Literature DB >> 22160708

Transcranial magnetic stimulation modulates the brain's intrinsic activity in a frequency-dependent manner.

Mark C Eldaief1, Mark A Halko, Randy L Buckner, Alvaro Pascual-Leone.   

Abstract

Intrinsic activity in the brain is organized into networks. Although constrained by their anatomical connections, functional correlations between nodes of these networks reorganize dynamically. Dynamic organization implies that couplings between network nodes can be reconfigured to support processing demands. To explore such reconfigurations, we combined repetitive transcranial magnetic stimulation (rTMS) and functional connectivity MRI (fcMRI) to modulate cortical activity in one node of the default network, and assessed the effect of this upon functional correlations throughout the network. Two different frequencies of rTMS to the same default network node (the left posterior inferior parietal lobule, lpIPL) induced two topographically distinct changes in functional connectivity. High-frequency rTMS to lpIPL decreased functional correlations between cortical default network nodes, but not between these nodes and the hippocampal formation. In contrast, low frequency rTMS to lpIPL did not alter connectivity between cortical default network nodes, but increased functional correlations between lpIPL and the hippocampal formation. These results suggest that the default network is composed of (at least) two subsystems. More broadly, the finding that two rTMS stimulation regimens to the same default network node have distinct effects reveals that this node is embedded within a network that possesses multiple, functionally distinct relationships among its distributed partners.

Mesh:

Year:  2011        PMID: 22160708      PMCID: PMC3248528          DOI: 10.1073/pnas.1113103109

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  48 in total

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  104 in total

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8.  Cortical network models of impulse firing in the resting and active states predict cortical energetics.

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9.  Dissociable effects of local inhibitory and excitatory theta-burst stimulation on large-scale brain dynamics.

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10.  Low- and High-Frequency Repetitive Transcranial Magnetic Stimulation Effects on Resting-State Functional Connectivity Between the Postcentral Gyrus and the Insula.

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Journal:  Brain Connect       Date:  2019-04-02
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