Anatomía y función de la articulación coxofemoral. Anatomía artroscópica de la cadera

Oliver Marín-Peña , Esther Fernández-Tormos , Pedro Dantas , Paulo Rego , Luis Pérez-Carro
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引用次数: 3

Abstract

Objective

Hip joint anatomy has a number of peculiarities that determine the arthroscopic treatment. The aim of this article is to describe the most significant anatomical and biomechanical findings for clinical and therapeutic applications.

Method

We divide the chapter into hip biomechanics with clinical application and anatomical structures of the central or peripheral compartment.

Results

Access and mobility into the hip joint is difficult, and requires understanding the normal anatomy and its variants. In the central compartment, we describe important structures such as the labrum, acetabular cartilage, round ligament, acetabular cartilage, and cartilage of the femoral head. In the peripheral compartment, femoral head cartilage, non-articular labrum, capsule and synovial folds are described.

Conclusions

Understanding hip arthroscopic anatomy and its variants, along with the basics of hip biomechanics, allow us to improve our orientation in a joint with a difficult access.

Clinical relevance

The knowledge of applied anatomy and arthroscopic hip biomechanics allows us to reduce our surgical learning curve in hip arthroscopy technique.

Level of evidence

Level IV Expert opinion.

髋关节的解剖和功能。髋关节镜解剖
目的:髋关节解剖有许多特点,决定了关节镜治疗。本文的目的是描述临床和治疗应用中最重要的解剖和生物力学发现。方法本章分为髋关节生物力学与临床应用和髋关节中央或外周腔室解剖结构两章。结果进入和活动髋关节是困难的,需要了解正常解剖结构及其变异。在中央腔室,我们描述了重要的结构,如唇,髋臼软骨,圆韧带,髋臼软骨和股骨头软骨。在周围腔室中,描述了股骨头软骨,非关节唇,囊和滑膜褶皱。结论:了解髋关节镜解剖及其变体,以及髋关节生物力学的基础知识,使我们能够在难以进入的关节中改善定位。临床相关性应用解剖学和关节镜下髋关节生物力学的知识使我们能够减少髋关节镜技术的手术学习曲线。证据等级:四级专家意见。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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