Guidali Giacomo, Bagattini Chiara, De Matola Matteo, Brignani Debora
Neurophysiology Lab, IRCCS Istituto Centro San Giovanni di Dio Fatebenefratelli, Brescia, Italy.
Section of Neurosurgery, Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.
Cortex. 2023 Dec;169:50-64. doi: 10.1016/j.cortex.2023.08.012. Epub 2023 Sep 28.
Pseudoneglect is a set of visuospatial biases that entails a behavioral advantage for stimuli appearing in the left hemifield compared to the right one. Although right hemisphere dominance for visuospatial processing has been invoked to explain this phenomenon, its neurophysiological mechanisms are still debated, and the role of intra- and inter-hemispheric connectivity is yet to be defined. The present study explored the possibility of modulating pseudoneglect in healthy participants through a cortico-cortical paired associative stimulation protocol (ccPAS): a non-invasive brain stimulation protocol that manipulates the interplay between brain regions through the repeated, time-locked coupling of two transcranial magnetic stimulation (TMS) pulses. In the first experiment, healthy participants underwent a frontal-to-parietal (FP) and a parietal-to-frontal (PF) ccPAS. In the FP protocol, the first TMS pulse targeted the right frontal eye field (FEF), and the second pulse the right inferior parietal lobule (IPL), two critical areas for visuospatial and attentional processing. In the PF condition, the order of the pulses was reversed. In both protocols, the inter-stimulus interval (ISI) was 10 ms. Before and after stimulation, pseudoneglect was assessed with a landmark task and a manual line bisection task. A second experiment controlled for ccPAS timing dependency by testing FP-ccPAS with a longer ISI of 100 ms. Results showed that after administering the FP-ccPAS with the ISI of 10 ms, participants' leftward bias in the landmark task increased significantly, with no effects in the manual line bisection task. The other two protocols tested were ineffective. Our findings showed that ccPAS could be used to modulate pseudoneglect by exploiting frontal-to-parietal connectivity, possibly through increased top-down attentional control. FP-ccPAS could represent a promising tool to investigate connectivity properties within visuospatial and attentional networks in the healthy and as a potential rehabilitation protocol in patients suffering from severe visuospatial pathologies.
假性忽视是一组视觉空间偏向,与右侧相比,出现在左半视野的刺激具有行为优势。尽管有人援引右半球在视觉空间处理方面的优势来解释这一现象,但其神经生理机制仍存在争议,半球内和半球间连接的作用也有待确定。本研究通过皮质-皮质配对联想刺激方案(ccPAS)探索了调节健康参与者假性忽视的可能性:这是一种非侵入性脑刺激方案,通过两个经颅磁刺激(TMS)脉冲的重复、时间锁定耦合来操纵脑区之间的相互作用。在第一个实验中,健康参与者接受了从额叶到顶叶(FP)和从顶叶到额叶(PF)的ccPAS。在FP方案中,第一个TMS脉冲靶向右侧额叶眼区(FEF),第二个脉冲靶向右侧顶下小叶(IPL),这是视觉空间和注意力处理的两个关键区域。在PF条件下,脉冲顺序相反。在这两个方案中,刺激间隔(ISI)均为10毫秒。在刺激前后,通过地标任务和手动线二等分任务评估假性忽视。第二个实验通过测试ISI为100毫秒的更长时间的FP-ccPAS来控制ccPAS时间依赖性。结果表明,在给予ISI为10毫秒的FP-ccPAS后,参与者在地标任务中的向左偏向显著增加,而在手动线二等分任务中没有影响。测试的其他两个方案无效。我们的研究结果表明,ccPAS可用于通过利用额叶到顶叶的连接来调节假性忽视,可能是通过增强自上而下的注意力控制。FP-ccPAS可能是一种有前途的工具,可用于研究健康人群视觉空间和注意力网络内的连接特性,并作为患有严重视觉空间病理的患者的潜在康复方案。