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  4. Induction of motor associative plasticity in the posterior parietal cortex-primary motor network
 
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Induction of motor associative plasticity in the posterior parietal cortex-primary motor network

Journal
Cerebral Cortex
Journal Volume
25
Journal Issue
2
Pages
365-373
Date Issued
2015
Author(s)
CHI-CHAO CHAO  
Karabanov A.N.
Paine R.
Carolina De Campos A.
Kukke S.N.
Wu T.
Wang H.
Hallett M.
DOI
10.1093/cercor/bht230
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84925003407&doi=10.1093%2fcercor%2fbht230&partnerID=40&md5=d39ca8935e7c87f0ba6f859f97676cef
https://scholars.lib.ntu.edu.tw/handle/123456789/519249
Abstract
There is anatomical and functional connectivity between the primary motor cortex (M1) and posterior parietal cortex (PPC) that plays a role in sensorimotor integration. In this study, we applied corticocortical paired-associative stimuli to ipsilateral PPC and M1 (parietal ccPAS) in healthy right-handed subjects to test if this procedure could modulate M1 excitability and PPC-M1 connectivity. One hundred and eighty paired transcranial magnetic stimuli to the PPC and M1 at an interstimulus interval (ISI) of 8 ms were delivered at 0.2 Hz. We found that parietal ccPAS in the left hemisphere increased the excitability of conditioned left M1 assessed by motor evoked potentials (MEPs) and the input-output curve. Motor behavior assessed by the Purdue pegboard task was unchanged compared with controls. At baseline, conditioning stimuli over the left PPC potentiated MEPs from left M1 when ISI was 8 ms. This interaction significantly attenuated at 60 min after left parietal ccPAS. Additional experiments showed that parietal ccPAS induced plasticity was timing-dependent, was absent if ISI was 100 ms, and could also be seen in the right hemisphere. Our results suggest that parietal ccPAS can modulate M1 excitability and PPC-M1 connectivity and is a new approach to modify motor excitability and sensorimotor interaction. ? 2013 The Author.
Subjects
associative plasticity; corticocortical paired-associative stimulation; motor cortex; parietal motor connectivity; posterior parietal cortex
SDGs

[SDGs]SDG3

Other Subjects
adult; Article; conditioning; controlled study; corticocortical paired associative stimulus; evoked muscle response; excitability; female; human; human experiment; left hemisphere; locomotion; male; nerve cell plasticity; normal human; post hoc analysis; posterior parietal cortex; primary motor cortex; priority journal; Purdue pegboard test; right hemisphere; sensorimotor integration; transcranial magnetic stimulation; electromyography; hand; hemispheric dominance; middle aged; motor activity; motor cortex; nerve cell plasticity; nerve tract; parietal lobe; physiology; procedures; skeletal muscle; young adult; Adult; Electromyography; Evoked Potentials, Motor; Female; Functional Laterality; Hand; Humans; Male; Middle Aged; Motor Activity; Motor Cortex; Muscle, Skeletal; Neural Pathways; Neuronal Plasticity; Parietal Lobe; Transcranial Magnetic Stimulation; Young Adult
Publisher
Oxford University Press
Type
journal article

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