup impaction are crucial steps to avoid trapezial fracture and early cup failure in Moovis arthroplasty [12].
  • Scaphometacarpal arthroplasty using a trapeziometacarpal prosthesis is not sufficiently reliable to be a routine solution for surgical revision of failed TMC arthroplasty or trapeziectomy [16].
  • Scaphometacarpal arthroplasty using a trapeziometacarpal prosthesis should be used with caution, primarily as a salvage solution if no safer alternative is available [16].
  • Aseptic cup loosening is the most common reason for implant failure in replacement arthroplasty, leading to revision rates of 42%–51% [15].

Complications

Polyethylene Liner Fracture

  • A 53-year-old male professional cook developed persistent clicking during thumb motion 12 months after Touch trapeziometacarpal arthroplasty for primary osteoarthritis [11].
  • Standard radiographs and CT scans in a patient with suspected polyethylene liner fracture may show a well-aligned implant without evidence of loosening [11].
  • Stress-view imaging using a fluoroscopic image intensifier can reveal instability of the carpometacarpal I joint and possible decentralization of the head compared with the cup when standard radiographs are normal [11].
  • Revision surgery for a suspected polyethylene liner fracture may confirm a fractured PE liner with an intact metallic head and stem [11].
  • Exchanging only the polyethylene liner can restore stability in cases of Touch prosthesis liner fracture [11].

Implant Survival and Revision

  • The Elektra prosthesis for trapeziometacarpal osteoarthritis had a revision rate of 44% after 72 months in a follow-up of 39 consecutive cases [1].
  • The Touch trapeziometacarpal joint arthroplasty reported a 96% implant survival rate at 2 years [4].
  • Aseptic cup loosening is cited as the most common reason for implant failure in thumb carpometacarpal replacement arthroplasty, leading to revision rates of 42%–51% [15].

Operative Complications and Technical Considerations

  • Attentive reaming of the trapezium and careful cup impaction are crucial steps to avoid trapezial fracture and early cup failure in Moovis trapeziometacarpal joint arthroplasty [12].

Alternative Indications and Salvage

Recovery

  • Attentive reaming of the trapezium and careful cup impaction are crucial steps to avoid trapezial fracture and early cup failure [12].
  • Correct implant position can lead to reliable medium-term results after trapeziometacarpal joint arthroplasty [9].
  • Exchanging only the liner restores stability following a polyethylene liner fracture in a Touch trapeziometacarpal prosthesis [11].

Key Evidence

  • [L4] Although the study observed fast pain relief, maintenance of mobility, and a gradual increase in grip strength, there was an increasing need for revision with a rate of 44% after 72 months. [1] (10.1177/1753193412443501)
  • [L3] Trapeziometacarpal prosthesis shows promise for TMC arthrosis, enhancing function, thumb length, and patient recovery, warranting further research and x-ray guidance. [2] (10.1016/j.jhsg.2024.03.004)
  • [L5] Limiting the magnitude of thumb loads after arthroplasty may contribute positively to the longevity of this procedure. [3] (10.1177/1753193416659230)
  • [L4] The study reports a 96% implant survival rate at 2 years with promising patient-reported and clinical outcomes, leading the authors to recommend surgery with the TouchRV prosthesis as the standard treatment for patients with isolated trapeziometacarpal joint osteoarthritis. [4] (10.1177/17531934231179581)
  • [L4] The absence of prosthesis instability encourages us to recommend this technique for the treatment of advanced trapeziometacarpal osteoarthritis for people having an activity without too many manual constraints. [5] (10.1177/1558944718797341)
  • [L3] Because of these poor outcomes after only 2 years, the authors cannot recommend this implant. [6] (10.1177/1753193411414505)
  • [L3] Total joint arthroplasty in primary trapeziometacarpal joint arthritis results in low pain levels, excellent mobility and clinical function with high patient satisfaction. [7] (10.1186/s12891-024-07439-5)
  • [L4] The MAÏA trapeziometacarpal prosthesis represents a long-term solution for surgical treatment of thumb rhizarthrosis. [8] (10.1177/17531934221136442)
  • [L4] This study shows that correct implant position can lead to reliable medium-term results after trapeziometacarpal joint arthroplasty. [9] (10.1177/1753193417741237)
  • [L4] MAÏA TMC total joint arthroplasty may be a reliable treatment option for TMC joint osteoarthritis, with very good results for pain relief, strength, mobility, and restoration of the thumb length, providing correction of most thumb z-deformities. [10] (10.1016/j.jhsa.2017.06.008)
  • [L5] [11] (10.1016/j.jhsg.2026.101045)
  • [L2] Attentive reaming of the trapezium and careful cup impaction are crucial steps to avoid trapezial fracture and early cup failure. [12] (10.1177/1753193420921307)
  • [L4] [13] (10.1177/17531934211024500)
  • [L4] This case highlights the importance of dynamic radiographic imaging with longitudinal traction to make a timely diagnosis of polyethylene liner fracture when standard radiographs are normal. [14] (10.1177/17531934241227918)
  • [L3] [15] (10.1177/1753193419873230)
  • [L5] Scaphometacarpal arthroplasty using a trapeziometacarpal prosthesis is not sufficiently reliable to be a routine solution for surgical revision of failed TMC arthroplasty or trapeziectomy; instead, it should be used with caution, primarily as a salvage solution if no safer alternative is available. [16] (10.1177/17531934231201914)
  • [L4] MAÏA TMC joint prosthesis is a reliable long-term surgical procedure for TMC joint osteoarthritis, improving overall function beyond 10 years. [19] (10.1016/j.jhsa.2024.03.019)

