Skip to content
Open access

Altered resting-state network effects in patients after stroke following cortico-cortical target transcranial magnetic stimulation

Aug 2026 · Brain Communications · Vol 8 · 0 citations · 32 references
Medicine

TL;DR

It is suggested that ccPAS can facilitate recovery by modulating higher-order, distributed brain networks in chronic stroke patients by inducing widespread reorganization of RSNs, enhancing connectivity within and between networks subserving attention, visuospatial processing and sensorimotor integration.

Abstract

Abstract The brain operates through large-scale, distributed networks, which are disrupted after stroke. Cortico-cortical paired associative stimulation (ccPAS) is a novel neuromodulation technique designed to induce spike-timing-dependent plasticity in specific pathways. However, its effects on large-scale resting-state networks (RSNs) in stroke patients remain unclear. In this randomized, double-blind, sham-controlled study, 31 chronic stroke patients (mean age: 49.4 ± 11.8 years) with unilateral supratentorial lesions and upper limb motor dysfunction were recruited. Participants received a 12-day intervention of either active ccPAS (n = 16) or sham stimulation (n = 15) targeting the supplementary motor area (SMA) and primary motor cortex (M1) with a +6 ms interval, and routine rehabilitation. Resting-state functional MRI was acquired pre- and post-intervention. Independent component analysis was used to identify RSNs, and functional network connectivity (FNC) was assessed. Compared to the sham group, the ccPAS group exhibited significantly integrated functional connectivity within three visual networks, the bilateral frontoparietal network, dorsal attention network, default mode network, the sensorimotor network and auditory network (P < 0.001). FNC analysis revealed a reduced time lag between the primary visual network and the sensorimotor network post-ccPAS (P < 0.05). ccPAS targeting the SMA-M1 pathway induces widespread reorganization of RSNs, enhancing connectivity within and between networks subserving attention, visuospatial processing and sensorimotor integration. This pattern of change is consistent with mechanisms of adaptive neuroplasticity and suggests that ccPAS can facilitate recovery by modulating higher-order, distributed brain networks in chronic stroke patients. Chinese Clinical Trial Registry: ChiCTR2000036685.

Read PDF

Similar papers

Open access Sep 2026

Neurofeedback-induced network plasticity in motor and default mode networks correlates with motor recovery after stroke

Stroke often results in long-term motor impairments, necessitating innovative rehabilitation strategies. Neurofeedback (NF) has emerged as a promising tool to promote functional recovery after stroke by enabling patients to modulate targeted brain activity. In this study, we investigated how NF training influences wh...

A. Lamouroux, Julie Coloigner, Pierre Maurel et al. · 0 citations
Open access Sep 2026

Cerebellar Theta-Burst Stimulation Induces Distinct Functional Connectivity Patterns in Post-Stroke Aphasia: A Randomized Controlled Trial.

BACKGROUND Recent studies have identified the right cerebellar Crus I (rCrus I) as a promising target for rTMS in improving language rehabilitation. However, it remains unclear whether continuous theta burst stimulation (cTBS) over the rCrus I improves language outcomes in patients with subacute post-stroke aphasia (PS...

Xin Wang, Xin-Lei Xu, Dao-Ran Wang et al. · 0 citations
Open access Sep 2026

Associations between striatal neurochemical changes and resting-state functional connectivity following transcranial temporal interference stimulation

Background Non-invasive modulation of deep brain structures remains a major challenge in human neuroscience and neurorehabilitation. Transcranial temporal interference stimulation (tTIS) has emerged as a promising approach for engaging subcortical regions, but its effects on striatal neurochemical markers and functiona...

S. Kimura, H. Matsuta, Kana Matsumura et al. · 0 citations
Open access Sep 2026

Attenuated sensorimotor hemodynamic responses and altered cortical dynamics during passive proprioceptive-related stimulation after stroke: a multidimensional fNIRS study

Objective This study aimed to use functional near-infrared spectroscopy to investigate abnormalities in cortical activity and dynamic network mechanisms associated with proprioceptive processing after stroke. We integrated conventional hemodynamic features, latent-state organization, directed connectivity, and recovery...

Hui Sun, Qiu-Yuan Fu, Yi-Chen Jiang et al. · 0 citations
Open access Sep 2026

Dual Transcranial Direct Current Stimulation Modulates Hierarchical Functional Network Organization in Post‐Stroke Cognitive Impairment: A Randomized Controlled Trial

ABSTRACT Objective To evaluate the clinical efficacy of dual transcranial direct current stimulation (tDCS) in patients with post‐stroke cognitive impairment (PSCI) and to explore the effects on the hierarchical organization of functional brain networks, ranging from regional synchronization to inter‐regional connectiv...

Yao Wang, Wan Liu, Wen-Jie Yang et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.