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在行为感觉运动条件反射过程中,灵长类动物纹状体中紧张性活动神经元的反应会发生系统性变化。

Responses of tonically active neurons in the primate's striatum undergo systematic changes during behavioral sensorimotor conditioning.

作者信息

Aosaki T, Tsubokawa H, Ishida A, Watanabe K, Graybiel A M, Kimura M

机构信息

Jichi Medical School, Department of Physiology, Tochigi, Japan.

出版信息

J Neurosci. 1994 Jun;14(6):3969-84. doi: 10.1523/JNEUROSCI.14-06-03969.1994.

Abstract

The basal ganglia have been implicated in motor planning and motor learning. In the study reported here, we directly tested for response plasticity in striatal neurons of macaque monkeys undergoing Pavlovian conditioning. To focus the study, we recorded from the tonically active neurons (TANs) of the striatum, which are known to respond to conditioned sensory stimuli that signal reward delivery and elicit behavioral reactions. The activities of 858 TANs were recorded extracellularly from the striatum in alert behaving macaque monkeys before, during, and after the acquisition of a classical conditioning task. Two monkeys were trained to lick reward juice delivered on a spoon simultaneously with the presentation of a click. Almost no licks were triggered by the cues at the start of training, but by the fifth day more than 90% of licks were triggered, and values were near 100% for the remainder of the 3 week training period. In the striatum, only a small number of TANs responded to the clicks at the start before conditioning (about 17%). During training, the numbers of responding TANs gradually increased, so that by the end of training more than 50-70% of the TANs recorded (51.3-73.5%) became responsive to the clicks. The responses consisted of a pause in firing that occurred approximately 90 msec after the click and that was in some cells preceded by a brief activation and in most cells was followed by a rebound excitation. Prolonged recordings from single TANs (n = 6) showed that individual TANs can acquire a conditioned response within at least as short a time as 10 min. TANs retained such responsiveness after overtraining, and also after a 4 week intermission in training. When the monkey was trained to receive rewards in relation to a new conditioning stimulus, TANs were capable of switching their sensory response to the new stimulus. Histological reconstruction showed that the TANs that became responsive were broadly distributed in the region of striatum explored, which included the dorsal half to two-thirds of the caudate nucleus and putamen over a large anteroposterior span. We conclude that, during the acquisition of a sensorimotor association, TANs widely distributed through the striatum become responsive to sensory stimuli that induce conditioned behavior. This distributed change in activity could serve to modulate the activity of surrounding projection neurons in the striatum engaged in mediating learned behavior.

摘要

基底神经节与运动规划和运动学习有关。在本文报道的研究中,我们直接测试了接受巴甫洛夫条件反射训练的猕猴纹状体神经元的反应可塑性。为了聚焦研究,我们记录了纹状体的紧张性活动神经元(TANs),已知这些神经元对预示奖励发放并引发行为反应的条件感觉刺激有反应。在一只清醒的猕猴执行经典条件反射任务的过程中,于训练前、训练期间和训练后,从纹状体细胞外记录了858个TANs的活动。两只猴子经过训练后,在听到咔哒声的同时舔食勺子上提供的奖励果汁。训练开始时,提示几乎不会引发舔舐行为,但到第5天,超过90%的舔舐行为由提示引发,在为期三周的训练期剩余时间里,这一比例接近100%。在纹状体中,训练前只有少数TANs对咔哒声有反应(约17%)。在训练过程中,有反应的TANs数量逐渐增加,因此到训练结束时,记录到的TANs中有超过50 - 70%(51.3 - 73.5%)对咔哒声有反应。这些反应包括在咔哒声后约90毫秒出现的放电暂停,在一些细胞中,放电暂停之前有短暂的激活,而在大多数细胞中,放电暂停之后有反弹兴奋。对单个TANs(n = 6)的长时间记录表明,单个TANs至少能在10分钟这么短的时间内获得条件反应。在过度训练后以及训练中断4周后,TANs仍保持这种反应性。当猴子接受与新的条件刺激相关的奖励训练时,TANs能够将其感觉反应切换到新的刺激上。组织学重建显示,产生反应的TANs广泛分布在所探索的纹状体区域,包括尾状核和壳核背侧的一半到三分之二,前后跨度较大。我们得出结论,在获得感觉运动关联期间,广泛分布于纹状体的TANs对诱导条件行为的感觉刺激产生反应。这种活动的分布式变化可能有助于调节纹状体中参与介导学习行为的周围投射神经元的活动。

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