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基线感觉运动 GABA 水平塑造了老年人运动学习引起的神经可塑性过程。

Baseline sensorimotor GABA levels shape neuroplastic processes induced by motor learning in older adults.

机构信息

Department of Movement Sciences, Movement Control and Neuroplasticity Research Group, KU Leuven, Leuven, Belgium.

LBI-KU Leuven Brain Institute, Leuven, Belgium.

出版信息

Hum Brain Mapp. 2020 Sep;41(13):3680-3695. doi: 10.1002/hbm.25041. Epub 2020 Jun 25.

Abstract

Previous research in young adults has demonstrated that both motor learning and transcranial direct current stimulation (tDCS) trigger decreases in the levels of gamma-aminobutyric acid (GABA) in the sensorimotor cortex, and these decreases are linked to greater learning. Less is known about the role of GABA in motor learning in healthy older adults, a knowledge gap that is surprising given the established aging-related reductions in sensorimotor GABA. Here, we examined the effects of motor learning and subsequent tDCS on sensorimotor GABA levels and resting-state functional connectivity in the brains of healthy older participants. Thirty-six older men and women completed a motor sequence learning task before receiving anodal or sham tDCS to the sensorimotor cortex. GABA-edited magnetic resonance spectroscopy of the sensorimotor cortex and resting-state (RS) functional magnetic resonance imaging data were acquired before and after learning/stimulation. At the group level, neither learning nor anodal tDCS significantly modulated GABA levels or RS connectivity among task-relevant regions. However, changes in GABA levels from the baseline to post-learning session were significantly related to motor learning magnitude, age, and baseline GABA. Moreover, the change in functional connectivity between task-relevant regions, including bilateral motor cortices, was correlated with baseline GABA levels. These data collectively indicate that motor learning-related decreases in sensorimotor GABA levels and increases in functional connectivity are limited to those older adults with higher baseline GABA levels and who learn the most. Post-learning tDCS exerted no influence on GABA levels, functional connectivity or the relationships among these variables in older adults.

摘要

先前针对年轻人的研究表明,运动学习和经颅直流电刺激(tDCS)都会导致感觉运动皮层中γ-氨基丁酸(GABA)水平降低,而这些降低与更大的学习效果相关。在健康的老年人中,关于 GABA 在运动学习中的作用的了解较少,这令人惊讶,因为已经确定了与年龄相关的感觉运动 GABA 减少。在这里,我们研究了运动学习和随后的 tDCS 对健康老年人大脑中感觉运动 GABA 水平和静息状态功能连接的影响。36 名男性和女性老年人在接受感觉运动皮层的阳极或假 tDCS 之前完成了运动序列学习任务。在学习/刺激之前和之后,采集了感觉运动皮层的 GABA 编辑磁共振波谱和静息状态(RS)功能磁共振成像数据。在群体水平上,学习和阳极 tDCS 均未显著调节 GABA 水平或与任务相关区域的 RS 连接。然而,从基线到学习后阶段的 GABA 水平变化与运动学习幅度、年龄和基线 GABA 显著相关。此外,与任务相关区域之间的功能连接变化,包括双侧运动皮层,与基线 GABA 水平相关。这些数据共同表明,与运动学习相关的感觉运动 GABA 水平降低和功能连接增加仅限于那些基线 GABA 水平较高且学习最多的老年人。学习后 tDCS 对老年人的 GABA 水平、功能连接或这些变量之间的关系没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d03/7416055/107b02d84a2b/HBM-41-3680-g001.jpg

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