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氟哌啶醇引起的条件性回避反应破坏:预先训练或抗胆碱能药物的减弱作用。

Haloperidol-induced disruption of conditioned avoidance responding: attenuation by prior training or by anticholinergic drugs.

作者信息

Fibiger H C, Zis A P, Phillips A G

出版信息

Eur J Pharmacol. 1975 Feb;30(2):309-14. doi: 10.1016/0014-2999(75)90114-4.

Abstract

Rats injected daily with haloperidol (0.15 mg/kg) failed to acquire a one-way avoidance response over a 9 day period (10 trails/day). When these animals were subsequently tested without haloperidol, on the first drug-free day they preformed as well as animals given saline throughout the training period and significantly better than naive saline-treated animals on the first day of training. The performance of rats which were trained for two days before receiving haloperidol was only partly blocked by the drug, while animals trained for 9 days before drug administration were immune to the disruptive effects. Three anticholinergic (muscarinic) drugs, atropine (10 mg/kg), scopolamine (1 mg/kg) and benztropine (2 mg/kg) significantly reversed the effect of haloperidol on the acquisition of the nigroneostriatal projection and support the view that this system is critically involved in the acquistion of learned instrumental responses. The nature of the avoidance deficit produced by these treatments is discussed with reference to the possibility that they selectively block the initiation of boluntary motor responses. According to this hypothesis, the failure of these teratments to disrupt escape responding may be due to the fact that the unconditioned stimulus generates reflexive motor responses (flinch, jump, etc.) which are sufficient to begin the motoric sequences that cannot be initiated voluntarily in response to the conditioned stimulus.

摘要

每天注射氟哌啶醇(0.15毫克/千克)的大鼠在9天时间里(每天10次试验)未能获得单向回避反应。当这些动物随后在不使用氟哌啶醇的情况下接受测试时,在第一个无药日,它们的表现与在整个训练期间给予生理盐水的动物一样好,并且在训练的第一天明显优于未经处理的生理盐水对照组动物。在接受氟哌啶醇之前训练两天的大鼠的表现仅部分受到药物的阻碍,而在给药前训练9天的动物则不受干扰作用的影响。三种抗胆碱能(毒蕈碱)药物,阿托品(10毫克/千克)、东莨菪碱(1毫克/千克)和苯海索(2毫克/千克)显著逆转了氟哌啶醇对黑质纹状体投射形成的影响,并支持这样一种观点,即该系统在习得性工具反应的形成中起关键作用。根据它们可能选择性地阻断自主运动反应启动的可能性,讨论了这些处理所产生的回避缺陷的性质。根据这一假设,这些处理未能干扰逃避反应可能是由于无条件刺激产生了反射性运动反应(退缩、跳跃等),这些反应足以启动无法对条件刺激自主启动的运动序列。

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