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反向全肩关节置换植入物设计对生物力学的影响。

The Influence of Reverse Total Shoulder Arthroplasty Implant Design on Biomechanics.

作者信息

Cogan Charles J, Ho Jason C, Entezari Vahid, Iannotti Joseph P, Ricchetti Eric T

机构信息

Department of Orthopaedic Surgery, Orthopaedic and Rheumatologic Institute, Cleveland Clinic, Cleveland, OH, USA.

Department of Orthopaedic Surgery, University of California San Francisco, San Francisco, CA, USA.

出版信息

Curr Rev Musculoskelet Med. 2023 Mar;16(3):95-102. doi: 10.1007/s12178-023-09820-8. Epub 2023 Feb 3.

Abstract

PURPOSE OF REVIEW

As reverse total shoulder arthroplasty indications have expanded and the incidence of its use has increased, developments in implant design have been a critical component of its success. The purpose of this review is to highlight the recent literature regarding the effect of implant design on reverse total shoulder arthroplasty biomechanics.

RECENT FINDINGS

Implant design for reverse total shoulder arthroplasty has evolved considerably from the modern design developed by Paul Grammont. The Grammont design had a medialized center of rotation and distalized humerus resulting from a 155° humeral neck shaft angle. These changes intended to decrease the forces on the glenoid component, thereby decreasing the risk for implant loosening and improving the deltoid moment arm. However, these features also led to scapular notching. The Grammont design has been modified over the last 20 years to increase the lateral offset of the glenosphere and decrease the prosthetic humeral neck shaft angle to 135°. These changes were made to optimize functional range of motion while minimizing scapular notching and improving active external rotation strength. Lastly, the introduction of preoperative planning and patient-specific instrumentation has improved surgeon ability to accurately place implants and optimize impingement-free range of motion. Success and durability of the reverse total shoulder arthroplasty has been contingent upon changes in implant design, starting with the Grammont-style prosthesis. Current humeral and glenoid implant designs vary in parameters such as humeral and glenoid offset, humeral tray design, liner thickness, and neck-shaft angle. A better understanding of the biomechanical implications of these design parameters will allow us to optimize shoulder function and minimize implant-related complications after reverse total shoulder arthroplasty.

摘要

综述目的

随着反式全肩关节置换术的适应证不断扩大且应用率上升,植入物设计的发展一直是其成功的关键因素。本综述旨在强调近期有关植入物设计对反式全肩关节置换术生物力学影响的文献。

最新发现

反式全肩关节置换术的植入物设计已从保罗·格拉蒙(Paul Grammont)开发的现代设计有了显著演变。格拉蒙设计因肱骨干颈角为155°而使旋转中心内移且肱骨头下移。这些改变旨在降低肩胛盂部件上的应力,从而降低植入物松动风险并改善三角肌力臂。然而,这些特征也导致了肩胛切迹。在过去20年里,格拉蒙设计已被改进,以增加球窝关节的外侧偏移,并将假体肱骨干颈角减小至135°。做出这些改变是为了优化功能活动范围,同时将肩胛切迹降至最低并提高主动外旋力量。最后,术前规划和患者特异性器械的引入提高了外科医生精确植入植入物并优化无撞击活动范围的能力。反式全肩关节置换术的成功与耐用性一直取决于植入物设计的改变,始于格拉蒙式假体。当前的肱骨和肩胛盂植入物设计在诸如肱骨和肩胛盂偏移、肱骨干托盘设计、衬垫厚度和干颈角等参数方面存在差异。更好地理解这些设计参数的生物力学意义将使我们能够优化肩部功能,并将反式全肩关节置换术后与植入物相关的并发症降至最低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c715/9944260/d28ea92251d9/12178_2023_9820_Fig1_HTML.jpg

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