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Explaining the neural activity distribution associated with discrete movement sequences: Evidence for parallel functional systems

机译:解释与离散运动序列相关的神经活动分布:并行功能系统的证据

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摘要

To explore the effects of practice we scanned participants with fMRI while they were performing four-key unfamiliar and familiar sequences, and compared the associated activities relative to simple control sequences. On the basis of a recent cognitive model of sequential motor behavior (C-SMB), we propose that the observed neural activity would be associated with three functional networks that can operate in parallel and that allow (a) responding to stimuli in a reaction mode, (b) sequence execution using spatial sequence representations in a central-symbolic mode, and (c) sequence execution using motor chunk representations in a chunking mode. On the basis of this model and findings in the literature, we predicted which neural areas would be active during execution of the unfamiliar and familiar keying sequences. The observed neural activities were largely in line with our predictions, and allowed functions to be attributed to the active brain areas that fit the three above functional systems. The results corroborate C-SMB’s assumption that at advanced skill levels the systems executing motor chunks and translating key-specific stimuli are racing to trigger individual responses. They further support recent behavioral indications that spatial sequence representations continue to be used.
机译:为了探索实践的效果,我们在参与者执行四键陌生和熟悉序列时使用功能磁共振成像对参与者进行了扫描,并比较了与简单控制序列相关的活动。基于最近的顺序运动行为的认知模型(C-SMB),我们建议观察到的神经活动将与可以并行运行并允许(a)以反应模式对刺激做出反应的三个功能网络相关,(b)在中央符号模式下使用空间序列表示来执行序列,以及(c)在分块模式下使用电动机块表示来执行序列。基于此模型和文献中的发现,我们预测了在执行不熟悉和熟悉的键控序列期间哪些神经区域将处于活动状态。观察到的神经活动在很大程度上与我们的预测相符,并且将功能归因于适合上述三个功能系统的活跃大脑区域。结果证实了C-SMB的假设,即在高级技能水平上,执行运动块并转换关键特定刺激的系统正在争夺个人响应。他们进一步支持继续使用空间序列表示的最新行为指示。

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