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桥接缝线在双排肩袖修复术中能实现稳定且可靠的固定。

Bridging suture makes consistent and secure fixation in double-row rotator cuff repair.

作者信息

Fukuhara Tetsutaro, Mihata Teruhisa, Jun Bong Jae, Neo Masashi

机构信息

Department of Orthopedic Surgery, Osaka Medical College, Takatsuki, Japan; Yaenosato Hospital, Higashi-Osaka, Japan.

Department of Orthopedic Surgery, Osaka Medical College, Takatsuki, Japan; First Towakai Hospital, Takatsuki, Japan; Katsuragi Hospital, Kishiwada, Japan.

出版信息

J Orthop Sci. 2017 Sep;22(5):852-857. doi: 10.1016/j.jos.2017.05.004. Epub 2017 Jun 16.

Abstract

BACKGROUND

Inconsistent tension distribution may decrease the biomechanical properties of the rotator cuff tendon after double-row repair, resulting in repair failure. The purpose of this study was to compare the tension distribution along the repaired rotator cuff tendon among three double-row repair techniques.

METHODS

In each of 42 fresh-frozen porcine shoulders, a simulated infraspinatus tendon tear was repaired by using 1 of 3 double-row techniques: (1) conventional double-row repair (no bridging suture); (2) transosseous-equivalent repair (bridging suture alone); and (3) compression double-row repair (which combined conventional double-row and bridging sutures). Each specimen underwent cyclic testing at a simulated shoulder abduction angle of 0° or 40° on a material-testing machine. Gap formation and tendon strain were measured during the 1st and 30th cycles. To evaluate tension distribution after cuff repair, difference in gap and tendon strain between the superior and inferior fixations was compared among three double-row techniques.

RESULTS

At an abduction angle of 0°, gap formation after either transosseous-equivalent or compression double-row repair was significantly less than that after conventional double-row repair (p < 0.01). During the 30th cycle, both transosseous-equivalent repair (p = 0.02) and compression double-row repair (p = 0.01) at 0° abduction had significantly less difference in gap formation between the superior and inferior fixations than did conventional double-row repair. After the 30th cycle, the difference in longitudinal strain between the superior and inferior fixations at 0° abduction was significantly less with compression double-row repair (2.7% ± 2.4%) than with conventional double-row repair (8.6% ± 5.5%, p = 0.03).

CONCLUSIONS

Bridging sutures facilitate consistent and secure fixation in double-row rotator cuff repairs, suggesting that bridging sutures may be beneficial for distributing tension equally among all sutures during double-row repair of rotator cuff tears.

摘要

背景

张力分布不一致可能会降低双排修复术后肩袖肌腱的生物力学性能,导致修复失败。本研究的目的是比较三种双排修复技术沿修复后的肩袖肌腱的张力分布情况。

方法

在42个新鲜冷冻的猪肩部标本中,分别采用三种双排技术之一修复模拟的冈下肌腱撕裂:(1)传统双排修复(无桥接缝线);(2)经骨等效修复(仅桥接缝线);(3)加压双排修复(结合传统双排和桥接缝线)。每个标本在材料试验机上以模拟肩外展角度0°或40°进行循环测试。在第1个和第30个循环期间测量间隙形成和肌腱应变。为了评估肩袖修复后的张力分布,比较了三种双排技术上下固定点之间的间隙和肌腱应变差异。

结果

在外展角度为0°时,经骨等效修复或加压双排修复后的间隙形成明显小于传统双排修复(p < 0.01)。在第30个循环中,0°外展时经骨等效修复(p = 0.02)和加压双排修复(p = 0.01)上下固定点之间的间隙形成差异均明显小于传统双排修复。在第30个循环后,0°外展时加压双排修复上下固定点之间的纵向应变差异(2.7%±2.4%)明显小于传统双排修复(8.6%±5.5%,p = 0.03)。

结论

桥接缝线有助于双排肩袖修复中实现一致且牢固的固定,这表明在肩袖撕裂的双排修复过程中,桥接缝线可能有利于在所有缝线之间均匀分布张力。

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