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Current Biomechanical Concepts for Rotator Cuff Repair

机译:当前转子袖套修复的生物力学概念

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摘要

For the past few decades, the repair of rotator cuff tears has evolved significantly with advances in arthroscopy techniques, suture anchors and instrumentation. From the biomechanical perspective, the focus in arthroscopic repair has been on increasing fixation strength and restoration of the footprint contact characteristics to provide early rehabilitation and improve healing. To accomplish these objectives, various repair strategies and construct configurations have been developed for rotator cuff repair with the understanding that many factors contribute to the structural integrity of the repaired construct. These include repaired rotator cuff tendon-footprint motion, increased tendon-footprint contact area and pressure, and tissue quality of tendon and bone. In addition, the healing response may be compromised by intrinsic factors such as decreased vascularity, hypoxia, and fibrocartilaginous changes or aforementioned extrinsic compression factors. Furthermore, it is well documented that torn rotator cuff muscles have a tendency to atrophy and become subject to fatty infiltration which may affect the longevity of the repair. Despite all the aforementioned factors, initial fixation strength is an essential consideration in optimizing rotator cuff repair. Therefore, numerous biomechanical studies have focused on elucidating the strongest devices, knots, and repair configurations to improve contact characteristics for rotator cuff repair. In this review, the biomechanical concepts behind current rotator cuff repair techniques will be reviewed and discussed.
机译:在过去的几十年中,随着关节镜技术,缝合锚钉和器械的发展,肩袖撕裂的修复已取得了显着进展。从生物力学的角度来看,关节镜修复的重点是提高固定强度和恢复脚印接触特性,以提供早期康复和改善愈合。为了实现这些目的,已经开发了用于肩袖修复的各种修复策略和构造,其理解是许多因素有助于修复的构造的结构完整性。这些包括修复的肩袖肌腱足迹运动,肌腱足迹接触面积和压力增加以及肌腱和骨骼的组织质量。另外,愈合反应可能会受到内在因素的损害,例如血管减少,缺氧和纤维软骨改变或上述外在性压缩因素。此外,有据可查的是,肩袖撕裂肌肉有萎缩的趋势,并容易受到脂肪的浸润,这可能会影响修复的寿命。尽管有上述所有因素,但初始固定强度是优化肩袖修复的基本考虑因素。因此,许多生物力学研究集中于阐明最坚固的装置,结和修复结构,以改善肩袖修复的接触特性。在这篇综述中,将对目前的肩袖修复技术背后的生物力学概念进行回顾和讨论。

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