Modulation of primary motor cortex after experimentally induced and use-dependent plasticity in young and older adults.

IF 1.7 4区 医学 Q4 NEUROSCIENCES
John Cirillo, Carys R Ward, Nicholas Gant, Stacey A Reading, April Ren, Winston D Byblow
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Abstract

The ability to induce plasticity in human primary motor cortex (M1) may be diminished with advancing age. Intracortical inhibition is critical for M1 plasticity and regular participation in physical activity can promote M1 plasticity. This study assessed modulation of M1 excitability and inhibition after paired associative stimulation (PAS) and motor skill acquisition in young and older adults, which also considered the cardiorespiratory fitness of each participant. Thirty-one older (60-88 years) and 20 young (20-33 years) adults were recruited. Electromyographic recordings were obtained from the dominant hand first dorsal interosseous muscle. A sequential visual isometric force task that required index finger abduction was used to investigate motor skill acquisition. Transcranial magnetic stimulation protocols were used to examine corticomotor excitability and short- and long-interval intracortical inhibition (SICI and LICI) before and after each intervention. Corticomotor excitability, normalized to baseline, increased after PAS in young but not older adults, while no age-related differences were observed after skill acquisition. Facilitation of corticomotor excitability after PAS, but not skill acquisition, was positively correlated with cardiorespiratory fitness. SICI decreased after PAS and increased after skill acquisition, with no differences between age groups. LICI increased for young adults and decreased for older adults after PAS, but did not change after skill acquisition. Overall, there was intervention-specific modulation of inhibition, an age-related difference in LICI after PAS, and higher cardiorespiratory fitness was associated with greater corticomotor excitability facilitation after PAS. These findings may help inform future endeavors focused on attenuating age-related declines in brain and motor-cognitive function.

初级运动皮层在实验诱导和使用依赖可塑性后的调节。
人类初级运动皮层(M1)诱导可塑性的能力可能随着年龄的增长而减弱。皮质内抑制对M1可塑性至关重要,经常参加体育活动可以促进M1可塑性。本研究评估了年轻人和老年人在配对联想刺激(PAS)和运动技能习得后M1兴奋性和抑制的调节,同时也考虑了每个参与者的心肺健康。招募了31名老年人(60-88岁)和20名年轻人(20-33岁)。从优势手第一背骨间肌获得肌电图记录。采用需要食指外展的顺序视觉等距力任务来研究运动技能的习得。采用经颅磁刺激方案检测每次干预前后的皮质运动兴奋性和短、长间隔皮质内抑制(SICI和LICI)。皮质运动兴奋性,归一化到基线后,在年轻人中增加,但在老年人中没有,而在技能习得后没有观察到年龄相关的差异。PAS后皮质运动兴奋性的促进与心肺适能呈正相关,但与技能习得无关。SICI在PAS后下降,在技能习得后增加,年龄组之间无差异。在PAS后,年轻人的LICI增加,老年人的LICI减少,但在技能习得后没有变化。总的来说,有干预特异性的抑制调节,PAS后LICI的年龄相关差异,以及PAS后更高的心肺适应性与更大的皮质运动兴奋性促进相关。这些发现可能有助于为未来专注于减轻与年龄相关的大脑和运动认知功能衰退的努力提供信息。
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
CiteScore
3.60
自引率
5.00%
发文量
228
审稿时长
1 months
期刊介绍: Founded in 1966, Experimental Brain Research publishes original contributions on many aspects of experimental research of the central and peripheral nervous system. The focus is on molecular, physiology, behavior, neurochemistry, developmental, cellular and molecular neurobiology, and experimental pathology relevant to general problems of cerebral function. The journal publishes original papers, reviews, and mini-reviews.
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