首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Signaling Incentive and Drive in the Primate Ventral Pallidum for Motivational Control of Goal-Directed Action
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Signaling Incentive and Drive in the Primate Ventral Pallidum for Motivational Control of Goal-Directed Action

机译:信令激励和驱动在灵长类动物的腹侧苍白,用于目标导向行动的励志控制

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摘要

Processing incentive and drive is essential for control of goal-directed behavior. The limbic part of the basal ganglia has been emphasized in these processes, yet the exact neuronal mechanism has remained elusive. In this study, we examined the neuronal activity of the ventral pallidum (VP) and its upstream area, the rostromedial caudate (rmCD), while two male macaque monkeys performed an instrumental lever release task in which a visual cue indicated the forthcoming reward size. We found that the activity of some neurons in VP and rmCD reflected the expected reward size transiently following the cue. Reward size coding appeared earlier and stronger in VP than in rmCD. We also found that the activity in these areas was modulated by the satiation level of monkeys, which also occurred more frequently in VP than in rmCD. The information regarding reward size and satiation level was independently signaled in the neuronal populations of these areas. The data thus highlighted the neuronal coding of key variables for goal-directed behavior in VP. Furthermore, pharmacological inactivation of VP induced more severe deficit of goal-directed behavior than inactivation of rmCD, which was indicated by abnormal error repetition and diminished satiation effect on the performance. These results suggest that VP encodes incentive value and internal drive and plays a pivotal role in the control of motivation to promote goal-directed behavior.
机译:处理激励和驱动对于控制目标定向行为至关重要。在这些过程中强调了基础神经节的肢体部分,但确切的神经元机制仍然难以捉摸。在这项研究中,我们研究了腹侧苍白(VP)的神经元活动及其上游区域,柱状尾部(RMCD),而两个雄猕猴猴子进行了仪器杠杆释放任务,其中视觉提示表明即将到来的奖励大小。我们发现,VP和RMCD中一些神经元的活动反映了在提示之后暂时的预期奖励规模。奖励大小编码早期出现,VP中的比在RMCD中更强大。我们还发现,这些区域的活动由猴子的饱结水平调制,其在VP中也比在RMCD中更频繁地发生。关于奖励规模和饱诉水平的信息在这些区域的神经元群体中独立地发出信号。因此,数据突出显示VP中的目标定向行为的关键变量的神经元编码。此外,VP的药理失活比RMCD的失活诱导靶向行为的更严重的缺陷,这是通过异常误差重复和减少对性能的饱和效应减少。这些结果表明,VP编码激励价值和内部驱动,并在控制动机方面发挥关键作用,以促进目标定向行为。

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