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大鼠大脑皮层SI区神经元对电针和手针的反应特性
引用本文:袁斌 庞天赐. 大鼠大脑皮层SI区神经元对电针和手针的反应特性[J]. 针刺研究, 1991, 16(2): 79-86
作者姓名:袁斌 庞天赐
作者单位:西安医科大学神经生理研究室,西安医科大学计算中心,西安医科大学神经生理研究室
摘    要:<正> 人们早已知道,电针穴位可以在大脑皮层体感区引起诱发电位,据此许多研究者相信,针感的产生和大脑皮层有密切关系。近年来的研究进一步表明,皮层体感区(SⅠ区和 SⅡ区)对许多皮层下核团中神经元的伤害性反应具有下行调制作用。有的作者指出,针刺穴位激活皮层神经元,

关 键 词:手针 电针 神经元 大脑皮层

Response properties of SI cortical neurons to electro-acupuncture and manual acupuncture in the rat
B Yuan,T Pang,X Liu. Response properties of SI cortical neurons to electro-acupuncture and manual acupuncture in the rat[J]. Acupuncture research, 1991, 16(2): 79-86
Authors:B Yuan  T Pang  X Liu
Affiliation:Research Laboratory of Neurophysiology, Xi'an Medical University.
Abstract:Single SI cortical neurons were recorded extracellularly with glass micropipettes, and their response properties to electro-acupuncture (EA) of contralateral Tsusanli (St. 36) and Fenglung (St. 40), or to manual acupuncture (MA) of Tsusanli were observed in unanesthetized and paralyzed rats. In 46 rats, a total of 474 neurons were isolated in the hindlimb representation area of SI cortex. Among these neurons, 228 responded to peripheral mechanical stimulation, and could be classified as cutaneous neurons, deep neurons and cutaneous-deep convergent neurons. Thirty five of them were identified as nociceptive neurons. Neurons of various sensory neurons and with receptive fields (RFs) located in the contralateral hindlimb responded to EA. Significant difference (P less than 0.01) existed between the stimulation thresholds of cutaneous neurons (2.39 +/- 0.27V) and those of deep neurons (4.12 +/- 0.48V). There was no significant difference between the thresholds of nociceptive and non-nociceptive neurons. The typical response of SI neurons to single EA stimulation consisted of early discharges with a latency of 11.57 +/- 0.39 msec and late train discharges with a latency of 54.79 +/- 4.07 msec. A period of inhibition frequently intervened between the two groups of discharges. In a small portion of neurons, only a period of inhibition was produced. The responsiveness of neurons decreased markedly when the frequency of repeated EA stimulation was increased from 1 Hz to 50 Hz. Neurons of various sensory modalities responded to MA as well. Judging by RF distribution of the responsive neurons, however, the extent of action of MA was smaller than that of EA.(ABSTRACT TRUNCATED AT 250 WORDS)
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