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在动机冲突下进行决策时,皮层丘脑回路在速度和安全性之间进行权衡。

A Corticothalamic Circuit Trades off Speed for Safety during Decision-Making under Motivational Conflict.

机构信息

School of Psychology, UNSW Sydney, 2052 New South Wales, Australia.

Cognitive and Systems Neuroscience Group, SILS Center for Neuroscience, University of Amsterdam, Amsterdam, 1090 GE, The Netherlands.

出版信息

J Neurosci. 2022 Apr 20;42(16):3473-3483. doi: 10.1523/JNEUROSCI.0088-22.2022. Epub 2022 Mar 10.

Abstract

Decisions to act while pursuing goals in the presence of danger must be made quickly but safely. Premature decisions risk injury or death, whereas postponing decisions risk goal loss. Here we show how mice resolve these competing demands. Using microstructural behavioral analyses, we identified the spatiotemporal dynamics of approach-avoidance decisions under motivational conflict in male mice. Then we used cognitive modeling to show that these dynamics reflect the speeded decision-making mechanisms used by humans and nonhuman primates, with mice trading off decision speed for safety of choice when danger loomed. Using calcium imaging in paraventricular thalamus and optogenetic inhibition of the prelimbic cortex to paraventricular thalamus pathway, we show that this speed-safety trade off occurs because increases in paraventricular thalamus activity increase decision caution, thereby increasing approach-avoid decision times in the presence of danger. Our findings demonstrate that a discrete brain circuit involving the paraventricular thalamus and its prefrontal input adjusts decision caution during motivational conflict, trading off decision speed for decision safety when danger is close. We identify the corticothalamic pathway as central to cognitive control during decision-making under conflict. Foraging animals balance the need to seek food and energy against the conflicting needs to avoid injury and predation. This competition is fundamental to survival but rarely has a stable, correct solution. Here we show that approach-avoid decisions under motivational conflict involve strategic adjustments in decision caution controlled via a top-down corticothalamic pathway from the prelimbic cortex to the paraventricular thalamus. We identify a novel corticothalamic mechanism for cognitive control that is applicable across a range of motivated behaviors and mark paraventricular thalamus and its prefrontal cortical input as targets to remediate the deficits in decision caution characteristic of unsafe and impulsive choices.

摘要

在存在危险的情况下追求目标时,必须迅速但安全地做出行动决策。过早的决策会有受伤或死亡的风险,而推迟决策则会有目标丧失的风险。在这里,我们展示了老鼠如何解决这些相互竞争的需求。使用微观结构行为分析,我们确定了雄性老鼠在动机冲突下接近回避决策的时空动态。然后,我们使用认知建模表明,这些动态反映了人类和非人类灵长类动物使用的加速决策机制,当危险逼近时,老鼠会在决策速度和选择安全性之间进行权衡。使用室旁核的钙成像和外侧隔核到室旁核通路的光遗传学抑制,我们表明这种速度-安全性权衡的发生是因为室旁核活动的增加会增加决策谨慎性,从而在危险存在时增加接近回避决策的时间。我们的研究结果表明,涉及室旁核及其前额叶输入的离散脑回路会在动机冲突期间调整决策谨慎性,当危险临近时,通过权衡决策速度来保证决策安全性。我们确定皮质丘脑通路是冲突决策中认知控制的核心。觅食动物需要平衡寻找食物和能量的需求与避免受伤和被捕食的冲突需求。这种竞争是生存的基础,但很少有一个稳定的、正确的解决方案。在这里,我们表明,动机冲突下的接近回避决策涉及决策谨慎性的策略性调整,这种调整通过来自前额叶皮层的自上而下的皮质丘脑通路进行控制。我们发现了一种新的皮质丘脑机制,用于认知控制,该机制适用于一系列动机行为,并将室旁核及其前额皮质输入标记为目标,以纠正不安全和冲动选择特征的决策谨慎性缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0d2/9034778/6eb6f0cfccac/SN-JNSJ220171F001.jpg

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