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不同类别抗精神病药物对大鼠皮层电图频谱功率的影响。

Electrocortical spectrum power effects of different classes of neuroleptics in rats.

作者信息

Bagetta G, Corasaniti M T, Strongoli M C, Sakurada S, Nisticò G

出版信息

J Psychiatr Res. 1987;21(1):93-9. doi: 10.1016/0022-3956(87)90009-4.

Abstract

In freely moving rats the effects on behaviour and ECoG spectrum power of different classes of neuroleptics (phenothiazines, butyrophenones and benzamides) after systemic and intraventricular administration were studied. Chlorpromazine and haloperidol given systemically or microinjected into the third cerebral ventricle produced behavioural and ECoG slow-wave sleep (SWS) accompanied by a significant increase in ECoG total voltage power as well as in the lower frequency bands; haloperidol was found to be more powerful in inducing behavioural and SWS. In contrast, equimolar doses of 1-sulpiride given systemically or higher doses microinjected into the third cerebral ventricle did not produce significant behavioural and ECoG changes. Thus, the present experiments confirm that neuroleptic drugs may possess a different ECoG profile depending on their structure and provide further evidence concerning the role played by dopaminergic mechanisms in the control of sleep-arousal.

摘要

在自由活动的大鼠中,研究了全身给药和脑室内给药后不同种类抗精神病药物(吩噻嗪类、丁酰苯类和苯甲酰胺类)对行为和脑电图(ECoG)频谱功率的影响。全身给药或微量注射到第三脑室的氯丙嗪和氟哌啶醇会产生行为变化和脑电图慢波睡眠(SWS),同时脑电图总电压功率以及低频带功率显著增加;发现氟哌啶醇在诱导行为变化和慢波睡眠方面作用更强。相比之下,全身给予等摩尔剂量的舒必利或向第三脑室微量注射更高剂量的舒必利,并未产生显著的行为和脑电图变化。因此,本实验证实抗精神病药物可能因其结构不同而具有不同的脑电图特征,并为多巴胺能机制在睡眠-觉醒控制中的作用提供了进一步的证据。

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