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首页> 外文期刊>Clinical biomechanics >A comparison of individual joint contributions to multijoint position reproduction acuity in overhead-throwing athletes.
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A comparison of individual joint contributions to multijoint position reproduction acuity in overhead-throwing athletes.

机译:掷高架起的运动员个人关节对多关节位置再现能力的贡献的比较。

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BACKGROUND: Measures of joint position sense often test single-axis motions isolating a single joint. Such methods hamper our ability to apply findings to functional multijoint activities. Using a functional, active, multijoint test, we measured upper-extremity position reproduction in overhead-throwers. We compared acuity among four joints and examined individual joint contributions or patterns of contribution among joints to overall task acuity. METHODS: We used an electromagnetic tracking device to measure reproduction of two functional upper-extremity positions. We calculated absolute, constant and variable error at four upper-extremity joints around multiple axes of rotation: three axes at the scapulothoracic and glenohumeral joints and two axes at the elbow and wrist. To represent individual joint acuity, we calculated 3-dimensional variable error. Additional 3-dimensional variable error scores using deviation in hand position (with reference to the thorax) represented overall task acuity. We used principle component analyses to identify contributions of individual joints or patterns of contribution among joints to overall task acuity for absolute, constant and variable error. FINDINGS: Scapulothoracic and glenohumeral joints displayed better acuity compared with elbow and wrist joints. When examined separately, absolute, constant and variable error scores did not indicate any individual joint contributed more to task acuity. When we examined the principle components of all error score measures together, a distinct proximal-to-distal pattern of joint contribution to overall task acuity emerged. INTERPRETATION: Proximal joints display better reposition acuity compared with distal joints, however proximal joints contribute more to acuity of the overall task. Our results indicate that upper-extremity joints do not function independently in repositioning tasks and measures of absolute, constant and variable errors combined over multiple joints may better represent upper-extremity function.
机译:背景:关节位置感测的方法通常测试隔离单个关节的单轴运动。这些方法阻碍了我们将发现应用于功能性多关节活动的能力。使用功能性,主动,多关节测试,我们测量了高架投掷者的上肢位置再现。我们比较了四个关节之间的敏锐度,并检查了单个关节的贡献或关节间对整体任务敏锐度的贡献方式。方法:我们使用电磁跟踪装置来测量两个功能性上肢位置的再现。我们计算了围绕多个旋转轴的四个上肢关节的绝对,恒定和可变误差:肩or动脉和盂肱关节的三个轴,肘关节和手腕的两个轴。为了表示单个关节的敏锐度,我们计算了3维变量误差。使用手部位置偏差(参考胸部)的其他3维可变错误评分代表总体任务敏锐度。我们使用主成分分析来确定单个关节的贡献或关节之间的贡献模式对绝对,恒定和可变错误的总体任务敏锐度。结果:与肘关节和腕关节相比,肩or动脉和盂肱关节的视力更好。单独检查时,绝对,恒定和可变错误评分未表示任何单个关节对任务敏锐度的贡献更大。当我们一起检查所有错误评分措施的主要组成部分时,出现了一种关节对总体任务敏锐度做出贡献的从近到远的模式。解释:与远端关节相比,近端关节的复位敏锐度更高,但是近端关节对整体工作敏锐度的贡献更大。我们的结果表明,上肢关节在重新定位任务中不是独立起作用的,并且在多个关节上组合的绝对,恒定和可变误差的度量可能更好地代表了上肢功能。

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