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Targeted Stimulation of Human Orbitofrontal Networks Disrupts Outcome-Guided Behavior

机译:有针对性的刺激人轨道网络扰乱了结果导向行为

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摘要

Outcome-guided behavior requires knowledge about the current value of expected outcomes. Such behavior can be isolated in the reinforcer devaluation task, which assesses the ability to infer the current value of specific rewards after devaluation. Animal lesion studies demonstrate that orbitofrontal cortex (OFC) is necessary for normal behavior in this task, but a causal role for human OFC in outcome-guided behavior has not been established. Here, we used sham-controlled, non-invasive, continuous thetaburst stimulation (cTBS) to temporarily disrupt human OFC network activity by stimulating a site in the lateral prefrontal cortex that is strongly connected to OFC prior to devaluation of food odor rewards. Subjects in the sham group appropriately avoided Pavlovian cues associated with devalued food odors. However, subjects in the stimulation group persistently chose those cues, even though devaluation of food odors themselves was unaffected by cTBS. This behavioral impairment was mirrored in changes in resting-state functional magnetic resonance imaging (rs-fMRI) activity such that subjects in the stimulation group exhibited reduced OFC network connectivity after cTBS, and the magnitude of this reduction was correlated with choices after devaluation. These findings demonstrate the feasibility of indirectly targeting the human OFC with non-invasive cTBS and indicate that OFC is specifically required for inferring the value of expected outcomes.
机译:结果导向行为需要了解预期结果的当前价值。这种行为可以在加强队贬值任务中隔离,评估贬值后推断特定奖励的当前值的能力。动物病变研究表明,在这项任务中的正常行为是必要的胰胰胰氧化物皮质(OFC),但尚未建立在结果引导行为中的人类的因果作用。在此,我们使用假控,无侵入性,连续的连续的急剧刺激(CTBS)来暂时通过刺激在横向前额叶皮层中的部位来暂时破坏人类的网络活性,在贬值食物气味奖励之前强烈地连接到OFC。假目小组的受试者适当地避免了与贬值的食物异味相关的Pavlovian线索。然而,刺激组中的受试者持续选择这些提示,即使食物异味本身的贬值不受CTB的影响。这种行为损伤在静态功能磁共振成像(RS-FMRI)活性的变化中被镜像,使得刺激组中的受试者在CTB之后表现出降低的网络连接,并且这种减少的幅度与贬值后的选择相关。这些发现表明,间接靶向具有非侵入性CTB的人类的可行性,并表明在推断预期结果的价值时特别需要讨论。

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  • 来源
    《Current Biology: CB》 |2020年第3期|共13页
  • 作者单位

    Northwestern Univ Feinberg Sch Med Dept Neurol 320 E Super St Searle 11-643 Chicago IL 60611 USA;

    Northwestern Univ Feinberg Sch Med Dept Neurol 320 E Super St Searle 11-643 Chicago IL 60611 USA;

    Northwestern Univ Feinberg Sch Med Dept Neurol 320 E Super St Searle 11-643 Chicago IL 60611 USA;

    Northwestern Univ Feinberg Sch Med Dept Neurol 320 E Super St Searle 11-643 Chicago IL 60611 USA;

    NIDA Intramural Res Program 251 Bayview Blvd Room 04A505 Suite 200 Baltimore MD 21224 USA;

    Northwestern Univ Feinberg Sch Med Dept Neurol 320 E Super St Searle 11-643 Chicago IL 60611 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学;
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