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运动控制:身体资源分配、情绪和信心背后的计算过程。

Emotor control: computations underlying bodily resource allocation, emotions, and confidence.

作者信息

Kepecs Adam, Mensh Brett D

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, USA.

Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia, USA.

出版信息

Dialogues Clin Neurosci. 2015 Dec;17(4):391-401. doi: 10.31887/DCNS.2015.17.4/akepecs.

Abstract

Emotional processes are central to behavior, yet their deeply subjective nature has been a challenge for neuroscientific study as well as for psychiatric diagnosis. Here we explore the relationships between subjective feelings and their underlying brain circuits from a computational perspective. We apply recent insights from systems neuroscience-approaching subjective behavior as the result of mental computations instantiated in the brain-to the study of emotions. We develop the hypothesis that emotions are the product of neural computations whose motor role is to reallocate bodily resources mostly gated by smooth muscles. This "emotor" control system is analagous to the more familiar motor control computations that coordinate skeletal muscle movements. To illustrate this framework, we review recent research on "confidence." Although familiar as a feeling, confidence is also an objective statistical quantity: an estimate of the probability that a hypothesis is correct. This model-based approach helped reveal the neural basis of decision confidence in mammals and provides a bridge to the subjective feeling of confidence in humans. These results have important implications for psychiatry, since disorders of confidence computations appear to contribute to a number of psychopathologies. More broadly, this computational approach to emotions resonates with the emerging view that psychiatric nosology may be best parameterized in terms of disorders of the cognitive computations underlying complex behavior.

摘要

情感过程是行为的核心,但它们高度主观的性质对神经科学研究以及精神病学诊断来说都是一项挑战。在此,我们从计算的角度探讨主观感受与其潜在脑回路之间的关系。我们将系统神经科学的最新见解——即将主观行为视为大脑中实例化的心理计算结果——应用于情感研究。我们提出一个假说,即情感是神经计算的产物,其运动作用是重新分配主要由平滑肌控制的身体资源。这个“情感运动”控制系统类似于更为人熟知的协调骨骼肌运动的运动控制计算。为了阐释这个框架,我们回顾了近期关于“信心”的研究。尽管信心作为一种感觉为人所熟知,但它也是一个客观的统计量:对一个假设正确概率的估计。这种基于模型的方法有助于揭示哺乳动物决策信心的神经基础,并为人类信心的主观感受搭建起一座桥梁。这些结果对精神病学具有重要意义,因为信心计算障碍似乎与多种精神病理学有关。更广泛地说,这种情感计算方法与一种新出现的观点相呼应,即精神疾病分类学或许最好根据复杂行为背后的认知计算障碍来进行参数化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffcf/4734877/e23755730087/DialoguesClinNeurosci-17-391-g001.jpg

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