Department of Psychology, University of Milan-Bicocca , Milano, Italy.
NeuroMi, Milan Center for Neuroscience , Milano, Italy.
Soc Neurosci. 2020 Dec;15(6):641-649. doi: 10.1080/17470919.2020.1840431. Epub 2020 Nov 13.
Several adult studies have proved the existence of a shared neural circuit in the somatosensory cortices that responds to both the body being touched and the sight of the body being touched. Despite the fundamental role of touch in infancy, the existence of similar visuo-tactile mirroring processes, supporting both felt and seen touch, still needs an in-depth empirical investigation. To this aim, we explored 8-month-olds mu desynchronization over somatosensory sites in response to felt and observed touch in a live experimental setting. EEG desynchronization (6-8 Hz mu frequency range) was measured during three experimental conditions: i) infants were stroked on their right hand by a parent (Touch condition); ii) infants observed a right hand being stroked (Observation Touch condition); iii) infants observed a right hand moving over the left hand without making contact (Action Control condition). Mu desynchronization of somatosensory sites contralateral to the hand being stroked emerged in response to both Touch and Observation Touch conditions, but not in the Action control condition. Further, greater mu desynchronization was found in the Touch and Observation Touch conditions as compared to the Action control condition. Our results highlight the early involvement of a shared somatosensory system, likely supporting infants' understanding of others' tactile sensations.
几项成人研究已经证明,在躯体感觉皮质中存在一个共享的神经回路,它既能对被触摸的身体做出反应,也能对被触摸的身体的视觉做出反应。尽管触摸在婴儿期起着至关重要的作用,但类似的视触镜像过程的存在,支持了被感觉到的和被看到的触摸,仍然需要深入的实证研究。为此,我们在现场实验环境中探索了 8 个月大的婴儿在感受到和观察到触摸时,其躯体感觉部位的 mu 去同步化现象。在三种实验条件下测量了 EEG 去同步化(6-8 Hz 的 mu 频率范围):i)婴儿被父母用右手抚摸(触摸条件);ii)婴儿观察右手被抚摸(观察触摸条件);iii)婴儿观察右手在左手上方移动而不接触(动作控制条件)。在触摸和观察触摸条件下,与被抚摸的手相对应的躯体感觉部位出现 mu 去同步化,但在动作控制条件下没有出现。此外,与动作控制条件相比,触摸和观察触摸条件下的 mu 去同步化程度更高。我们的研究结果强调了一个共享的躯体感觉系统的早期参与,这可能支持婴儿对他人触觉感知的理解。