Department of General Psychology (DPG), University of Padua, Padua, Italy.
Department of Neuroscience (DNS), University of Padua, Padua, Italy.
PLoS One. 2022 Jun 10;17(6):e0269557. doi: 10.1371/journal.pone.0269557. eCollection 2022.
Embodied and grounded cognition theories state that cognitive processing is built upon sensorimotor systems. In the context of numerical cognition, support to this framework comes from the interactions between numerical processing and the hand actions of reaching and grasping documented in skilled adults. Accordingly, mechanisms for the processing of object size and location during reach and grasp actions might scaffold the development of mental representations of numerical magnitude. The present study exploited motor adaptation to test the hypothesis of a functional overlap between neurocognitive mechanisms of hand action and numerical processing. Participants performed repetitive grasping of an object, repetitive pointing, repetitive tapping, or passive viewing. Subsequently, they performed a symbolic number comparison task. Importantly, hand action and number comparison were functionally and temporally dissociated, thereby minimizing context-based effects. Results showed that executing the action of pointing slowed down the responses in number comparison. Moreover, the typical distance effect (faster responses for numbers far from the reference as compared to close ones) was not observed for small numbers after pointing, while it was enhanced by grasping. These findings confirm the functional link between hand action and numerical processing, and suggest new hypotheses on the role of pointing as a meaningful gesture in the development and embodiment of numerical skills.
体现论和扎根认知理论指出,认知处理是建立在感觉运动系统之上的。在数值认知的背景下,这一框架得到了支持,即有研究记录表明,在熟练的成年人中,数值处理与伸手和抓握的手部动作之间存在相互作用。因此,在伸手和抓握动作中处理物体大小和位置的机制可能为心理数字大小的表象发展提供支撑。本研究利用运动适应来检验手动作和数值处理的神经认知机制之间存在功能重叠的假设。参与者执行了重复抓取物体、重复指向、重复敲击或被动观看等动作。随后,他们执行了一个符号数字比较任务。重要的是,手动作和数字比较在功能和时间上是分离的,从而最小化了基于上下文的影响。结果表明,执行指向动作会减慢数字比较的反应速度。此外,在指向之后,小数字不再表现出典型的距离效应(与接近数字相比,远离参考数字的反应更快),而抓取则增强了这种效应。这些发现证实了手动作和数值处理之间的功能联系,并对指向作为数字技能发展和体现中的有意义手势的作用提出了新的假设。