Dipartimento di Scienze Mediche e Chirurgiche, Università Magna Graecia, Catanzaro, Italy.
Consiglio Nazionale delle Ricerche (CNR), Istituto di Neuroscienze, Parma, Italy.
Cortex. 2018 Mar;100:95-110. doi: 10.1016/j.cortex.2017.09.012. Epub 2017 Oct 3.
Sensorimotor and affective brain systems are known to be involved in language processing. However, to date it is still debated whether this involvement is a crucial step of semantic processing or, on the contrary, it is dependent on the specific context or strategy adopted to solve a task at hand. The present electroencephalographic (EEG) study is aimed at investigating which brain circuits are engaged when processing written verbs. By aligning event-related potentials (ERPs) both to the verb onset and to the motor response indexing the accomplishment of a semantic task of categorization, we were able to dissociate the relative stimulus-related and response-related cognitive components at play, respectively. EEG signal source reconstruction showed that while the recruitment of sensorimotor fronto-parietal circuits was time-locked with action verb onset, a left temporal-parietal circuit was time-locked to the task accomplishment. Crucially, by comparing the time course of both these bottom-up and top-down cognitive components, it appears that the frontal motor involvement precedes the task-related temporal-parietal activity. The present findings suggest that the recruitment of fronto-parietal sensorimotor circuits is independent of the specific strategy adopted to solve a semantic task and, given its temporal hierarchy, it may provide crucial information to brain circuits involved in the categorization task. Eventually, a discussion on how the present results may contribute to the clinical literature on patients affected by disorders specifically impairing the motor system is provided.
感觉运动和情感大脑系统已知参与语言处理。然而,迄今为止,仍然存在争议的是,这种参与是语义处理的关键步骤,还是相反,它取决于解决手头任务所采用的特定上下文或策略。本脑电图 (EEG) 研究旨在调查在处理书面动词时涉及哪些大脑回路。通过将事件相关电位 (ERP) 与动词起始和索引语义分类任务完成的运动反应对齐,我们能够分别分离出相关的刺激相关和反应相关认知成分。脑电图信号源重建表明,虽然感觉运动额顶叶回路的招募与动作动词起始时间锁定,但左侧颞顶叶回路与任务完成时间锁定。至关重要的是,通过比较这两个自下而上和自上而下认知成分的时间过程,可以看出额叶运动的参与先于与任务相关的颞顶叶活动。本研究结果表明,额顶叶感觉运动回路的募集与解决语义任务所采用的特定策略无关,并且由于其时间层次结构,它可能为参与分类任务的大脑回路提供关键信息。最后,讨论了如何将本研究结果应用于专门损害运动系统的患者的临床文献。