Lee Sang Wook, Landers Katlin, Harris-Love Michelle L
Department of Biomedical Engineering, Catholic University of America, Washington, DC, USA.
Exp Brain Res. 2014 Mar;232(3):739-52. doi: 10.1007/s00221-013-3784-x. Epub 2013 Dec 7.
In the human upper extremity (UE), unintended effects of proximal muscle activation on muscles controlling the hand could be an important aspect of motor control due to the necessary coordination of distal and proximal segments during functional activities. This study aimed to elucidate the effects of concurrent activation of elbow muscles on the coordination between hand muscles performing a grip task. Eleven healthy subjects performed precision grip tasks while a constant extension or flexion moment was applied to their elbow joints, inducing a sustained submaximal contraction of elbow muscles to counter the applied torque. Activation of four hand muscles was measured during each task condition using surface electromyography (EMG). When concurrent activation of elbow muscles was induced, significant changes in the activation levels of the hand muscles were observed, with greater effects on the extrinsic finger extensor (23.2 % increase under 30 % elbow extensor activation; p = 0.003) than extrinsic finger flexor (14.2 % increase under 30 % elbow flexor activation; p = 0.130). Elbow muscle activation also induced involuntary changes in the intrinsic thumb flexor activation (44.6 % increase under 30 % elbow extensor activation; p = 0.005). EMG-EMG coherence analyses revealed that elbow muscle activation significantly reduced intermuscular coherence between distal muscle pairs, with its greatest effects on coherence in the β-band (13-25 Hz) (average of 17 % decrease under 30 % elbow flexor activation). The results of this study provide evidence for involuntary, muscle-specific interactions between distal and proximal UE muscles, which may contribute to UE motor performance in health and disease.
在人类上肢(UE)中,由于功能活动期间远端和近端节段需要协调,近端肌肉激活对手部控制肌肉产生的意外影响可能是运动控制的一个重要方面。本研究旨在阐明肘部肌肉同时激活对执行抓握任务的手部肌肉之间协调性的影响。11名健康受试者执行精确抓握任务,同时对其肘关节施加恒定的伸展或屈曲力矩,诱导肘部肌肉持续进行次最大收缩以抵抗施加的扭矩。在每种任务条件下,使用表面肌电图(EMG)测量四块手部肌肉的激活情况。当诱导肘部肌肉同时激活时,观察到手部肌肉激活水平发生显著变化,对外在手指伸肌的影响大于外在手指屈肌(在30%肘部伸肌激活时增加23.2%;p = 0.003)(在30%肘部屈肌激活时增加14.2%;p = 0.130)。肘部肌肉激活还诱导了内在拇指屈肌激活的非自愿变化(在30%肘部伸肌激活时增加44.6%;p = 0.005)。肌电图-肌电图相干分析表明,肘部肌肉激活显著降低了远端肌肉对之间的肌间相干性,对β波段(13 - 25 Hz)相干性的影响最大(在30%肘部屈肌激活时平均降低17%)。本研究结果为UE远端和近端肌肉之间非自愿的、肌肉特异性相互作用提供了证据,这可能有助于健康和疾病状态下的UE运动表现。