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肌腱振动对单手和双手运动准确性的影响。

Effects of tendon vibration on unimanual and bimanual movement accuracy.

作者信息

Bullen A R, Brunt D

出版信息

Exp Neurol. 1986 Aug;93(2):311-9. doi: 10.1016/0014-4886(86)90192-5.

Abstract

Vibration-induced changes in target accuracy were examined to determine the influence of afferent information on unimanual and bimanual movements. Normal adult male subjects (N = 4) undertook a 90 degrees curvilinear positioning task (flexion and extension of the elbow) in the absence of vision. Each trial required the subject to reproduce a criterion target position while one of three vibration treatments was applied to the distal aspect of the triceps brachii tendon of the dominant arm. Vibration (100 Hz) was administered manually either prior to or concurrently with movement. Subsequent movement outcome was compared with a control or no-vibration condition. In the unimanual condition application of vibration to an antagonist muscle produced consistent undershoot of approximately 10 to 12% of the total movement amplitude. In contrast, vibration of the agonist produced minimal error in movement. A similar pattern was seen in the vibrated dominant arm of the bimanual condition; however, the results exhibited no interaction between hands. Target accuracy during prior vibration did not differ significantly from control trials and we concluded that vibration was an inappropriate stimulus to distort initial condition information. The observed results are consistent with vibration-induced activation of muscle spindle receptors in the lengthening muscle during movement. We concluded that afferent information from an antagonist muscle is critically important in the final movement outcome, but there was no evidence of contralateral effects.

摘要

研究了振动引起的目标准确性变化,以确定传入信息对单手和双手运动的影响。正常成年男性受试者(N = 4)在无视觉的情况下进行了一项90度曲线定位任务(肘部屈伸)。每次试验要求受试者再现一个标准目标位置,同时对优势臂肱三头肌腱的远端施加三种振动处理之一。振动(100赫兹)在运动前或运动同时手动施加。随后将运动结果与对照或无振动条件进行比较。在单手条件下,对拮抗肌施加振动会导致一致的运动幅度不足,约为总运动幅度的10%至12%。相比之下,对主动肌施加振动在运动中产生的误差最小。在双手条件下振动的优势臂中也观察到类似模式;然而,结果显示双手之间没有相互作用。先前振动期间的目标准确性与对照试验没有显著差异,我们得出结论,振动不是扭曲初始条件信息的合适刺激。观察到的结果与运动期间延长肌肉中肌肉梭感受器的振动诱导激活一致。我们得出结论,来自拮抗肌的传入信息对最终运动结果至关重要,但没有对侧效应的证据。

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