Stimulation of the Premotor Cortex Enhances Interhemispheric Functional Connectivity in Association with Upper Limb Motor Recovery in Moderate-to-Severe Chronic Stroke.

IF 2.4 3区 医学 Q3 NEUROSCIENCES
Brain connectivity Pub Date : 2023-10-01 Epub Date: 2023-04-10 DOI:10.1089/brain.2022.0064
Robert H Unger, Mark J Lowe, Erik B Beall, Francois Bethoux, Stephen E Jones, Andre G Machado, Ela B Plow, David A Cunningham
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引用次数: 0

Abstract

Background: Transcranial direct current stimulation (tDCS) targeting the primary motor cortex is modestly effective for promoting upper-limb motor function following stroke. The premotor cortex (PMC) represents an alternative target based on its higher likelihood of survival and dense motor-network connections. Objective: The objective of this study was to determine whether ipsilesional PMC tDCS affects motor network functional connectivity (FC) in association with reduction in motor impairment, and to determine whether this relationship is influenced by baseline motor severity. Methods: Participants with chronic stroke were randomly assigned to receive active-PMC or sham-tDCS with rehabilitation for 5 weeks. Resting-state functional magnetic resonance imaging was acquired to characterize change in FC across motor-cortical regions. Results: Our results indicated that moderate-to-severe participants who received active-tDCS had greater increases in PMC-to-PMC interhemispheric FC compared to those who received sham; this increase was correlated with reduction in proximal motor impairment. There was also an increase in intrahemispheric dorsal premotor cortex-primary motor cortex FC across participants regardless of severity or tDCS group assignment; this increase was correlated with a reduction in proximal motor impairment in only the mild participants. Conclusions: Our findings have significance for developing targeted brain stimulation approaches. While participants with milder impairments may inherently recruit viable substrates within the ipsilesional hemisphere, stimulation of PMC may enhance interhemispheric FC in association with recovery in more impaired participants. Trial Registration: ClinicalTrials.gov Identifier: NCT01539096; Registration date: February 21, 2012.

刺激运动前皮质增强半球间功能连接与中重度慢性卒中上肢运动恢复相关。
背景:以初级运动皮层为靶点的经颅直流电刺激(tDCS)对促进中风后上肢运动功能有一定效果。运动前皮层(PMC)代表了一个替代目标,基于其更高的生存可能性和密集的运动网络连接。目的:本研究的目的是确定同侧PMC tDCS是否影响运动网络功能连接(FC),从而减少运动损伤,并确定这种关系是否受基线运动严重程度的影响。方法:慢性脑卒中患者被随机分配接受为期5周的主动PMC或假tDCS康复治疗。获得静息状态功能性磁共振成像,以表征运动皮层区域FC的变化。结果:我们的结果表明,与接受假手术的参与者相比,接受主动tDCS的中度至重度参与者的PMC至PMC半球间FC增加更大;这种增加与近端运动损伤的减少相关。参与者的大脑半球内背侧前运动皮层初级运动皮层FC也有所增加,无论严重程度或tDCS组分配如何;这种增加与只有轻度参与者的近端运动损伤减少相关。结论:我们的研究结果对开发有针对性的脑刺激方法具有重要意义。虽然损伤较轻的参与者可能会在同侧半球内固有地募集有活力的底物,但PMC的刺激可能会增强半球间FC,这与更多受损参与者的恢复有关。试验注册:ClinicalTrials.gov标识符:NCT01539096;注册日期:2012年2月21日。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Brain connectivity
Brain connectivity Neuroscience-General Neuroscience
CiteScore
4.80
自引率
0.00%
发文量
80
期刊介绍: Brain Connectivity provides groundbreaking findings in the rapidly advancing field of connectivity research at the systems and network levels. The Journal disseminates information on brain mapping, modeling, novel research techniques, new imaging modalities, preclinical animal studies, and the translation of research discoveries from the laboratory to the clinic. This essential journal fosters the application of basic biological discoveries and contributes to the development of novel diagnostic and therapeutic interventions to recognize and treat a broad range of neurodegenerative and psychiatric disorders such as: Alzheimer’s disease, attention-deficit hyperactivity disorder, posttraumatic stress disorder, epilepsy, traumatic brain injury, stroke, dementia, and depression.
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