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Parsing the roles of the frontal lobes and basal ganglia in task control using multivoxel pattern analysis

机译:使用多体素模式分析来解析额叶和基底神经节在任务控制中的作用

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摘要

Cognitive control has traditionally been associated with the prefrontal cortex, based on observations of deficits in patients with frontal lesions. However, evidence from patients with Parkinson’s disease (PD) indicates that subcortical regions also contribute to control under certain conditions. We scanned 17 healthy volunteers while they performed a task switching paradigm that previously dissociated performance deficits arising from frontal lesions in comparison with PD, as a function of the abstraction of the rules that are switched. From a multivoxel pattern analysis by Gaussian Process Classification (GPC), we then estimated the forward (generative) model to infer regional patterns of activity that predict Switch / Repeat behaviour between rule conditions. At 1000 permutations, Switch / Repeat classification accuracy for concrete rules was significant in the basal ganglia, but at chance in the frontal lobe. The inverse pattern was obtained for abstract rules, whereby the conditions were successfully discriminated in the frontal lobe but not in the basal ganglia. This double dissociation highlights the difference between cortical and subcortical contributions to cognitive control and demonstrates the utility of multivariate approaches in investigations of functions that rely on distributed and overlapping neural substrates.
机译:根据对额叶病变患者虚弱的观察,传统上认知控制与额叶前皮质相关。但是,帕金森氏病(PD)患者的证据表明,在某些情况下,皮层下区域也有助于控制。我们扫描了17名健康志愿者,他们执行了任务转换范式,该任务转换范式根据PD规则的抽象化功能,将先前因额叶病变而导致的表现缺陷与PD分离开来。通过基于高斯过程分类(GPC)的多体素模式分析,我们估计了正向(生成)模型,以推断预测规则条件之间的切换/重复行为的区域活动模式。在1000个排列中,针对具体规则的Switch / Repeat分类准确度在基底神经节中很重要,但在额叶中偶然。对于抽象规则,获得了相反的模式,从而成功地区分了额叶中的条件,而不是基底神经节中的条件。这种双重分离突出了皮质和皮质下对认知控制的贡献之间的差异,并证明了多元方法在研究依赖于分布的和重叠的神经基质的功能中的实用性。

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