Department of Neuroscience, Imaging and Clinical Sciences, "G. d'Annunzio" University of Chieti-Pescara, Italy.
Department of Psychological, Health, and Territorial Sciences, "G. d'Annunzio" University of Chieti-Pescara, Italy; Institute for Advanced Biomedical Technologies, ITAB, University "G. d'Annunzio", Chieti, Italy.
Neuropsychologia. 2021 Jun 18;156:107823. doi: 10.1016/j.neuropsychologia.2021.107823. Epub 2021 Mar 8.
The peripersonal space (PPS) is a multisensory and sensorimotor interface between our body and the environment. The location of PPS boundary is not fixed. Rather, it adapts to the environmental context and differs greatly across individuals. Recent studies have started to unveil the neural correlates of individual differences in PPS extension; however, this picture is not clear yet. Here, we used approaching auditory stimuli and magnetoencephalography to capture the individual boundary of PPS and examine its neural underpinnings. In particular, building upon previous studies from our own group, we investigated the possible contribution of an intrinsic feature of the brain, that is the "resting state" functional connectivity, to the individual differences in PPS extension and the frequency specificity of this contribution. Specifically, we focused on the activity synchronized to the premotor cortex, where multisensory neurons encoding PPS have been described. Results showed that the stronger the connectivity between left premotor cortex (lPM) and a set of fronto-parietal, sensorimotor regions in the right and left hemisphere, the wider the extension of the PPS. Strikingly, such a correlation was observed only in the beta-frequency band. Overall, our results suggest that the individual extension of the PPS is coded in spatially- and spectrally-specific resting state functional links.
个体周围空间(PPS)是我们的身体和环境之间的一种多感觉和运动感觉界面。PPS 边界的位置不是固定的。相反,它会适应环境背景,并且在个体之间有很大的差异。最近的研究开始揭示 PPS 扩展个体差异的神经相关性;然而,目前情况还不是很清楚。在这里,我们使用趋近的听觉刺激和脑磁图来捕捉 PPS 的个体边界,并研究其神经基础。特别是,我们基于我们自己团队之前的研究,研究了大脑的内在特征(即“静息状态”功能连接)对 PPS 扩展个体差异以及这种贡献的频率特异性的可能贡献。具体来说,我们专注于与运动前皮层同步的活动,在那里已经描述了编码 PPS 的多感觉神经元。结果表明,左运动前皮层(lPM)与右半球和左半球一系列额顶、感觉运动区域之间的连接越强,PPS 的扩展就越宽。引人注目的是,这种相关性仅在β频带中观察到。总的来说,我们的结果表明,PPS 的个体扩展是在空间和频谱特定的静息状态功能连接中编码的。