Laboratory of Neuropsychology, Department of Psychology, University of Campania 'Luigi Vanvitelli', Viale Ellittico 31, 81100, Caserta, Italy.
Maugeri Scientific and Clinical Institutes, IRCCS, Disorders of Consciousness Lab, Institute of Telese Terme, Telese Terme, Italy.
Psychol Res. 2020 Jun;84(4):1006-1019. doi: 10.1007/s00426-018-1117-1. Epub 2018 Nov 8.
Previous studies showed that motor information related to tool use (i.e., functional actions) could affect processing of objects semantic properties, whereas motor information related to grasping or moving tool (i.e., structural actions) cannot. However, little is known about the neural correlates mediating such interaction between motor and semantic information. Here, healthy participants performed a semantic judgment task requiring identification of semantic relations among objects, after observing a functional, a structural or a pointing action prime. In a within-subject design, during prime presentation the participants underwent repetitive transcranial magnetic stimulation (rTMS) over the left supramarginal gyrus (SMG), the left posterior middle temporal gyrus (pMTG) or received sham stimulation. Results showed that in the sham condition observing functional actions (vs. structural and pointing actions) favoured processing of semantic relations based on function similarity (i.e., taxonomic relations), but not of relations based on co-occurrence within an event schema (i.e., thematic relations). Moreover, stimulation of both left SMG and pMTG abolished the effect of functional action primes worsening subsequent judgment about taxonomic relations, and this effect was greater after pMTG stimulation. rTMS did not affect processing of thematic semantic relations. We suggest that action observation triggers activation of functional motor information within left inferior parietal cortex, and that integration between functional motor and conceptual information in left temporal cortex could impact high-level semantic processing of tools.
先前的研究表明,与工具使用相关的运动信息(即功能动作)可以影响对象语义属性的处理,而与抓握或移动工具相关的运动信息(即结构动作)则不能。然而,对于介导这种运动和语义信息之间相互作用的神经关联知之甚少。在这里,健康参与者在观察了功能动作、结构动作或指向动作的启动后,执行了一项需要识别对象之间语义关系的语义判断任务。在一项被试内设计中,在启动呈现期间,参与者接受了左缘上回(SMG)、左后颞中回(pMTG)的重复经颅磁刺激(rTMS)或假刺激。结果表明,在假刺激条件下,观察功能动作(与结构和指向动作相比)有利于基于功能相似性(即分类关系)而不是基于事件图式内共现(即主题关系)的语义关系处理。此外,刺激左 SMG 和 pMTG 均可消除功能动作启动的影响,从而使后续的分类关系判断恶化,且在 pMTG 刺激后效果更大。rTMS 并不影响主题语义关系的处理。我们认为,动作观察会触发左顶下小叶内的功能运动信息的激活,而左颞叶皮质内的功能运动信息和概念信息的整合可能会影响对工具的高级语义处理。