Mazzi Chiara, Mele Sonia, Bagattini Chiara, Sanchez-Lopez Javier, Savazzi Silvia
Perception and Awareness (PandA) Laboratory, Department of Neuroscience, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.
Section of Neurosurgery, Department of Neuroscience, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.
Front Hum Neurosci. 2024 Mar 7;18:1362742. doi: 10.3389/fnhum.2024.1362742. eCollection 2024.
Low frequency (1 Hz) repetitive transcranial stimulation (rTMS) applied over right posterior parietal cortex (rPPC) has been shown to reduce cortical excitability both of the stimulated area and of the interconnected contralateral homologous areas. In the present study, we investigated the whole pattern of intra- and inter-hemispheric cortico-cortical connectivity changes induced by rTMS over rPPC.
To do so, 14 healthy participants underwent resting state EEG recording before and after 30 min of rTMS at 1 Hz or sham stimulation over the rPPC (electrode position P6). Real stimulation was applied at 90% of motor threshold. Coherence values were computed on the electrodes nearby the stimulated site (i.e., P4, P8, and CP6) considering all possible inter- and intra-hemispheric combinations for the following frequency bands: delta (0.5-4 Hz), theta (4-8 Hz), alpha (8-12Hz), low beta (12-20 Hz), high beta (20-30 Hz), and gamma (30-50 Hz).
Results revealed a significant increase in coherence in delta, theta, alpha and beta frequency bands between rPPC and the contralateral homologous sites. Moreover, an increase in coherence in theta, alpha, beta and gamma frequency bands was found between rPPC and right frontal sites, reflecting the activation of the fronto-parietal network within the right hemisphere. Summarizing, subthreshold rTMS over rPPC revealed cortico-cortical inter- and intra-hemispheric connectivity as measured by the increase in coherence among these areas. Moreover, the present results further confirm previous evidence indicating that the increase of coherence values is related to intra- and inter-hemispheric inhibitory effects of rTMS. These results can have implications for devising evidence-based rehabilitation protocols after stroke.
已表明,在右侧顶叶后部皮质(rPPC)施加低频(1Hz)重复经颅磁刺激(rTMS)可降低受刺激区域及其相互连接的对侧同源区域的皮质兴奋性。在本研究中,我们调查了rTMS作用于rPPC所引起的半球内和半球间皮质 - 皮质连接性变化的整体模式。
为此,14名健康参与者在rPPC(电极位置P6)接受1Hz的rTMS或假刺激30分钟前后进行静息态脑电图记录。以运动阈值的90%进行实际刺激。考虑所有可能的半球间和半球内组合,计算受刺激部位附近电极(即P4、P8和CP6)在以下频段的相干值:δ波(0.5 - 4Hz)、θ波(4 - 8Hz)、α波(8 - 12Hz)、低β波(12 - 20Hz)、高β波(20 - 30Hz)和γ波(30 - 50Hz)。
结果显示,rPPC与对侧同源部位之间在δ波、θ波、α波和β波频段的相干性显著增加。此外,在rPPC与右侧额叶部位之间发现θ波、α波、β波和γ波频段的相干性增加,反映了右半球内额顶网络的激活。总之,rPPC上的阈下rTMS揭示了通过这些区域间相干性增加所测量的皮质 - 皮质半球间和半球内连接性。此外,本研究结果进一步证实了先前的证据,表明相干值的增加与rTMS的半球内和半球间抑制作用有关。这些结果可能对制定基于证据的中风后康复方案具有启示意义。