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肌肉的磁刺激可诱发脑电位。

Magnetic stimulation of muscle evokes cerebral potentials.

作者信息

Zhu Y, Starr A

机构信息

Department of Neurology, University of California-Irvine 92717.

出版信息

Muscle Nerve. 1991 Aug;14(8):721-32. doi: 10.1002/mus.880140806.

Abstract

Somatosensory evoked potentials (SEPs) were recorded from the scalp in man to magnetic stimulation of various skeletal muscles. The potentials consisted of several components, the earliest of which decreased in latency as the stimulated site moved rostrally, ranging from 46 msec for stimulation of the gastrocnemius, to 14 msec for stimulation of the deltoid. Experiments were performed to distinguish the mechanisms by which magnetic stimulation of the muscle was effective in evoking these cerebral potentials. For the gastrocnemius, the intensity of the magnetic stimulus needed for evoking cerebral potentials was less than that required for activating mixed or sensory nerves in proximity to the muscle belly (eg, posterior tibial nerve in the popliteal fossa, sural nerve at the ankle). Vibration of the muscle or passive lengthening of the muscle, procedures which activate muscle spindles, were accompanied by a significant attenuation of the potentials evoked by magnetic stimulation of the muscle. Anesthesia of the skin underlying the stimulating coil had no effect on the latency or amplitude of the early components of the magnetically evoked potentials, whereas electrically evoked potentials from skin electrodes were abolished. Thus, the cerebral potentials accompanying magnetic stimulation of the muscle appear to be due to activation of muscle afferents. We suggest that magnetic stimulation of muscle can provide a relatively simple method for quantifying the function of muscle afferents originating from a wide variety of skeletal musculature.

摘要

在人体中,通过对各种骨骼肌进行磁刺激,从头皮记录体感诱发电位(SEPs)。这些电位由几个成分组成,其中最早出现的成分的潜伏期随着刺激部位向头侧移动而缩短,从刺激腓肠肌时的46毫秒到刺激三角肌时的14毫秒不等。进行了实验以区分肌肉磁刺激有效诱发这些脑电位的机制。对于腓肠肌,诱发脑电位所需的磁刺激强度小于激活肌肉肌腹附近的混合神经或感觉神经(例如,腘窝处的胫后神经、踝关节处的腓肠神经)所需的强度。肌肉振动或肌肉被动拉长(激活肌梭的操作)伴随着肌肉磁刺激诱发的电位显著衰减。刺激线圈下方皮肤的麻醉对磁诱发电位早期成分的潜伏期或幅度没有影响,而皮肤电极的电诱发电位则消失。因此,伴随肌肉磁刺激的脑电位似乎是由于肌肉传入神经的激活。我们认为,肌肉磁刺激可以提供一种相对简单的方法来量化源自各种骨骼肌的肌肉传入神经的功能。

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