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[腕关节的功能解剖与生物力学]

[Functional anatomy and biomechanics of the carpus].

作者信息

Schmitt R

机构信息

Institut für Diagnostische und Interventionelle Radiologie, Herz- und Gefässklinik GmbH, Salzburger Leite 1, 97616 , Bad Neustadt an der Saale.

出版信息

Radiologe. 2006 Aug;46(8):638-48. doi: 10.1007/s00117-006-1397-0.

Abstract

The wrist is an exceedingly complex structure composed of several joints and a dedicated ligamentous system. Its functional principles allow a wide range of carpal motion and make the wrist remarkably resistant to external stress forces:The proximal carpal row serves as an intercalated link interposed between the static elements of both the forearm and the distal carpal row. Like a flexible place-holder, the proximal row synchronously adapts to the spatial and temporal requirements of the wrist. There are synergistic movement patterns including simultaneous flexion of the proximal row as the wrist is deviated radially and simultaneous extension during ulnar deviation. Together with pronosupination of the radioulnar joints, the combined radial/ulnar inclination and flexion/extension enable spherical, out-of-plane movements of the hand. Carpal function is best explained by the "model of a ring under tension."This review addresses the anatomy and the biomechanics of the wrist and illustrates systematic image analysis by using carpal lines and angles as well as indices of carpal height.

摘要

腕关节是一个极其复杂的结构,由多个关节和一个专门的韧带系统组成。其功能原理允许腕骨进行广泛的运动,并使腕关节能够显著抵抗外部应力:近端腕骨排作为一个插入连接,介于前臂和远端腕骨排的静态元件之间。近端腕骨排就像一个灵活的占位器,同步适应腕关节的空间和时间要求。存在协同运动模式,包括在腕关节向桡侧偏斜时近端腕骨排同时屈曲,以及在尺侧偏斜时同时伸展。与桡尺关节的旋前/旋后一起,桡侧/尺侧倾斜和屈曲/伸展的组合使手部能够进行球形的平面外运动。腕骨功能最好用“张力下的环模型”来解释。本综述阐述了腕关节的解剖结构和生物力学,并通过使用腕骨线、角度以及腕骨高度指数来说明系统的图像分析。

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