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首页> 外文期刊>Human movement science >Real-time kinematic biofeedback improves scapulothoracic control and performance during scapular-focused exercises: A single-blind randomized controlled laboratory study
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Real-time kinematic biofeedback improves scapulothoracic control and performance during scapular-focused exercises: A single-blind randomized controlled laboratory study

机译:实时运动生物反馈改善了肩骨集中锻炼过程中的肩oth孔控制和性能:单盲随机对照实验室研究

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摘要

Emerging evidence suggests that scapular-focused therapeutic exercises hold promise for shoulder dynamic stability retraining. While recent findings show that therapeutic exercises can alter scapular neuromuscular function measured with muscle electromyography, no study has yet addressed the effects of kinematic biofeedback for improving scapulothoracic control and performance. The aim of this study was to assess the effectiveness of kinematic biofeedback on motor relearning transfer during shoulder flexion and a daily activity, on the quality of scapular-focused exercise performance, and on execution time. Thirty healthy young adults were randomly distributed into two groups. Skin mounted electromagnetic sensors were used to collect kinematic data of the thorax, scapula and humerus while subjects performed a shoulder flexion and a daily activity, prior to and after scapular focused exercises. For both groups, the exercise execution error and the execution time determined the scapulothoracic control and performance. Significant statistical differences were found in the exercise execution error results within the experimental group (z = 5.313; p = 0.037) and between groups (u = 37.00; p = 0.001; u = 64.00; p = 0.024). This study's results demonstrate that real-time kinematic biofeedback improves scapulothoracic control and performance during scapular-focused exercise execution. (C) 2016 Elsevier B.V. All rights reserved.
机译:越来越多的证据表明,以肩cap骨为中心的治疗运动有望为肩部动态稳定性提供再训练。虽然最近的发现表明治疗性锻炼可以改变用肌肉肌电图测量的肩cap神经肌肉功能,但尚无研究探讨运动学生物反馈对改善肩or动脉控制和性能的影响。这项研究的目的是评估运动生物反馈对肩部屈曲和日常活动中运动相关学习的有效性,以肩cap骨为中心的运动表现的质量以及执行时间。将三十名健康的年轻人随机分为两组。在肩骨集中锻炼之前和之后,当受试者进行肩部屈曲和日常活动时,使用皮肤安装的电磁传感器收集胸,肩s骨和肱骨的运动学数据。对于这两组,锻炼执行错误和执行时间决定了肩or孔控制和性能。在实验组内(z = 5.313; p = 0.037)和组间(u = 37.00; p = 0.001; u = 64.00; p = 0.024),在锻炼执行错误结果中发现显着的统计学差异。这项研究的结果表明,在以肩feed骨为中心的锻炼执行过程中,实时运动学生物反馈改善了肩or动脉的控制和性能。 (C)2016 Elsevier B.V.保留所有权利。

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