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冈上肌索带肌腱对肩关节外展和移位的相对贡献。

Relative contributions of the supraspinatus cord and strap tendons to shoulder abduction and translation.

作者信息

Schmidt Christopher C, Rodriguez-Alejandro Omar E, Cooke Sean P, Dworkin Joshua D, Cook Austin J, Buce Justin G, Stefko Joseph M, Cline Noah S, Smolinski Patrick J, Miller Mark C

机构信息

Department of Orthopaedic Surgery, University of Pittsburgh Medical Center, Pittsburgh, PA, USA; Shoulder and Elbow Research Laboratory, Department of Orthopaedic Surgery, University of Pittsburgh Medical Center, Pittsburgh, PA, USA.

Department of Orthopaedic Surgery, University of Pittsburgh Medical Center, Pittsburgh, PA, USA; Shoulder and Elbow Research Laboratory, Department of Orthopaedic Surgery, University of Pittsburgh Medical Center, Pittsburgh, PA, USA.

出版信息

J Shoulder Elbow Surg. 2024 Jan;33(1):172-180. doi: 10.1016/j.jse.2023.07.003. Epub 2023 Aug 3.

Abstract

BACKGROUND

The supraspinatus (SS) is formed by a larger anterior bipennate muscle with a cord-like tendon and a posterior unipennate muscle with a strap-like tendon. There is a tendinous connection between the 2 SS subunits. Yet, the relative mechanical contribution of the SS cord and SS strap musculotendinous units to load transmission and subsequent shoulder abduction force is unknown. We hypothesized that a simulated SS cord vs. an SS strap tear would generate less shoulder abduction force and, further, an intact SS cord would offset the expected abduction loss from an SS strap tear, but the inverse would not be true.

MATERIALS AND METHODS

Twenty fresh-frozen cadaveric specimens were tested in a shoulder simulator with physiological load vectors applied to the upper and lower subscapularis, SS cord, SS strap, infraspinatus, and teres minor. The roles of the SS cord and SS strap muscles were delineated by varying their loads, while keeping constant loads on other muscles. The randomized testing trials included a native condition and 4 test cases that simulated tears by dropping the load and force transfer via the SS cord-to-SS strap connection by adding the load. Testing was completed at both 0° and 30° of abduction. During each test, shoulder abduction force, rotator cuff strains, and humeral translation were measured.

RESULTS

Simulated isolated SS cord and SS strap tears led to a significantly lower shoulder abduction force (P < .001). A simulated cord tear at 0° and 30° reduced the abduction force by 53% and 38%, respectively. A simulated strap tear at 0° and 30° dropped the abduction force by 27% and 23%, respectively. The decline in the abduction force was larger for the SS cord tear vs. SS strap tear (P ≤ .001). An SS cord tear with full-load transfer to the strap was able to recover to native values at both 0° and 30° (P ≥ .288). Likewise, an SS strap tear with full-load transfer to the SS cord showed a similar recovery to native values at both 0° and 30° (P ≥ .155). During full-load transfer, the tendon strain followed the loading pattern. An SS cord tear or SS strap tear did not cause a change in humeral translation (P ≥ .303).

DISCUSSION

The mechanical findings support the efficacy of nonoperative treatment of small (<10 mm) SS tears, because an intact SS strap tendon can effectively offset the abduction loss of a torn SS cord tear and vice versa.

摘要

背景

冈上肌(SS)由一块较大的前侧羽状肌和一条索状肌腱以及一块后侧单羽状肌和一条带状肌腱组成。SS的两个亚单位之间存在腱性连接。然而,SS索状和SS带状肌肉 - 肌腱单位对负荷传递及随后的肩关节外展力的相对机械贡献尚不清楚。我们假设,模拟的SS索状肌腱撕裂与SS带状肌腱撕裂相比,会产生较小的肩关节外展力,此外,完整的SS索状肌腱会抵消SS带状肌腱撕裂预期的外展力损失,但反之则不然。

材料与方法

20个新鲜冷冻尸体标本在肩部模拟器中进行测试,将生理负荷向量施加于肩胛下肌上、下部分、SS索状肌腱、SS带状肌腱、冈下肌和小圆肌。通过改变SS索状肌腱和SS带状肌腱的负荷,同时保持其他肌肉的负荷恒定,来描绘它们的作用。随机测试试验包括一个原始状态和4个测试案例,通过卸载负荷模拟撕裂,并通过增加负荷来模拟通过SS索状肌腱至SS带状肌腱连接的力传递。在外展0°和30°时完成测试。在每次测试期间,测量肩关节外展力、肩袖应变和肱骨移位。

结果

模拟的孤立SS索状肌腱和SS带状肌腱撕裂导致肩关节外展力显著降低(P <.001)。在0°和30°时模拟的索状肌腱撕裂分别使外展力降低53%和38%。在0°和30°时模拟的带状肌腱撕裂分别使外展力降低27%和23%。SS索状肌腱撕裂比SS带状肌腱撕裂导致的外展力下降更大(P≤.001)。将全部负荷转移至带状肌腱的SS索状肌腱撕裂在0°和30°时均能恢复至原始值(P≥.288)。同样,将全部负荷转移至SS索状肌腱的SS带状肌腱撕裂在0°和30°时也显示出类似的恢复至原始值的情况(P≥.155)。在全部负荷转移期间,肌腱应变遵循负荷模式。SS索状肌腱撕裂或SS带状肌腱撕裂均未导致肱骨移位发生变化(P≥.303)。

讨论

力学研究结果支持对小(<10 mm)SS撕裂进行非手术治疗的有效性,因为完整的SS带状肌腱可有效抵消撕裂的SS索状肌腱的外展力损失,反之亦然。

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