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与健康受试者基于努力的决策和冷漠相关的额-运动回路。

Fronto-motor circuits linked to effort-based decision-making and apathy in healthy subjects.

作者信息

Derosiere Gerard, Vassiliadis Pierre, Dricot Laurence, Dessain Quentin, Delinte Nicolas, Zénon Alexandre, Duque Julie

机构信息

Institute of Neuroscience, Université Catholique de Louvain, Brussels, Belgium.

Université Claude Bernard Lyon 1, CNRS, INSERM, Centre de Recherche en Neurosciences de Lyon (CRNL), U1028 UMR5292, Impact Team, Bron, France.

出版信息

Commun Biol. 2025 Aug 30;8(1):1320. doi: 10.1038/s42003-025-08780-8.

Abstract

Apathy is marked by disruptions in effort-based decision-making for rewards and alterations in fronto-basal ganglia (BG) circuits. While changes in primary motor cortex (M1) activity during effort and reward valuation have been reported, prior work on apathy and effort-based decision-making has overlooked the connections between fronto-BG structures and M1. Here, we addressed this gap by investigating structural and effective connectivity within fronto-M1, fronto-BG-M1, and intra-M1 circuits in 45 healthy participants using tractography and paired-pulse transcranial magnetic stimulation. These measures were related to apathy scores and computational parameters of effort and reward valuation modelled from decision-making behavior. Apathy scores were associated with both structural and effective connectivity in orbitofrontal cortex-originating circuits. Additionally, effort and reward valuation were preferentially linked to supplementary motor area-related circuits and intra-M1 GABAergic circuits, respectively. These findings reveal dissociable circuit-level contributions to different dimensions of motivated behavior and identify potential neuromodulation targets for treating apathy.

摘要

冷漠的特征是基于努力的奖励决策受到干扰以及额底神经节(BG)回路发生改变。虽然已有研究报道了在努力和奖励评估过程中初级运动皮层(M1)活动的变化,但先前关于冷漠和基于努力的决策的研究忽略了额底神经节结构与M1之间的联系。在此,我们通过使用纤维束成像和配对脉冲经颅磁刺激,研究了45名健康参与者的额- M1、额- BG - M1和M1内回路中的结构和有效连接,填补了这一空白。这些测量结果与冷漠评分以及从决策行为建模得出的努力和奖励评估的计算参数相关。冷漠评分与眶额皮质起源回路中的结构和有效连接均相关。此外,努力和奖励评估分别优先与辅助运动区相关回路和M1内的GABA能回路相关联。这些发现揭示了不同回路水平对动机行为不同维度的可分离贡献,并确定了治疗冷漠的潜在神经调节靶点。

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