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人类拇指在体感3b区的特定体感加工:一项神经磁学研究。

Specific somatosensory processing in somatosensory area 3b for human thumb: a neuromagnetic study.

作者信息

Tanosaki M, Hashimoto I, Iguchi Y, Kimura T, Takino R, Kurobe Y, Haruta Y, Hoshi Y

机构信息

Department of Psychophysiology, Tokyo Institute of Psychiatry, 2-1-8 Kamikitazawa, Setagaya-ku, 156-8585, Tokyo, Japan.

出版信息

Clin Neurophysiol. 2001 Aug;112(8):1516-22. doi: 10.1016/s1388-2457(01)00560-0.

Abstract

OBJECTIVES

We examined the relation between somatosensory N20m primary responses and high-frequency oscillations (HFOs) after thumb and middle finger stimulation.

METHODS

Somatosensory evoked fields (SEFs) from 12 subjects were measured following electric stimulation of the thumb and middle finger. SEFs were recorded with a wide bandpass (3-2000 Hz) and then N20m and HFOs were separated by subsequent 3-300 and 300-900 Hz bandpass filtering.

RESULTS

The N20m peak-to-peak amplitude did not differ significantly between thumb and middle finger SEFs. In contrast, HFOs had a significantly larger number of peaks and were higher in the maximum amplitude and the total amplitude after thumb stimulation than after middle finger stimulation.

CONCLUSIONS

Our present data demonstrate a different relation between N20m and HFOs after thumb and middle finger stimulation. In view of the fact that the human thumb has uniquely evolved functionally and morphologically, the somatosensory information from the thumb will be processed differently for a fine motor control. We speculate that HFOs are generated by inhibitory interneurons in layer 4 in area 3b. Thus, enhanced activity of interneurons reflected by high amplitude HFOs exerts stronger inhibition on downstream pyramidal cells in area 3b for thumb stimulation.

摘要

目的

我们研究了拇指和中指刺激后体感N20m主反应与高频振荡(HFOs)之间的关系。

方法

对12名受试者在拇指和中指电刺激后测量体感诱发电场(SEFs)。SEFs以宽带通(3 - 2000 Hz)记录,然后通过后续的3 - 300 Hz和300 - 900 Hz带通滤波分离出N20m和HFOs。

结果

拇指和中指SEFs之间的N20m峰峰值幅度无显著差异。相比之下,拇指刺激后的HFOs峰值数量显著更多,最大幅度和总幅度均高于中指刺激后。

结论

我们目前的数据表明拇指和中指刺激后N20m与HFOs之间存在不同的关系。鉴于人类拇指在功能和形态上独特进化,来自拇指的体感信息在精细运动控制中会得到不同处理。我们推测HFOs由3b区第4层的抑制性中间神经元产生。因此,高幅度HFOs反映的中间神经元活动增强对3b区下游锥体细胞在拇指刺激时施加更强的抑制作用。

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