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在人类决策过程中,β 和θ 脑电波在基底神经节和前额叶皮层中追踪努力程度和先前的奖励。

Beta and theta oscillations track effort and previous reward in the human basal ganglia and prefrontal cortex during decision making.

机构信息

Department of Neurology, University of California, San Francisco, CA 94143.

Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville, FL 32608.

出版信息

Proc Natl Acad Sci U S A. 2024 Jul 30;121(31):e2322869121. doi: 10.1073/pnas.2322869121. Epub 2024 Jul 24.

Abstract

Choosing whether to exert effort to obtain rewards is fundamental to human motivated behavior. However, the neural dynamics underlying the evaluation of reward and effort in humans is poorly understood. Here, we report an exploratory investigation into this with chronic intracranial recordings from the prefrontal cortex (PFC) and basal ganglia (BG; subthalamic nuclei and globus pallidus) in people with Parkinson's disease performing a decision-making task with offers that varied in levels of reward and physical effort required. This revealed dissociable neural signatures of reward and effort, with BG beta (12 to 20 Hz) oscillations tracking effort on a single-trial basis and PFC theta (4 to 7 Hz) signaling previous trial reward, with no effects of net subjective value. Stimulation of PFC increased overall acceptance of offers and sensitivity to reward while decreasing the impact of effort on choices. This work uncovers oscillatory mechanisms that guide fundamental decisions to exert effort for reward across BG and PFC, supports a causal role of PFC for such choices, and seeds hypotheses for future studies.

摘要

选择是否付出努力以获得奖励是人类动机行为的基础。然而,人类对奖励和努力的评估背后的神经动力学机制还知之甚少。在这里,我们通过对帕金森病患者进行一项决策任务的慢性颅内记录(前额叶皮层 [PFC] 和基底神经节 [BG];丘脑底核和苍白球)进行了探索性研究,该任务提供的奖励和体力消耗水平各不相同。这揭示了奖励和努力的可分离神经特征,BG 中的β波(12 到 20 赫兹)在单次试验的基础上追踪努力,而 PFC 中的θ波(4 到 7 赫兹)则预示着前一次试验的奖励,而没有净主观价值的影响。PFC 的刺激增加了对奖励的总体接受度和敏感性,同时降低了努力对选择的影响。这项工作揭示了在 BG 和 PFC 中指导为获得奖励而付出努力的基本决策的振荡机制,支持了 PFC 对这些决策的因果作用,并为未来的研究提出了假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0487/11295073/f070b9ca0d8d/pnas.2322869121fig01.jpg

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