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首页> 外文期刊>Journal of Biomechanics >In-vivo three-dimensional carpal bone kinematics during flexion-extension and radio-ulnar deviation of the wrist: Dynamic motion versus step-wise static wrist positions.
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In-vivo three-dimensional carpal bone kinematics during flexion-extension and radio-ulnar deviation of the wrist: Dynamic motion versus step-wise static wrist positions.

机译:腕部屈伸和腕尺尺偏斜期间的体内三维腕骨运动学:动态运动与逐步静态手腕位置之间的关系。

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摘要

An in-vivo approach to the measurement of three-dimensional motion patterns of carpal bones in the wrist may have future diagnostic applications, particularly for ligament injuries of the wrist. Static methods to measure carpal kinematics in-vivo only provide an approximation of the true kinematics of the carpal bones. This study is aimed at finding the difference between dynamically and statically acquired carpal kinematics. For eight healthy subjects, static and a dynamic measurements of the carpal kinematics were performed for a flexion-extension and a radio-ulnar deviation movement. Dynamic scans were acquired by using a four-dimensional X-ray imaging system during an imposed cyclic motion. To assess static kinematics of the wrists, three-dimensional rotational X-ray scans were acquired during step-wise flexion-extension and radio-ulnar deviation. The helical axis rotations and the rotation components. i.e. flexion-extension, radio-ulnar deviation and pro-supination were the primary parameters. Linear mixed model statistical analysis was used to determine the significance of the difference between the dynamically and statically acquired rotations of the carpal bones. Small and in most cases negligible differences were observed between the dynamic motion and the step-wise static motion of the carpal bones. The conclusion is that in the case of individuals without any pathology of the wrist, carpal kinematics can be studied either dynamically or statically. Further research is required to investigate the dynamic in-vivo carpal kinematics in patients with dynamic wrist problems.
机译:体内测量腕部腕骨三维运动模式的方法可能具有未来的诊断应用,尤其是对于腕部韧带损伤。静态测量体内腕关节运动学的静态方法只能提供腕骨真实运动学的近似值。这项研究旨在发现动态和静态获得的腕部运动学之间的差异。对于八名健康受试者,进行了腕关节运动学的静态和动态测量,以了解屈伸和尺尺偏侧运动。动态扫描是通过在循环运动期间使用四维X射线成像系统获得的。为了评估手腕的静态运动学,在逐步屈伸和radio尺偏斜过程中获取了三维旋转X射线扫描。螺旋轴旋转和旋转分量。即屈伸,尺尺偏斜和俯卧是主要参数。使用线性混合模型统计分析来确定动态和静态获得的腕骨旋转之间差异的重要性。腕骨的动态运动与逐步静态运动之间的微小差异在大多数情况下可忽略不计。结论是,对于没有手腕任何病理学的个体,可以动态或静态地研究腕关节运动学。需要进行进一步的研究来研究具有动态腕部问题的患者的动态腕内运动学。

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