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Differences between Dorsal and Ventral Striatum in the Sensitivity of Tonically Active Neurons to Rewarding Events

机译:活跃的神经元对奖励事件敏感性的背侧和腹侧纹状体之间的差异

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摘要

Within the striatum, cholinergic interneurons, electrophysiologically identified as tonically active neurons (TANs), represent a relatively homogeneous group in terms of their functional properties. They display typical pause in tonic firing in response to rewarding events which are of crucial importance for reinforcement learning. These responses are uniformly distributed throughout the dorsal striatum (i.e., motor and associative striatum), but it is unknown, at least in monkeys, whether differences in the modulation of TAN activity exist in the ventral striatum (i.e., limbic striatum), a region specialized for processing of motivational information. To address this issue, we examined the activity of dorsal and ventral TANs in two monkeys trained on a Pavlovian conditioning task in which a visual stimulus preceded the delivery of liquid reward by a fixed time interval. We found that the proportion of TANs responding to the stimulus predictive of reward did not vary significantly across regions (58%–80%), whereas the fraction of TANs responding to reward was higher in the limbic striatum (100%) compared to the motor (65%) and associative striatum (52%). By examining TAN modulation at the level of both the population and the individual neurons, we showed that the duration of pause responses to the stimulus and reward was longer in the ventral than in the dorsal striatal regions. Also, the magnitude of the pause was greater in ventral than dorsal striatum for the stimulus predictive of reward but not for the reward itself. We found similar region-specific differences in pause response duration to the stimulus when the timing of reward was less predictable (fixed replaced by variable time interval). Regional variations in the duration and magnitude of the pause response were transferred from the stimulus to reward when reward was delivered in the absence of any predictive stimulus. It therefore appears that ventral TANs exhibit stronger responses to rewarding stimuli, compared to dorsal TANs. The high proportion of responsive neurons, combined with particular response features, support the notion that the ventral TAN system can be driven by specific synaptic inputs arising from afferent sources distinct from those targeting the dorsal TAN system.
机译:在纹状体中,胆碱能中间神经元在电生理学上被确定为声活动神经元(TANs),就其功能性质而言,代表了一个相对均一的基团。它们表现出典型的补药射击停顿,以响应奖励事件,这对于强化学习至关重要。这些反应均匀地分布在整个背侧纹状体(即运动和相关性纹状体)中,但至少在猴子中,在腹侧纹状体(即边缘纹状体)区域是否存在TAN活性的调节差异尚不清楚。专门用于处理激励信息。为了解决这个问题,我们检查了两只接受巴甫洛夫式调节任务训练的猴子的背侧和腹侧TAN的活动,在这些猴子中,视觉刺激先于固定时间间隔传递液体奖励。我们发现,响应于奖励刺激的TAN比例在各地区之间没有显着差异(58%–80%),而边缘纹状体中响应奖励的TAN比例高于运动者(100%) (65%)和相关纹状体(52%)。通过在人群和单个神经元的水平上检查TAN调制,我们表明对腹部的刺激和奖赏暂停反应的持续时间长于背侧纹状体区域。同样,对于奖励的刺激预测,腹侧的停顿幅度大于背侧纹状体,但对于奖励本身而言则不然。当奖励的时机较难预测时(固定为可变的时间间隔),我们发现在刺激的暂停反应持续时间方面存在类似的区域特定差异。在没有任何预期刺激的情况下提供奖励时,暂停响应的持续时间和幅度的区域变化会从刺激转移为奖励。因此,与背侧TAN相比,腹侧TAN表现出对奖励刺激的更强响应。高比例的响应神经元与特定的响应功能相结合,支持以下观点:腹侧TAN系统可以由特定的突触输入驱动,这些突触输入来自与针对背侧TAN系统的传入源不同的传入源。

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