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行为奖励性下丘脑电刺激对清醒猴子运动皮层细胞内记录的神经元活动的影响。

Effects of behaviorally rewarding hypothalamic electrical stimulation on intracellularly recorded neuronal activity in the motor cortex of awake monkeys.

作者信息

Aou S, Oomura Y, Woody C D, Nishino H

机构信息

Department of Biological Control Systems, National Institute for Physiological Sciences, Okazaki, Japan.

出版信息

Brain Res. 1988 Jan 26;439(1-2):31-8. doi: 10.1016/0006-8993(88)91458-8.

Abstract

Effects of hypothalamic stimulation (HS) were studied in intracellular recordings obtained from 125 neurons of the motor cortex (MC). HS that was effective in reinforcing bar-press behavior, i.e. satisfactory for intracranial self-stimulation (ICSS), evoked short-latency (less than 3 ms) activation of these cortical neurons more frequently (42% of cells tested) than did HS that was ineffective in reinforcing bar-press behavior (7% of cells tested). Longer latency activation (greater than 3 ms) and inhibition (of variable onset) also occurred, but their incidence was not significantly different when HS was effective or ineffective in producing ICSS. Effects of HS that was effective in producing ICSS were also examined in 23 cells in which the spikes were followed by afterhyperpolarization (AHP) of 1.4-10 mV amplitude and 1.7-54 ms duration. The amplitudes of AHPs of greater than 8 ms duration were reduced after presentations of HSs that were effective as a reinforcer for ICSS. These results suggest that: (1) MC neurons receive reward-related hypothalamic information through pathways sufficiently direct to produce short-latency activation; and (2) a modulation of spike afterhyperpolarization can be observed in conjunction with reception of this information.

摘要

在下丘脑刺激(HS)对运动皮层(MC)125个神经元进行细胞内记录的研究中,观察到了其效应。对压杆行为有强化作用的HS,即对颅内自我刺激(ICSS)有效的HS,相较于对压杆行为无强化作用的HS,更频繁地(测试细胞中的42%)诱发这些皮层神经元的短潜伏期(小于3毫秒)激活(测试细胞中的7%)。也会出现更长潜伏期的激活(大于3毫秒)和抑制(起始时间可变),但当HS对产生ICSS有效或无效时,它们的发生率没有显著差异。在23个细胞中也研究了对产生ICSS有效的HS的效应,这些细胞的动作电位后跟随有幅度为1.4 - 10毫伏、持续时间为1.7 - 54毫秒的超极化后电位(AHP)。作为ICSS强化剂有效的HS呈现后,持续时间大于8毫秒的AHP幅度降低。这些结果表明:(1)MC神经元通过足够直接的通路接收与奖励相关的下丘脑信息,以产生短潜伏期激活;(2)在接收该信息的同时,可以观察到动作电位超极化后电位的调制。

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