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Biomechanics of an interlinked suture anchor rotator cuff repair in a human cadaveric model

机译:人体尸体模型中的缝合线锚旋转肩袖修复的生物力学

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Background The purpose of this study was to evaluate the initial fixation of a transosseous-equivalent rotator cuff repair and an interlinked medial repair, quantifying the cyclic and failure loading properties of each construct. Methods Twenty-four human cadaveric shoulders from 12 matched pairs were dissected, and full-thickness supraspinatus tears were created. In each pair, 1 side was repaired with a transosseous-equivalent repair (control) and the other, with an interlinked repair. All specimens were cycled to 1 MPa of effective stress at 1 Hz for 500 cycles, and gap formation was recorded with a digital video system. All samples were then loaded to failure, and the ultimate load and displacement and modes of failure were recorded. Results The interlinked repair showed a decrease in the amount of construct gapping after cycle 50 and in peak construct gapping compared with the control group (control, 3.4 ± 0.9 mm; interlinked, 2.5 ± 0.8 mm; P = .048). The interlinked repair also showed a higher ultimate load to failure (control, 318.7 ± 77.9 N; interlinked, 420.6 ± 93.7 N; P ?= .007). No other significant differences were detected between constructs for preparation or testing metrics. Conclusions The interlinked repair, in which 1 continuous suture linked the medial anchors, showed decreased construct gapping and increased ultimate load to failure compared with the control construct. This study establishes the biomechanical validity of the new interlinked repair construct compared with a previously validated construct.
机译:背景技术这项研究的目的是评估异骨等效肩袖修复术和互连的内侧修复术的初始固定,以量化每种构建体的循环和破坏载荷特性。方法解剖12对配对的24具人体尸体肩膀,并制作全层上棘上泪。在每对中,一侧用异骨等效修复物(对照)修复,另一侧用互连修复法修复。将所有样品在1 Hz的有效应力下循环1 MPa,进行500个循环,并用数字视频系统记录间隙的形成。然后将所有样品加载至失效,并记录最终载荷,位移和失效模式。结果与对照组相比,互连修复修复在周期50后减少了构建空位的数量,并且峰值构建空位也减少了(对照组,3.4±0.9 mm;互连,2.5±0.8 mm; P = .048)。互连修复也显示出更高的最终破坏载荷(对照,318.7±77.9 N;互连,420.6±93.7 N; P = 0.007)。在准备或测试指标的构建体之间未检测到其他显着差异。结论与对照组相比,其中1条连续缝合线连接内侧锚钉的互连修复显示出减小的结构间隙和增加的最终破坏力。这项研究建立了新的互连修复结构与以前验证的结构相比的生物力学有效性。

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