Literature DB >> 31328638

Role of Interhemispheric Cortical Interactions in Poststroke Motor Function.

Jacqueline A Palmer1, Lewis A Wheaton2, Whitney A Gray1, Mary Alice Saltão da Silva1,2, Steven L Wolf1,3, Michael R Borich1.   

Abstract

Background/Objective. We investigated interhemispheric interactions in stroke survivors by measuring transcranial magnetic stimulation (TMS)-evoked cortical coherence. We tested the effect of TMS on interhemispheric coherence during rest and active muscle contraction and compared coherence in stroke and older adults. We evaluated the relationships between interhemispheric coherence, paretic motor function, and the ipsilateral cortical silent period (iSP). Methods. Participants with (n = 19) and without (n = 14) chronic stroke either rested or maintained a contraction of the ipsilateral hand muscle during simultaneous recordings of evoked responses to TMS of the ipsilesional/nondominant (i/ndM1) and contralesional/dominant (c/dM1) primary motor cortex with EEG and in the hand muscle with EMG. We calculated pre- and post-TMS interhemispheric beta coherence (15-30 Hz) between motor areas in both conditions and the iSP duration during the active condition. Results. During active i/ndM1 TMS, interhemispheric coherence increased immediately following TMS in controls but not in stroke. Coherence during active cM1 TMS was greater than iM1 TMS in the stroke group. Coherence during active iM1 TMS was less in stroke participants and was negatively associated with measures of paretic arm motor function. Paretic iSP was longer compared with controls and negatively associated with clinical measures of manual dexterity. There was no relationship between coherence and. iSP for either group. No within- or between-group differences in coherence were observed at rest. Conclusions. TMS-evoked cortical coherence during hand muscle activation can index interhemispheric interactions associated with poststroke motor function and potentially offer new insights into neural mechanisms influencing functional recovery.

Entities:  

Keywords:  GABA; Interhemispheric inhibition; electroencephalography; stroke; transcallosal inhibition; transcranial magnetic stimulation

Mesh:

Year:  2019        PMID: 31328638      PMCID: PMC6713273          DOI: 10.1177/1545968319862552

Source DB:  PubMed          Journal:  Neurorehabil Neural Repair        ISSN: 1545-9683            Impact factor:   3.919


  60 in total

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Authors:  Patrick Jung; Ulf Ziemann
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Review 4.  Interhemispheric competition after stroke: brain stimulation to enhance recovery of function of the affected hand.

Authors:  Dennis A Nowak; Christian Grefkes; Mitra Ameli; Gereon R Fink
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Authors:  Jennifer Wu; Erin Burke Quinlan; Lucy Dodakian; Alison McKenzie; Nikhita Kathuria; Robert J Zhou; Renee Augsburger; Jill See; Vu H Le; Ramesh Srinivasan; Steven C Cramer
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7.  Neural Substrates of Motor Recovery in Severely Impaired Stroke Patients With Hand Paralysis.

Authors:  Michelle L Harris-Love; Evan Chan; Alexander W Dromerick; Leonardo G Cohen
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8.  Evaluating interhemispheric cortical responses to transcranial magnetic stimulation in chronic stroke: A TMS-EEG investigation.

Authors:  Michael R Borich; Lewis A Wheaton; Sonia M Brodie; Bimal Lakhani; Lara A Boyd
Journal:  Neurosci Lett       Date:  2016-03-03       Impact factor: 3.046

9.  Neuronal circuit remodeling in the contralateral cortical hemisphere during functional recovery from cerebral infarction.

Authors:  Yusuke Takatsuru; Dai Fukumoto; Miki Yoshitomo; Tomomi Nemoto; Hideo Tsukada; Junichi Nabekura
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10.  Assessment of inter-hemispheric imbalance using imaging and noninvasive brain stimulation in patients with chronic stroke.

Authors:  David A Cunningham; Andre Machado; Daniel Janini; Nicole Varnerin; Corin Bonnett; Guang Yue; Stephen Jones; Mark Lowe; Erik Beall; Ken Sakaie; Ela B Plow
Journal:  Arch Phys Med Rehabil       Date:  2014-09-03       Impact factor: 3.966

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  7 in total

1.  Motor Cortical Network Flexibility is Associated With Biomechanical Walking Impairment in Chronic Stroke.

Authors:  Jacqueline A Palmer; Trisha M Kesar; Steven L Wolf; Michael R Borich
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2.  Neurophysiological signatures of hand motor response to dual-transcranial direct current stimulation in subacute stroke: a TMS and MEG study.

Authors:  I-Ju Kuo; Chih-Wei Tang; Yun-An Tsai; Shuen-Chang Tang; Chun-Jen Lin; Shih-Pin Hsu; Wei-Kuang Liang; Chi-Hung Juan; Catharina Zich; Charlotte J Stagg; I-Hui Lee
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3.  Portable neuromodulation induces neuroplasticity to re-activate motor function recovery from brain injury: a high-density MEG case study.

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Journal:  J Neuroeng Rehabil       Date:  2020-12-01       Impact factor: 4.262

4.  Evidence for interhemispheric imbalance in stroke patients as revealed by combining transcranial magnetic stimulation and electroencephalography.

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Review 5.  Resting motor threshold in the course of hand motor recovery after stroke: a systematic review.

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6.  Identifying Modulated Functional Connectivity in Corresponding Cerebral Networks in Facial Nerve Lesions Patients With Facial Asymmetry.

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Review 7.  Electroencephalogram (EEG) With or Without Transcranial Magnetic Stimulation (TMS) as Biomarkers for Post-stroke Recovery: A Narrative Review.

Authors:  Zafer Keser; Samuel C Buchl; Nathan A Seven; Matej Markota; Heather M Clark; David T Jones; Giuseppe Lanzino; Robert D Brown; Gregory A Worrell; Brian N Lundstrom
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