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Modifications of EEG Related to Repeated Static Grasp Efforts Developed by the Hand in Humans

机译:EEG的修改与人类在手中反复产生的静态抓力有关

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The characteristics of EEG recorded before, in the course, and after three sequential static grasp efforts developed by the right hand were analyzed in 14 healthy volunteers of both sexes, 19 to 56 years old. The grasps were 3 min long, and intervals between the sequential trials were 5 min long. The mean intensity was, as a rule, the greatest in the first trial and decreased, because of fatigue, in the second and third trials. In the course of the grasp effort, significant (P ≤ 0.05) or close to significant decreases in the spectral power were observed in all trials within the alpha2 subrange in some frontal, central, and central/temporal leads. This reaction of desynchronization of alpha2 oscillations probably reflects activation of the sensorimotor cortical zones. Within the above period, the power of alpha2 oscillations increased in the occipital leads. In a few leads of the frontal group, the powers of delta, theta1, theta2, and alpha1 oscillations increased significantly (P < 0.05) in the course of the first trial. Such reaction was not observed in the second and third trials, while the powers of delta and alpha1 ranges increased in the occipital sites (P < 0.05). The powers of delta and theta oscillations increased, as compared with the control values, after the second and third grasps. Such specific EEG modifications in sequential trials can be related to the actions of a novelty factor in the first trial and a fatigue factor in the subsequent trials. The coherence coefficient (CC) of alpha and beta oscillations for symmetric leads usually increased in the course of the grasp. This effect reached a significance level (P < 0.05) for alpha2 oscillations in central, posterotemporal, parietal, and occipital pairs. The CC for beta2 oscillations increased in both temporal lead pairs. A drop in the interhemisphere coherence was more typical of the delta and theta1 ranges. Therefore, changes in the CC values show that the structure of interhemisphere interaction undergoes modifications with the development of the grasp static efforts.
机译:在14名年龄在19至56岁之间的14名男女健康志愿者中,分析了右手连续进行三次静态抓握之前,过程中和之后记录的脑电图特征。抓紧时间为3分钟长,顺序试验之间的间隔为5分钟长。通常,平均强度在第一次试验中最大,而在第二次和第三次试验中由于疲劳而下降。在掌握努力的过程中,在所有额叶,中央和中央/时间导线的alpha2子范围内的所有试验中,观察到光谱功率均显着降低(P≤0.05)或接近显着降低。 alpha2振荡的失步反应可能反映了感觉运动皮层区的激活。在上述时间段内,枕骨前导中α2振荡的力量增加。在额叶组的一些导联中,在第一次试验过程中,delta,theta1,theta2和alpha1振荡的功效显着增加(P <0.05)。在第二和第三次试验中未观察到此类反应,而枕骨位点的δ和α1范围的功效增加了(P <0.05)。在第二次和第三次抓握之后,与控制值相比,δ和theta振荡的幂增加。在顺序试验中这种特定的EEG修饰可能与第一次试验中的新颖性因子和后续试验中的疲劳性因子的作用有关。对称引线的α和β振荡的相干系数(CC)通常在抓握过程中增加。对于中央,后颞,顶叶和枕骨对中的α2振荡,该效应达到显着水平(P <0.05)。 beta2振荡的CC在两个时间引线对中均增加。半球间连贯性的下降在δ和θ1范围内更为典型。因此,CC值的变化表明半球形相互作用的结构随着抓地力的提高而发生了变化。

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