Changes in excitability of amygdaloid and septal nuclei induced by medazepam hydrochloride.

G Stock, H Heinemann, F Bergande
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Abstract

Electrical stimulations of the central and basolateral part of the amygdaloid complex and of the septum in freely moving cats elicit changes in arterial pressure (i.e., an increase in pressure during stimulation of the central part of the amygdala, and a decrease followed by an increase during stimulation of the basolateral part of the amygdala and of the septum). These changes within the cardiovascular system are followed by rage reactions when the central part of the amygdala is stimulated, defense patterns when the basolateral part of the amygdala is stimulated, and pitiful mewing as a result of septal stimulation. Medazepam hydrochloride in a dose of approximately 15 mg/kg i.v. given over a period of 3 h, in order to maintain constant blood levels of the drug, attenuated slightly the cardiovascular reactions and elevated markedly the thresholds for psychomotoric behavior. The latencies between the onset of electrical stimulation and the beginning of the increase in arterial pressure were only slightly increased, whereas the latencies for spychomotoric behavior were markedly prolonged due to drug application. The data support the view that medazepam hydrochloride exerts depressant effects on the limbic-hypothalamic level with respect to psychomotoric responses. The effect was not identical for all nuclei tested. The basolateral part of the amygdala was significantly less sensitive to medazepam hydrochloride than the central part of the amygdala.

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盐酸美达西泮对杏仁核和隔核兴奋性的影响。
电刺激自由运动的猫的杏仁核复合体的中央和基底外侧部分以及隔引起动脉压力的变化(即,在刺激杏仁核的中央部分时压力升高,在刺激杏仁核的基底外侧部分和隔时压力先降低后升高)。当杏仁核的中央部分受到刺激时,心血管系统的这些变化会引起愤怒反应,当杏仁核的基底外侧部分受到刺激时,会产生防御模式,并且由于中隔刺激而产生可怜的喵叫。盐酸美达西泮剂量约为15mg /kg,静脉注射3小时,以维持药物的恒定血药浓度,可轻微减轻心血管反应,并显著提高精神运动行为的阈值。电刺激开始和动脉压开始升高之间的潜伏期仅轻微增加,而运动行为的潜伏期由于药物应用而明显延长。这些数据支持盐酸美达西泮对边缘-下丘脑水平的精神运动反应有抑制作用的观点。并不是所有的核试验都有相同的效果。杏仁核基底外侧对盐酸美达西泮的敏感性明显低于杏仁核中部。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Biochemical background for clinical drug effect Long term effects of psychotropic drugs Social implications of psychopharmacology Straiatum and neuroleptics Biochemical findings in mental illness. Affective disorders
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