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KMID : 0358619920260010075
Korean Journal of Physiology
1992 Volume.26 No. 1 p.75 ~ p.88
Electrophysiological Study on Medullospinal Tract Cells Related to Somatosympathetic Reflex in the Cat
Kim Sang-Jeong

Goo Yong-Sook
Kim Jun
Abstract
It is well established that neurons in ventrolateral medulla play a key role in determining the vasomotor tone. The purpose of present study is to identify sympathetic related, medullospinal tract neurons in ventrolateral medulla and to show that these mediate somato-sympathetic reflex. Medullospinal tract cells were identified by antidromic stimulation to intermediolateral nucleus (IML) of the second thoracic () spinal cord in anesthetized cats. Peripheral nerves were stimulated for orthodromic activation of these cells and peripheral receptive fields were determined. Post R wave histogram of unit and spike triggered averaging of sympathetic nerve discharge (SND) were used to define sympathetic related cell. A total of 113 neurons was recorded in ventrolateral medulla that had the axonal projections to spinal cord. Thirty four of these medullospinal cells showed spontaneous discharges and the others not. Between these two groups, rostro-caudal coordinate of the distribution from obex [ (mean S.E.) mm, 4.1 0.1 mm], depth from dorsal surface ( and conduction velocity () were significantly different (p<0.05). In spontaneously discharging group, characteristics of rostral and caudal groups were significantly different and we demonstrated that cells in rostral group mediate somatosympathetic reflex. From these results, we conclude that a certain portion of spontaneously discharging medullospinal tract cells in rostral ventrolateral medulla comprise the efferent outputs of somatosympathetic reflex to sympathetic preganglion neurons.
KEYWORD
Medullospinal tract cell, Rostral ventrolateral medulla, Somato-sympathetic reflex, Post R wave unit interval histogram, Spike triggered averaging of sympathetic nerve dischange
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