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髋关节髋臼唇撕裂的生物力学基础。

A biomechanical basis for tears of the human acetabular labrum.

机构信息

Department of Bioengineering, Imperial College London, Royal School of Mines, South Kensington Campus, London, UK.

出版信息

Br J Sports Med. 2009 Aug;43(8):574-8. doi: 10.1136/bjsm.2008.053645. Epub 2008 Nov 28.

Abstract

OBJECTIVE

Acetabular labral tears predominantly affect young patients and are a source of hip pain in the athlete. Four causes of the initiation of labral tears have been proposed; trauma, hypolaxity of the anterior capsule, dysplasia and bony impingement. A further cause could be reduced biomechanical properties in the area most susceptible to tears. However, no work has defined these properties.

DESIGN

32 compressive and 32 tensile test samples were harvested from fresh-frozen cadaveric acetabula. The labrum was divided into eight areas to allow comparison around its circumference. Semiconfined compressive testing and tensile testing were performed at a displacement rate of 10 mm/min in a controlled environment of 100% humidity at 37 (SD 1) degrees C.

SETTING

Cadaveric study.

RESULTS

The mean compressive stiffness was 31.75 (SD 16.7) MPa, and the mean tensile elastic modulus was 24.7 (SD 10.8) MPa. The anterosuperior region had a significantly lower compressive elastic modulus than either of the posterior quadrants (p<0.05) and a significantly lower tensile modulus to the anterioinferior area (p<0.05).

CONCLUSIONS

The biomechanical properties in the anterosuperior region may be a contributing factor to the initiation of labral tears.

摘要

目的

髋臼唇撕裂主要影响年轻患者,是运动员髋关节疼痛的一个来源。已经提出了四种导致唇撕裂的原因;创伤、前囊的低松弛度、发育不良和骨撞击。另一个原因可能是最容易撕裂的区域的生物力学特性降低。然而,尚无研究定义这些特性。

设计

从新鲜冷冻的尸体髋臼中采集了 32 个压缩和 32 个拉伸测试样本。将唇分为八个区域,以允许在其圆周周围进行比较。在 37°C(SD 1)、湿度为 100%的受控环境中,以 10mm/min 的位移率进行半约束压缩测试和拉伸测试。

设置

尸体研究。

结果

平均压缩刚度为 31.75(SD 16.7)MPa,平均拉伸弹性模量为 24.7(SD 10.8)MPa。前上区域的压缩弹性模量明显低于后象限的任何一个区域(p<0.05),并且与前下区域相比,拉伸模量明显较低(p<0.05)。

结论

前上区域的生物力学特性可能是导致唇撕裂的一个因素。

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