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Electrical somatosensory stimulation modulates hand motor function in healthy humans

机译:电体感刺激调节健康人类的手部运动功能

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In healthy people, electrical somatosensory stimulation modulates excitability in contralateral cortical motor areas. The question whether this is associated with a change in motor performance is still under debate. The effect of electrical somatosensory stimulation on motor performance of the hand was investigated in 14 healthy right-handed subjects. Subjects performed index finger and hand tapping movements as well as reach-to-grasp movements towards small and large cubes with each hand prior to (baseline condition) and following 2-hour electrical somatosensory stimulation (trains of 5 pulses at 10 Hz with 1 ms duration delivered at 1 Hz with an intensity on average 60 % above the individual somatosensory threshold) of the (i) right median nerve, (ii) left median nerve, (iii) right tibial nerve (control stimulation) and (iv) left tibial nerve (control stimulation) on separate occasions at least one week apart. The order of sessions was counterbalanced across subjects. Somatosensory stimulation of the median nerves, but not of the tibial nerves, reduced the frequency and velocity of index finger and hand tapping movements performed with the stimulated hand, compared to baseline. In contrast, the kinematics of reach-to-grasp movements remained unaffected by somatosensory stimulation. The data suggest that somatosensory stimulation interferes with the processing of highly automated open-loop motor output at the stimulated limb, as reflected by tapping movements, but not with the processing of closed-loop motor performance, as reflected by reach-to-grasp movements.
机译:在健康的人中,体细胞电刺激可以调节对侧皮质运动区域的兴奋性。这是否与运动性能的变化有关的问题仍在争论中。在14位健康的右撇子受试者中研究了电体感刺激对手部运动表现的影响。受试者在(基线状态)之前和每2小时进行电气体感刺激(2次电刺激10小时(5 Hz,10 Hz,1 ms的训练)后,每只手均进行食指和手的敲击动作以及向大,小立方体的触手可及的动作) (i)右正中神经,(ii)左正中神经,(iii)右胫骨神经(控制刺激)和(iv)左胫骨以1 Hz的持续时间,其强度平均比个体体感阈值高60%神经(控制刺激),间隔至少一周。会议的顺序在各个科目之间保持平衡。与基线相比,对正中神经而不是对胫神经的体感刺激减少了食指和被敲打手的敲击动作的频率和速度。相比之下,触手可及运动的运动学仍然不受体感刺激的影响。数据表明,体感刺激会干扰拍打动作所反映的受刺激肢体的高度自动化开环电机输出的处理,而不会影响到达到抓握运动所反映的闭环电机性能的处理。 。

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