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蓝斑神经元编码引发和执行动作的主观难度。

Locus coeruleus neurons encode the subjective difficulty of triggering and executing actions.

机构信息

Motivation, Brain and Behavior Team, Institut du Cerveau et de la Moelle épinière (ICM), INSERM UMRS 1127, CNRS UMR 7225, Pitié-Salpêtrière Hospital, Paris, France.

出版信息

PLoS Biol. 2021 Dec 7;19(12):e3001487. doi: 10.1371/journal.pbio.3001487. eCollection 2021 Dec.

Abstract

The brain stem noradrenergic nucleus locus coeruleus (LC) is involved in various costly processes: arousal, stress, and attention. Recent work has pointed toward an implication in physical effort, and indirect evidence suggests that the LC could be also involved in cognitive effort. To assess the dynamic relation between LC activity, effort production, and difficulty, we recorded the activity of 193 LC single units in 5 monkeys performing 2 discounting tasks (a delay discounting task and a force discounting task), as well as a simpler target detection task where conditions were matched for difficulty and only differed in terms of sensory-motor processes. First, LC neurons displayed a transient activation both when monkeys initiated an action and when exerting force. Second, the magnitude of the activation scaled with the associated difficulty, and, potentially, the corresponding amount of effort produced, both for decision and force production. Indeed, at action initiation in both discounting tasks, LC activation increased in conditions associated with lower average engagement rate, i.e., those requiring more cognitive control to trigger the response. Decision-related activation also scaled with response time (RT), over and above task parameters, in line with the idea that it reflects the amount of resources (here time) spent on the decision process. During force production, LC activation only scaled with the amount of force produced in the force discounting task, but not in the control target detection task, where subjective difficulty was equivalent across conditions. Our data show that LC neurons dynamically track the amount of effort produced to face both cognitive and physical challenges with a subsecond precision. This works provides key insight into effort processing and the contribution of the noradrenergic system, which is affected in several pathologies where effort is impaired, including Parkinson disease and depression.

摘要

脑桥蓝斑核(LC)参与了各种高代价的过程:觉醒、应激和注意。最近的研究表明它与体力活动有关,间接证据表明 LC 可能也与认知努力有关。为了评估 LC 活动、努力产生和难度之间的动态关系,我们记录了 5 只猴子在执行 2 种折扣任务(延迟折扣任务和力折扣任务)以及更简单的目标检测任务时的 193 个 LC 单个神经元的活动,这些任务的条件在难度上相匹配,仅在感觉运动过程方面有所不同。首先,当猴子开始行动和用力时,LC 神经元都会显示出短暂的激活。其次,激活的幅度与相关难度以及潜在的相应努力量成正比,无论是决策还是力产生。事实上,在两个折扣任务的动作启动时,LC 的激活在与较低平均参与率相关的条件下增加,即那些需要更多认知控制来触发反应的条件。与决策相关的激活也与反应时间(RT)成正比,超过了任务参数,这与它反映了在决策过程中花费的资源(这里是时间)量的想法一致。在力产生期间,LC 激活仅与力折扣任务中产生的力成正比,但与控制目标检测任务不成正比,在控制目标检测任务中,条件之间的主观难度相等。我们的数据表明,LC 神经元以亚秒级的精度动态跟踪产生的努力量,以应对认知和身体挑战。这项工作为努力处理和去甲肾上腺素能系统的贡献提供了关键见解,去甲肾上腺素能系统在几种努力受损的疾病中受到影响,包括帕金森病和抑郁症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4607/8683033/9bb23727c9c9/pbio.3001487.g001.jpg

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