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Control of Coordinated Movements: Effects of a compression garment on sensory feedback transmission in the human upper limb

机译:协调运动的控制:压缩服装对人体上肢感觉反馈传递的影响

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摘要

Compression apparel is popular in both medical and sport performance settings. Perceived benefits are suggested to include changes in sensory feedback transmission caused by activation of mechanoreceptors. However, little is known about effects of compression apparel on sensorimotor control. Our purpose was to mechanistically examine whether compression apparel modulates sensory feedback transmission and reaching accuracy in the upper limb. Two experiments were completed under CONTROL and COMPRESSION (sleeve applied across the elbow joint) conditions. M-waves and H-reflexes were elicited by stimulating the median nerve and were recorded via surface electromyography (EMG). In experiment 1, H-reflexes and M-H recruitment curves were assessed at REST, during wrist flexion (10% EMGmax), and during a cutaneous conditioning of the superficial radial (SR) or distal median (MED) nerve. Cutaneous reflexes were elicited during 10% wrist flexion via stimulation of SR or MED. In experiment 2, unconditioned H-reflex measures were assessed at rest, during arm cycling, and during a discrete reaching task. Results indicate that compression apparel modulates spinal cord excitability across multiple sensory pathways and movement tasks. Interestingly, there was a significant improvement in reaching accuracy while wearing the compression sleeve. Taken together, the compression sleeve appears to increase precision and sensitivity around the joint where the sleeve is applied. Compression apparel may function as a “filter” of irrelevant mechanoreceptor information allowing for optimal task-related sensory information to enhance proprioception.>NEW & NOTEWORTHY Wearing a customized compression sleeve was shown to alter the excitability of multiple pathways within the central nervous system regardless of conditioning input or movement task and was accompanied by improved accuracy of reaching movements and determination of movement end point. Compression apparel may assist as a type of “filter function” of tonic and nonspecific mechanoreceptor information leading to increased precision and movement sensitivity around the joint where compression is applied.
机译:压缩服装在医疗和运动表演环境中都很流行。建议感知的益处包括由机械感受器的激活引起的感觉反馈传递的变化。然而,关于压缩服装对感觉运动控制的影响知之甚少。我们的目的是机械地检查压缩服装是否调节上肢的感觉反馈传递并达到准确性。在“控制”和“压缩”(套于肘关节上)条件下完成了两个实验。通过刺激正中神经引起M波和H反射,并通过表面肌电图(EMG)进行记录。在实验1中,在REST时,手腕屈曲期间(EMGmax为10%)以及浅radial神经(SR)或远端正中神经(MED)的皮肤调节过程中,评估了H-反射和M-H补充曲线。腕部弯曲10%时,通过刺激SR或MED引起皮肤反射。在实验2中,评估了静止,手臂骑行以及不连续到达任务期间的无条件H反射测量。结果表明,压力服装调节跨多个感觉途径和运动任务的脊髓兴奋性。有趣的是,穿着压缩袖子时达到的准确度有了显着提高。综上所述,压缩套管似乎可以提高应用套管的关节周围的精度和灵敏度。压缩服装可能充当不相关机械感受器信息的“过滤器”,从而获得与任务相关的最佳感官信息,从而增强本体感受。> NEW&NOTEWORTHY 穿着定制的压缩袖子可以改变内部多个途径的兴奋性。中枢神经系统,无论是否进行了条件输入或运动任务,并伴随着达到运动准确性和运动终点的提高。压缩服装可以作为一种补剂和非特异性机械感受器信息的“过滤器功能”,从而在施加压缩的关节周围提高精度和运动敏感性。

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