作为奖励相关信号的皮质纹状体贝塔振荡

IF 2.5 3区 医学 Q2 BEHAVIORAL SCIENCES
M F Koloski, S Hulyalkar, S A Barnes, J Mishra, D S Ramanathan
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引用次数: 0

摘要

与奖励相关的价值对外部因素很敏感,例如选择与奖励交付之间的时间间隔,这在时间折扣任务中是经典的操作方法。对两种奖励选择的主观偏好取决于奖励幅度和奖励延迟等客观变量。在腹侧纹状体、眼眶和内侧前额叶皮层等区域观察到了奖励价值的单神经元相关性。大脑成像研究显示,皮质纹状体-边缘网络活动与主观偏好有关。为了探索振荡动态如何代表跨脑区的奖赏处理,我们测量了大鼠执行时间折扣任务时的局部场电位。我们的目标是使用数据驱动的方法找出与奖赏偏好相关的电生理标记。我们发现,β频率的奖赏锁定振荡是奖赏幅度的信号,并随着时间延迟的延长而衰减。眶额叶/内侧前额叶皮层、岛叶前部、腹侧纹状体和杏仁核的电极在奖励结果期间的功率分别增加,并且在功能上与β频率相连。奖励结果时的β功率与贴现行为的计算模型所定义的主观价值相关。这些数据表明,皮质纹状体贝塔振荡是一种相关的奖励信号,它可能代表主观价值,并有可能成为一种生物标记和潜在的治疗目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cortico-striatal beta oscillations as a reward-related signal.

Cortico-striatal beta oscillations as a reward-related signal.

The value associated with reward is sensitive to external factors, such as the time between the choice and reward delivery as classically manipulated in temporal discounting tasks. Subjective preference for two reward options is dependent on objective variables of reward magnitude and reward delay. Single neuron correlates of reward value have been observed in regions, including ventral striatum, orbital, and medial prefrontal cortex. Brain imaging studies show cortico-striatal-limbic network activity related to subjective preferences. To explore how oscillatory dynamics represent reward processing across brain regions, we measured local field potentials of rats performing a temporal discounting task. Our goal was to use a data-driven approach to identify an electrophysiological marker that correlates with reward preference. We found that reward-locked oscillations at beta frequencies signaled the magnitude of reward and decayed with longer temporal delays. Electrodes in orbitofrontal/medial prefrontal cortex, anterior insula, ventral striatum, and amygdala individually increased power and were functionally connected at beta frequencies during reward outcome. Beta power during reward outcome correlated with subjective value as defined by a computational model fit to the discounting behavior. These data suggest that cortico-striatal beta oscillations are a reward signal correlated, which may represent subjective value and hold potential to serve as a biomarker and potential therapeutic target.

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来源期刊
CiteScore
5.00
自引率
3.40%
发文量
64
审稿时长
6-12 weeks
期刊介绍: Cognitive, Affective, & Behavioral Neuroscience (CABN) offers theoretical, review, and primary research articles on behavior and brain processes in humans. Coverage includes normal function as well as patients with injuries or processes that influence brain function: neurological disorders, including both healthy and disordered aging; and psychiatric disorders such as schizophrenia and depression. CABN is the leading vehicle for strongly psychologically motivated studies of brain–behavior relationships, through the presentation of papers that integrate psychological theory and the conduct and interpretation of the neuroscientific data. The range of topics includes perception, attention, memory, language, problem solving, reasoning, and decision-making; emotional processes, motivation, reward prediction, and affective states; and individual differences in relevant domains, including personality. Cognitive, Affective, & Behavioral Neuroscience is a publication of the Psychonomic Society.
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