控制圈:认知努力的神经起源

IF 5.1 1区 心理学 Q1 PSYCHOLOGY
Clay B Holroyd
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引用次数: 0

摘要

为什么有些智力活动比其他智力活动更难?对于这个问题的答案,争议之大令人吃惊。目前的理论认为,认知努力会带来计算上的好处,比如促使人们从奖励价值低的活动转向奖励价值高的其他活动。相比之下,在本文中,我将认知努力与大脑神经解剖学和神经生理学使某些神经状态比其他神经状态更节能这一事实联系起来。我提出了 "控制圈"(controllosphere)的概念,这是神经状态空间中与高控制相关的低能效区域,它围绕着众所周知的 "内在流形"(insrinsic manifold),这是一个与低控制相关的高能效子空间。将控制理论原理与认知控制的经典神经计算模型相结合,可以发现背外侧前额叶皮层(DLPFC)实现了一个控制器,可以将系统状态驱动到控制区域;前扣带回皮层(ACC)实现了一个观察器,可以监测受控系统的状态变化;认知努力反映了背外侧前额叶皮层和前扣带回皮层在控制和观察方面的能量不匹配。因此,认知努力与 DLPFC 控制信号的能量需求成比例,尤其是当控制的后果无法被 ACC 观察到时。此外,我还提出,通过控制圈的神经转换会导致神经废物的积累。因此,认知努力通过抑制长时间的高度控制来防止神经损伤。(PsycInfo Database Record (c) 2024 APA, 版权所有)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The controllosphere: The neural origin of cognitive effort.

Why do some mental activities feel harder than others? The answer to this question is surprisingly controversial. Current theories propose that cognitive effort affords a computational benefit, such as instigating a switch from an activity with low reward value to a different activity with higher reward value. By contrast, in this article, I relate cognitive effort to the fact that brain neuroanatomy and neurophysiology render some neural states more energy-efficient than others. I introduce the concept of the "controllosphere," an energy-inefficient region of neural state space associated with high control, which surrounds the better known "intrinsic manifold," an energy-efficient subspace associated with low control. Integration of control-theoretic principles with classic neurocomputational models of cognitive control suggests that dorsolateral prefrontal cortex (DLPFC) implements a controller that can drive the system state into the controllosphere, anterior cingulate cortex (ACC) implements an observer that monitors changes of state of the controlled system, and cognitive effort reflects a mismatch between DLPFC and ACC energies for control and observation. On this account, cognitive effort scales with the energetic demands of the DLPFC control signal, especially when the consequences of the control are unobservable by ACC. Further, I propose that neural transitions through the controllosphere lead to a buildup of neural waste. Cognitive effort therefore prevents against neural damage by discouraging extended periods of high control. (PsycInfo Database Record (c) 2024 APA, all rights reserved).

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来源期刊
Psychological review
Psychological review 医学-心理学
CiteScore
9.70
自引率
5.60%
发文量
97
期刊介绍: Psychological Review publishes articles that make important theoretical contributions to any area of scientific psychology, including systematic evaluation of alternative theories.
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