前臂旋转时前臂骨间膜的形态变化。

Tomoki Ono, Koji Iwamoto, Masahiko Monma, Makoto Takahashi, Kazuhide Tomita
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引用次数: 0

摘要

[目的]人们对前臂旋转时前臂骨间膜相对于肩关节位置的动态变化仍然知之甚少。本研究旨在阐明前臂在肩关节外展和外旋位置旋转时的骨间膜动态变化。[参与者和方法]我们对 17 个健康前臂在俯卧位进行了开放式磁共振成像。为测量前臂旋转角度设置了三个肢体位置:中间、最大前伸和最大上举。采集图像时,肩关节外展 90°,外旋 90°。前臂骨间膜角度在三个点测量:前臂骨间膜顶点、桡骨和尺骨。骨间角的测量重复三次。[结果]前臂骨间膜角测量的评分者内部可靠性得到了充分的证实。前臂骨间膜在前臂前伸时呈平均背凸形(141.7° ± 0.83°),在前臂上举时呈平均掌凸形(-141.6° ± 0.64°)。[结论]前臂骨间膜是前臂旋转的重要软组织,本研究通过量化前臂骨间膜的动态变化,为今后的研究提供了有用的信息。建立前臂骨间膜形态变化的定量评估方法将有助于进一步阐明体育活动中的前臂旋转运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphological changes in the interosseous membrane of the forearm during forearm rotation.

[Purpose] Changes in forearm interosseous membrane dynamics during forearm rotation relative to the shoulder joint position remain poorly understood. The purpose of this study was to clarify interosseous membrane dynamics during forearm rotation in shoulder abduction and external rotation positions. [Participants and Methods] We conducted open magnetic resonance imaging on 17 healthy forearms in the prone position. Three limb positions were set for measuring the forearm rotation angle: intermediate, maximum pronation, and maximum supination. Images were obtained with the shoulder joint abducted at 90°and externally rotated at 90°. The forearm interosseous membrane angle was measured at three points: the apex of the forearm interosseous membrane, the radius, and the ulna. The measurement of the interosseous angle was repeated thrice. [Results] Sufficient intra-rater reliability was confirmed for the forearm interosseous membrane angle measurement. The interosseous membrane of the forearm showed a mean dorsal convex shape during forearm pronation (141.7° ± 0.83°), and the mean palmar convex shape during forearm supination (-141.6° ± 0.64°). [Conclusion] This study provides useful information for future research by quantifying the dynamics of the interosseous membrane of the forearm, which is an important soft tissue for forearm rotation. The establishment of a quantitative evaluation method for forearm interosseous morphological changes will help further elucidate forearm rotation movements during sports activities.

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