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首页> 外文期刊>Neurological Research: An Interdisciplinary Quarterly Journal >Invariability of the privileged direction of the maximal EMG activity during speed-related activation for reaching in the vertical plane.
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Invariability of the privileged direction of the maximal EMG activity during speed-related activation for reaching in the vertical plane.

机译:在到达垂直平面的速度相关激活过程中,最大EMG活动的优先方向不变。

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摘要

Spatial tuning of goal-directed movements is a critical phenomenon for the central nervous system. The use of reliable models is a necessary step for the understanding of the neural mechanisms governing reaching movements. We analysed phasic electromyographic (EMG) activities associated with upper limb reaching movements in the vertical plane (12 targets) in seven healthy subjects during three successive sessions. We tested the hypothesis that one of the fundamental parameters of the directional tuning of phasic EMG activities is the peak of EMG activity. To characterize the tuning of phasic EMG activities for the seven recorded muscles (brachioradialis, biceps, medial and long head of triceps, anterior and posterior deltoid, latissimus dorsi), we digitally compressed the EMG activities corresponding to slow reaches to the same targets into the time frame of the fast EMG traces. Estimates of gravity-related components were subtracted. Peak of EMG activities in the resulting phasic traces were identified for each muscle and each target. The maximal peak EMG amongst the 12 peaks of EMG activity in the sagittal plane was called M Peak EMG. We defined the directional dominance as the ratio of the M Peak EMG divided by the Peak EMG in the opposite direction. The M Peak EMG for each muscle was always found in the same privileged direction of the movement, except for the latissimus dorsi. The directional dominance remained unchanged across recording sessions for the brachioradialis, anterior deltoid and posterior deltoid. However, the directional dominance increased across sessions for the biceps, medial head of triceps, long head of triceps and latissimus dorsi. The invariability of the privileged direction of the M peak EMG was thus observed for six of the seven muscles investigated. Therefore, we suggest that the selection of the privileged direction of the M Peak EMG represents a robust parameter to study the neuromuscular control strategy underlying the specification of movement direction.
机译:目标定向运动的空间调整是中枢神经系统的关键现象。使用可靠的模型是理解控制到达运动的神经机制的必要步骤。我们分析了相继的肌电图(EMG)活动与七个健康受试者在三个连续的会议期间在垂直平面(12个目标)中上肢到达运动有关。我们测试了以下假设,即相位EMG活动的方向性调整的基本参数之一是EMG活动的峰值。为了表征所记录的七个肌肉(腕radi,肱二头肌,肱三头肌的内侧和长头,前三角肌和后三角肌,背阔肌)的阶段性EMG活动的调节,我们将对应于缓慢到达同一目标的EMG活动进行了数字压缩。快速肌电图追踪的时间范围。减去与重力有关的分量的估计值。对于每个肌肉和每个目标,在最终的相位迹线中确定了EMG活动的峰值。在矢状面的12个EMG活性峰中,最大EMG峰称为M Peak EMG。我们将方向优势定义为M峰值EMG除以相反方向上的峰值EMG之比。除背阔肌外,总是在相同的特权运动方向上发现每条肌肉的M峰值肌电图。在腕radi,前三角肌和后三角肌的记录期间,方向优势保持不变。然而,在二头肌,肱三头肌内侧头,肱三头肌长头和背阔肌的整个疗程中,定向优势增加。因此,对于所研究的七块肌肉中的六块,观察到了M峰肌电图的优先方向的不变性。因此,我们建议选择M Peak EMG的优先方向代表一个可靠的参数,以研究基于运动方向规范的神经肌肉控制策略。

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