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顶内刺激破坏人类多选项决策中的负干扰效应。

Intraparietal stimulation disrupts negative distractor effects in human multi-alternative decision-making.

机构信息

Department of Rehabilitation Sciences, The Hong Kong Polytechnic University, Hong Kong, China.

Department Neuroscience, Carney Institute for Brain Sciences, Brown University, Providence, United States.

出版信息

Elife. 2023 Feb 22;12:e75007. doi: 10.7554/eLife.75007.

Abstract

There has been debate about whether addition of an irrelevant distractor option to an otherwise binary decision influences which of the two choices is taken. We show that disparate views on this question are reconciled if distractors exert two opposing but not mutually exclusive effects. Each effect predominates in a different part of decision space: (1) a positive distractor effect predicts high-value distractors improve decision-making; (2) a negative distractor effect, of the type associated with divisive normalisation models, entails decreased accuracy with increased distractor values. Here, we demonstrate both distractor effects coexist in human decision making but in different parts of a decision space defined by the choice values. We show disruption of the medial intraparietal area (MIP) by transcranial magnetic stimulation (TMS) increases positive distractor effects at the expense of negative distractor effects. Furthermore, individuals with larger MIP volumes are also less susceptible to the disruption induced by TMS. These findings also demonstrate a causal link between MIP and the impact of distractors on decision-making via divisive normalisation.

摘要

关于在二元决策之外增加一个不相关的干扰选项是否会影响两个选择中的哪一个被选中,一直存在争议。我们表明,如果干扰项产生两种相反但不相互排斥的影响,那么对这个问题的不同看法就可以得到调和。每个效应在决策空间的不同部分占主导地位:(1) 正干扰效应预测高价值干扰项会改善决策;(2) 与有分歧的归一化模型相关的负干扰效应意味着随着干扰项值的增加,准确性会降低。在这里,我们证明了两种干扰效应都存在于人类决策中,但存在于由选择值定义的决策空间的不同部分。我们表明,经颅磁刺激(TMS)对内侧顶内区(MIP)的干扰增加了正干扰效应,而降低了负干扰效应。此外,MIP 体积较大的个体也不易受到 TMS 诱导的干扰。这些发现还通过有分歧的归一化证明了 MIP 与干扰对决策的影响之间的因果关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d43/9946441/1221111d0a0c/elife-75007-fig1.jpg

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