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首页> 外文期刊>Journal of orthopaedic research >Shoulder joint position sense improves with elevation angle in a novel, unconstrained task.
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Shoulder joint position sense improves with elevation angle in a novel, unconstrained task.

机译:在新颖,不受限制的任务中,肩关节位置感随仰角而改善。

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摘要

Proprioception, encompassing the submodalities of kinesthesia and joint position sense, is important in the maintenance of joint stability, especially in the shoulder. The purpose of this study was to examine the effects of plane and elevation angle on unconstrained shoulder joint position sense. Twenty-two subjects (12 male, 10 female) without a history of shoulder pathology were recruited from a university campus. Subjects attempted to replicate, with respect to plane and elevation angles, various target positions. Target positions consisted of five plane angles at 90 degrees of arm elevation and five arm elevation angles in the scapular plane. All target positions were tested twice to assess the reliability of the measurement. Intraclass correlation coefficients were generally low across target positions, possibly owing to the novelty and demanding nature of the task. No differences in repositioning errors were observed between plane angles (p = 0.255). Repositioning errors decreased linearly as theelevation angle increased from 30 degrees to 90 degrees (p = 0.007) and increased again from 90 degrees to 110 degrees of elevation (p = 0.029). Our results suggest that unconstrained joint position sense may be enhanced with increased muscular activation levels. Further, afferent feedback from musculotendinous mechanoreceptors may dominate over that from capsuloligamentous sources in unconstrained movements.
机译:本体感觉,包括运动感觉和关节位置感的亚形式,对于维持关节稳定性,特别是在肩膀中的稳定性很重要。这项研究的目的是检查平面和仰角对不受约束的肩关节位置感的影响。从大学校园招募了22名无肩部病理史的受试者(男性12名,女性10名)。受试者尝试针对平面和仰角复制各种目标位置。目标位置由90度手臂仰角的五个平面角和肩cap骨平面中的五个手臂仰角组成。所有目标位置均测试两次,以评估测量的可靠性。跨目标位置的类内相关系数通常较低,这可能是由于任务的新颖性和苛刻性。在平面角之间未观察到重新定位误差的差异(p = 0.255)。随着仰角从30度增加到90度(p = 0.007),重新定位误差线性减小,并再次从90度增加到110度(p = 0.029)。我们的结果表明,随着肌肉激活水平的提高,不受约束的关节位置感可能会增强。此外,在不受限制的运动中,来自肌腱机械感受器的传入反馈可能比来自荚膜韧膜源的反馈更为支配。

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