References

[1] Elektra prosthesis for trapeziometacarpal osteoarthritis: a follow-up of 39 consecutive cases. Journal of Hand Surgery (European Volume). 2012. DOI: 10.1177/1753193412443501

[2] Comparative Analysis of Prosthetic (Touch) and Arthroplastic Surgeries for Trapeziometacarpal Arthrosis: Functional Outcomes and Patient Satisfaction With a 2-Year Follow-Up. Journal of Hand Surgery Global Online. 2024. DOI: 10.1016/j.jhsg.2024.03.004

[3] Total arthroplasty of basal thumb joint with Elektra prothesis: an in vitro analysis. Journal of Hand Surgery (European Volume). 2016. DOI: 10.1177/1753193416659230

[4] Low complication rate and high implant survival at 2 years after Touch® trapeziometacarpal joint arthroplasty. Journal of Hand Surgery (European Volume). 2023. DOI: 10.1177/17531934231179581

[5] Total Thumb Carpometacarpal Joint Arthroplasty: A Retrospective Functional Study of 28 MOOVIS Prostheses. HAND. 2018. DOI: 10.1177/1558944718797341

[6] Two-year outcomes of Elektra prosthesis for trapeziometacarpal osteoarthritis: a longitudinal cohort study. Journal of Hand Surgery (European Volume). 2012. DOI: 10.1177/1753193411414505

[7] Mid- and long-term clinical results of the Elektra and Moovis prosthesis for trapeziometacarpal joint replacement. BMC Musculoskeletal Disorders. 2024. DOI: 10.1186/s12891-024-07439-5

[8] Long-term survival analysis of 191 MAÏA® prostheses for trapeziometacarpal arthritis. Journal of Hand Surgery (European Volume). 2022. DOI: 10.1177/17531934221136442

[9] Can surgical guidelines minimize complications after Maïa® trapeziometacarpal joint arthroplasty with unconstrained cups?. Journal of Hand Surgery (European Volume). 2017. DOI: 10.1177/1753193417741237

[10] MAÏA Trapeziometacarpal Joint Arthroplasty: Clinical and Radiological Outcomes of 80 Patients With More than 6 Years of Follow-Up. The Journal of Hand Surgery. 2017. DOI: 10.1016/j.jhsa.2017.06.008

[11] Polyethylene Liner Fracture in Touch Trapeziometacarpal Prosthesis: A Case Report. Journal of Hand Surgery Global Online. 2026. DOI: 10.1016/j.jhsg.2026.101045

[12] Two-year results of the Moovis trapeziometacarpal joint arthroplasty with focus on early complications. Journal of Hand Surgery (European Volume). 2020. DOI: 10.1177/1753193420921307

[13] Dual mobility trapeziometacarpal prosthesis: a prospective study of 107 cases with a follow-up of more than 3 years. Journal of Hand Surgery (European Volume). 2021. DOI: 10.1177/17531934211024500

[14] Polyethylene liner fracture in dual mobility trapeziometacarpal total joint replacement: how to make a timely diagnosis?. Journal of Hand Surgery (European Volume). 2024. DOI: 10.1177/17531934241227918

[15] Elektra prosthesis versus resection-suspension arthroplasty for thumb carpometacarpal osteoarthritis: a long-term cohort study. Journal of Hand Surgery (European Volume). 2019. DOI: 10.1177/1753193419873230

[16] Scaphometacarpal arthroplasty with a TOUCH® prosthesis: feasibility and biomechanical impact in a cadaver model. Journal of Hand Surgery (European Volume). 2023. DOI: 10.1177/17531934231201914

[17] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Anatomy, Evaluation, Clinical Examination, and Imaging > Evaluation and Clinical Examination: Current Concepts.

[19] MAÏA Trapeziometacarpal Joint Arthroplasty: Clinical and Radiological Outcomes of 76 Patients With More Than 10 Years of Follow-Up. The Journal of Hand Surgery. 2024. DOI: 10.1016/j.jhsa.2024.03.019

[21] Exam Of The Hand Wrist 2Ed. INTRODUCTION.

[26] Exam Of The Hand Wrist 2Ed. The arches of the hand > The metacarpal arch.

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