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首页> 外文期刊>Frontiers in Human Neuroscience >It wasn’t me! Motor activation from irrelevant spatial information in the absence of a response
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It wasn’t me! Motor activation from irrelevant spatial information in the absence of a response

机译:不是我!在没有响应的情况下从无关的空间信息激活电机

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Embodied cognition postulates that perceptual and motor processes serve higher-order cognitive faculties like language. A major challenge for embodied cognition concerns the grounding of abstract concepts. Here we zoom in on abstract spatial concepts and ask the question to what extent the sensorimotor system is involved in processing these. Most of the empirical support in favor of an embodied perspective on (abstract) spatial information has derived from so-called compatibility effects in which a task-irrelevant feature either facilitates (for compatible trials) or hinders (in incompatible trials) responding to the task-relevant feature. This type of effect has been interpreted in terms of (task-irrelevant) feature-induced response activation. The problem with such approach is that incompatible features generate an array of task-relevant and –irrelevant activations [e.g., in primary motor cortex (M1)], and lateral hemispheric interactions render it difficult to assign credit to the task-irrelevant feature per se in driving these activations. Here, we aim to obtain a cleaner indication of response activation on the basis of abstract spatial information. We employed transcranial magnetic stimulation (TMS) to probe response activation of effectors in response to semantic, task-irrelevant stimuli (i.e., the words left and right) that did not require an overt response. Results revealed larger motor evoked potentials (MEPs) for the right (left) index finger when the word right ( left ) was presented. Our findings provide support for the grounding of abstract spatial concepts in the sensorimotor system.
机译:体现的认知假定知觉和运动过程服务于语言等高级认知能力。体现认知的主要挑战涉及抽象概念的基础。在这里,我们放大了抽象的空间概念,并提出了一个问题,即感觉运动系统在处理这些概念时涉及到什么程度。支持(抽象)空间信息的具体化观点的大多数经验支持均来自所谓的兼容性效应,其中与任务无关的功能促进(对于兼容试验)或阻碍(在不兼容试验中)对任务的响应相关功能。已经根据(与任务无关)特征诱导的响应激活来解释这种效果。这种方法的问题在于,不兼容的特征会生成一系列与任务相关和不相关的激活(例如,在主运动皮层(M1)中),并且横向半球相互作用使得很难将功劳分配给与任务无关的特征本身驱动这些激活。在此,我们旨在根据抽象的空间信息来获得更清晰的响应激活指示。我们采用经颅磁刺激(TMS)来探测效应器的响应激活,以响应不需要公开响应的语义,与任务无关的刺激(即左右单词)。结果显示,当出现单词“右(左)”时,右(左)食指的运动诱发电位(MEP)更大。我们的发现为感觉运动系统中抽象空间概念的扎根提供了支持。

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