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腕关节复合运动时腕骨的运动学可能与简单腕部运动时的骨运动学有所不同。

Carpal bone kinematics in combined wrist joint motions may differ from the bone kinematics during simple wrist motions.

作者信息

Upal Mohammad Anwar

机构信息

Department of Orthopaedic Research, Rhode Island Hospital, Suite 404-1 Hoppin Street, Providence, RI 02903, USA.

出版信息

Biomed Sci Instrum. 2003;39:272-7.

Abstract

Present in-vivo carpal kinematic studies have been limited to flexion-extension and radio-ulnar deviation. However these simple motions do not represent the full range of wrist motion employed during activities of daily living. In this study, we investigated combined carpal bone motions for one normal subject. A healthy left wrist from a 48 year old female was CT scanned in three positions: the clinical neutral position of the forearm, the pronated and maximum extended wrist posture, and the supinated and maximum flexed wrist posture. The scans were obtained using a GE8800 scanner at 120 kV and 40 mA. The voxel size was 0.234 mm X0.234 mm X1.0 mm. Principal axes registration methods were used to quantify the carpal bone kinematics. The movement of the carpal bones were described by the means of helical axis parameters. Our subject's carpal bone kinematics in the complex motions differed from the previously studied simple motions. For example, published studies have found that the primary motion of the capitate follows the global motion of the wrist during simple wrist flexion-extension. However, for the complex pronation and extension motion, the capitate rotated ulnarly out of the plane of motion. The only previous study of pisiform motion has shown that during flexion-extension the pisiform moves in the plane of motion. However during pronation and extension, the pisiform rotated ulnarly; while in flexion, the rotation was a combination of flexion and supination.

摘要

目前的体内腕关节运动学研究仅限于屈伸和桡尺偏斜。然而,这些简单运动并不能代表日常生活活动中所采用的腕关节全部运动范围。在本研究中,我们调查了一名正常受试者的腕骨联合运动。对一名48岁女性的健康左手腕在三个位置进行了CT扫描:前臂的临床中立位、旋前且腕关节最大伸展位以及旋后且腕关节最大屈曲位。扫描使用GE8800扫描仪,管电压120 kV,管电流40 mA。体素大小为0.234 mm×0.234 mm×1.0 mm。采用主轴配准方法来量化腕骨运动学。腕骨的运动通过螺旋轴参数来描述。我们受试者在复杂运动中的腕骨运动学与之前研究的简单运动不同。例如,已发表的研究发现,在简单的腕关节屈伸过程中,头状骨的主要运动跟随腕关节的整体运动。然而,对于复杂的旋前和伸展运动,头状骨向尺侧旋转出运动平面。之前唯一一项关于豌豆骨运动的研究表明,在屈伸过程中豌豆骨在运动平面内移动。然而在旋前和伸展过程中,豌豆骨向尺侧旋转;而在屈曲时,旋转是屈曲和旋后的组合。

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