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人体髋关节囊韧带的力学特性。

The mechanical properties of the human hip capsule ligaments.

作者信息

Hewitt John D, Glisson Richard R, Guilak Farshid, Vail T Parker

机构信息

Orthopaedic Research Laboratories, Department of Surgery, Division of Orthopaedic Surgery, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Arthroplasty. 2002 Jan;17(1):82-9. doi: 10.1054/arth.2002.27674.

Abstract

The human hip capsule is adapted to facilitate upright posture, joint stability, and ambulation, yet it routinely is excised in hip surgery without a full understanding of its mechanical contributions. The objective of this study was to provide information about the mechanical properties of the ligaments that form the hip capsule. Cadaver bone-ligament-bone specimens of the iliofemoral, ischiofemoral, and femoral arcuate ligaments were tested to failure in tension. The hip capsule was found to be an inhomogeneous structure and should be recognized as being composed of discrete constituent ligaments. The anterior ligaments, consisting of the 2 arms of the iliofemoral ligament, were much stronger than the posterior ischiofemoral ligament, withstanding greater force at failure and exhibiting greater stiffness. Knowledge of the anatomy and mechanical properties of the capsule may help the hip surgeon choose an appropriate surgical approach or repair strategy.

摘要

人类髋关节囊有助于维持直立姿势、关节稳定性和行走功能,然而在髋关节手术中,人们常常在并未充分了解其力学作用的情况下将其切除。本研究的目的是提供有关构成髋关节囊的韧带力学特性的信息。对髂股韧带、坐骨股韧带和股骨弓状韧带的尸体骨-韧带-骨标本进行拉伸试验直至破坏。研究发现髋关节囊是一种不均匀的结构,应被视为由离散的组成韧带构成。由髂股韧带的两个臂组成的前侧韧带比后侧坐骨股韧带强壮得多,在破坏时能承受更大的力且表现出更大的刚度。了解关节囊的解剖结构和力学特性可能有助于髋关节外科医生选择合适的手术入路或修复策略。

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