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硅酮和热解碳人工手指关节

Silicone and Pyrocarbon Artificial Finger Joints.

作者信息

Alnaimat F A, Owida H A, Al Sharah A, Alhaj M, Hassan Mohammad

机构信息

Medical Engineering, Al-Ahliyya Amman University, Al-Saro, Al-Salt, Amman, Jordan.

Computer Engineering, Al-Ahliyya Amman University, Al-Saro, Al-Salt, Amman, Jordan.

出版信息

Appl Bionics Biomech. 2021 Jun 3;2021:5534796. doi: 10.1155/2021/5534796. eCollection 2021.

Abstract

Artificial finger joint design has been developed through different stages through the past. PIP (proximal interphalangeal) and MCP (metacarpophalangeal) artificial finger joints have come to replace the amputation and arthrodesis options; although, these artificial joints are still facing challenges related to reactive tissues, reduced range of motion, and flexion and extension deficits. Swanson silicone artificial finger joints are still common due to the physician's preferability of silicone with the dorsal approach during operation. Nevertheless, other artificial finger joints such as the pyrocarbon implant arthroplasty have also drawn the interests of practitioners. Artificial finger joint has been classified under three major categories which are constrained, unconstrained, and linked design. There are also challenges such as concerns of infections and articular cartilage necrosis associated with attempted retention of vascularity. In addition, one of the main challenges facing the silicone artificial finger joints is the fracture occurring at the distal stem with the hinge. The aim of this paper is to review the different artificial finger joints in one paper as there are few old review papers about them. Further studies need to be done to develop the design and materials of the pyrocarbon and silicone implants to increase the range of motion associated with them and the fatigue life of the silicone implants.

摘要

人工手指关节设计在过去经历了不同的发展阶段。近端指间关节(PIP)和掌指关节(MCP)人工手指关节已逐渐取代截肢和关节固定术;然而,这些人工关节仍面临与反应性组织、活动范围减小以及屈伸功能障碍相关的挑战。由于医生在手术中采用背侧入路时更倾向于使用硅胶,斯旺森硅胶人工手指关节仍然很常见。尽管如此,其他人工手指关节,如热解碳植入关节成形术也引起了从业者的兴趣。人工手指关节主要分为三大类,即受限设计、非受限设计和链接设计。此外,还存在一些挑战,如与试图保留血管相关的感染和关节软骨坏死问题。另外,硅胶人工手指关节面临的主要挑战之一是远端柄部与铰链处发生骨折。本文的目的是在一篇论文中综述不同的人工手指关节,因为关于它们的旧综述文章很少。需要进一步开展研究,以改进热解碳和硅胶植入物的设计与材料,从而增加与之相关的活动范围以及硅胶植入物的疲劳寿命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a41/8195645/ec1cc5dd2aff/ABB2021-5534796.001.jpg

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