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可卡因对从下丘脑和边缘系统结构记录的感觉诱发电位的影响。

Effects of cocaine on sensory evoked potentials recorded from hypothalamus and limbic structures.

作者信息

Dafny N, Gonzalez L P, Altshuler H L

机构信息

Department of Neurobiology and Anatomy, University of Texas Medical School, Houston.

出版信息

Prog Neuropsychopharmacol. 1979;3(4):353-60. doi: 10.1016/0364-7722(79)90046-8.

Abstract
  1. The present investigation was intended to examine the effects of the acute administration of several doses of cocaine on sensory evoked responses of freely moving rats. 2. Each structure and each component of the average sensory evoked potentials were affected by cocaine differently. 3. The changes induced by cocaine differ from those observed following other drug treatments. Therefore, it may be assumed that the changes observed are related directly to cocaine. 4. The present observation demonstrated a greater degree of sensitivity to low doses of cocaine than other types of electrophysiological recordings. In general cocaine in the lower doses (0.25 or 0.5 mg/kg) induced an increase in the sensory amplitude response while in the highest dose (10.0 mg/kg) attenuation of the sensory responses was obtained. 5. We assume that the euphoric effect induced by cocaine is due to the potentiation of sensory input within the limbic-hypothalamic system. In higher doses, the fatality caused by the drug may be due to the depression of the sensory input.
摘要
  1. 本研究旨在考察急性给予不同剂量可卡因对自由活动大鼠感觉诱发电位的影响。2. 可卡因对平均感觉诱发电位的每个结构和每个成分的影响各不相同。3. 可卡因引起的变化与其他药物治疗后观察到的变化不同。因此,可以假设观察到的变化与可卡因直接相关。4. 本观察结果表明,与其他类型的电生理记录相比,对低剂量可卡因的敏感性更高。一般来说,较低剂量(0.25或0.5毫克/千克)的可卡因会导致感觉幅度反应增加,而在最高剂量(10.0毫克/千克)时则会出现感觉反应减弱。5. 我们假设可卡因引起的欣快感是由于边缘 - 下丘脑系统内感觉输入的增强。在较高剂量下,药物导致的死亡可能是由于感觉输入的抑制。

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