The electrophysiological relationships between motor cortex, spinal cord and leg peripheral nerves evoked by startle sound stimuli using rats

Fumitaka Aki, Takuya Kemmoku, Tatsuhiro Kimura, Y. Kageyama, H. Ohshima, N. Kanai, K. Okamoto, K. Yamazaki, Hiroyuki Tadokoro
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Abstract

As a basic experiment for the development of neuromotor prostheses (NMPs), movement related neural signals were measured using rats. The electrodes were surgically implanted in the motor cortex, spinal cord, sciatic, and femoral nerves. The measurements were carried out under two conditions, which were voluntary movement and involuntary motion evoked by startle auditory stimuli. Obtained signal waveforms under two separate conditions were compared and analyzed. In both conditions, a descending transmitting signal was observed. However, remarkable readiness activity of the motor cortex was not seen in both cases with a 5 times averaging. Using our experimental model, neurophysiological characteristics of motor generation were revealed. Based upon these findings, the possibility of new NMPs for the disabled was discussed.
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惊吓声刺激诱发大鼠运动皮层、脊髓和腿部周围神经的电生理关系
作为开发神经运动假体(nmp)的基础实验,采用大鼠测量运动相关神经信号。电极通过手术植入运动皮层、脊髓、坐骨神经和股神经。测量在两种情况下进行,即由惊吓听觉刺激引起的自主运动和非自主运动。对两种不同条件下得到的信号波形进行了比较分析。在这两种情况下,发射信号都呈下降趋势。然而,运动皮层在两种情况下都没有明显的准备活动,平均为5倍。利用实验模型,揭示了运动产生的神经生理特征。基于这些发现,讨论了新的残疾人nmp的可能性。
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