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通过累积的决策证据对运动进行快速、系统的更新。

Rapid, systematic updating of movement by accumulated decision evidence.

作者信息

Molano-Mazón Manuel, Garcia-Duran Alexandre, Pastor-Ciurana Jordi, Hernández-Navarro Lluís, Bektic Lejla, Lombardo Debora, de la Rocha Jaime, Hyafil Alexandre

机构信息

Centre de Recerca Matemàtica (CRM), Bellaterra, Spain.

IDIBAPS, Rosselló 149, Barcelona, Spain.

出版信息

Nat Commun. 2024 Dec 4;15(1):10583. doi: 10.1038/s41467-024-53586-7.

Abstract

Acting in the natural world requires not only deciding among multiple options but also converting decisions into motor commands. How the dynamics of decision formation influence the fine kinematics of response movement remains, however, poorly understood. Here we investigate how the accumulation of decision evidence shapes the response orienting trajectories in a task where freely-moving rats combine prior expectations and auditory information to select between two possible options. Response trajectories and their motor vigor are initially determined by the prior. Rats movements then incorporate sensory information in less than 100 ms after stimulus onset by accelerating or slowing depending on how much the stimulus supports their initial choice. When the stimulus evidence is in strong contradiction, rats change their mind and reverse their initial trajectory. Human subjects performing an equivalent task display a remarkably similar behavior. We encapsulate these results in a computational model that maps the decision variable onto the movement kinematics at discrete time points, capturing subjects' choices, trajectories and changes of mind. Our results show that motor responses are not ballistic. Instead, they are systematically and rapidly updated, as they smoothly unfold over time, by the parallel dynamics of the underlying decision process.

摘要

在自然界中行动不仅需要在多个选项中做出决定,还需要将决定转化为运动指令。然而,决策形成的动态过程如何影响反应运动的精细运动学,目前仍知之甚少。在这里,我们研究了在一个自由移动的大鼠结合先验期望和听觉信息在两个可能选项之间进行选择的任务中,决策证据的积累如何塑造反应定向轨迹。反应轨迹及其运动活力最初由先验决定。然后,大鼠的运动在刺激开始后不到100毫秒内通过根据刺激对其初始选择的支持程度加速或减速来纳入感官信息。当刺激证据存在强烈矛盾时,大鼠会改变主意并反转其初始轨迹。执行等效任务的人类受试者表现出非常相似的行为。我们将这些结果封装在一个计算模型中,该模型在离散时间点将决策变量映射到运动运动学上,捕捉受试者的选择、轨迹和改变主意的情况。我们的结果表明,运动反应不是弹道式的。相反,随着时间的推移,它们会通过潜在决策过程的并行动态系统地、快速地更新,因为它们会平稳地展开。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a41c/11618783/1287782ddc58/41467_2024_53586_Fig1_HTML.jpg

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