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人体表皮内电刺激诱发的疼痛相关磁场。

Pain-related magnetic fields evoked by intra-epidermal electrical stimulation in humans.

作者信息

Inui Koji, Tran Tuan Diep, Qiu Yunhai, Wang Xiaohong, Hoshiyama Minoru, Kakigi Ryusuke

机构信息

Department of Integrative Physiology, National Institute for Physiological Sciences, Myodaiji, 444-8585, Okazaki, Japan.

出版信息

Clin Neurophysiol. 2002 Feb;113(2):298-304. doi: 10.1016/s1388-2457(01)00734-9.

Abstract

OBJECTIVES

We recently developed a new method for the preferential stimulation of Adelta fibers in humans. The aim of the present study was to examine whether this method can serve as an appropriate stimulus in a magnetoencephalographic study.

METHODS

We recorded somatosensory-evoked magnetic fields (SEFs) following intra-epidermal electrical stimulation applied to the hand and elbow. Superficial parts of the skin were electrically stimulated through a needle electrode whose tip was inserted in the epidermis.

RESULTS

In all 13 subjects, the equivalent current dipole was estimated in the secondary somatosensory cortices (SII). In 5 out of 13 subjects, simultaneous activation of the primary somatosensory cortex (SI) in the hemisphere contralateral to the stimulation was identified. The mean peak latencies of magnetic fields corresponding to contralateral SI, SII and ipsilateral SII activation following hand stimulation were 162, 158 and 171 ms, respectively. The respective latency following elbow stimulation was 137, 139 and 157 ms, respectively. Estimated peripheral conduction velocity was 15.6m/s.

CONCLUSIONS

All the results were consistent with previous findings in pain SEF studies. We concluded that our novel intra-epidermal electrical stimulation is useful for pain SEF studies since it does not need special equipment and is easy to control.

摘要

目的

我们最近开发了一种在人体中优先刺激Aδ纤维的新方法。本研究的目的是检验该方法是否可作为脑磁图研究中的合适刺激。

方法

我们记录了对手部和肘部进行表皮内电刺激后的体感诱发磁场(SEF)。通过将针电极尖端插入表皮来对皮肤表层进行电刺激。

结果

在所有13名受试者中,在次级体感皮层(SII)中估计出等效电流偶极。在13名受试者中的5名中,发现刺激对侧半球的初级体感皮层(SI)同时被激活。手部刺激后,对应对侧SI、SII和同侧SII激活的磁场平均峰值潜伏期分别为162、158和171毫秒。肘部刺激后的相应潜伏期分别为137、139和157毫秒。估计外周传导速度为15.6米/秒。

结论

所有结果均与先前疼痛SEF研究的结果一致。我们得出结论,我们新颖的表皮内电刺激对疼痛SEF研究有用,因为它不需要特殊设备且易于控制。

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