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前额叶经颅直流电刺激改变皮质和皮质下奖赏系统的激活及连接性:一项经颅直流电刺激-功能磁共振成像研究

Prefrontal transcranial direct current stimulation alters activation and connectivity in cortical and subcortical reward systems: a tDCS-fMRI study.

作者信息

Weber Matthew J, Messing Samuel B, Rao Hengyi, Detre John A, Thompson-Schill Sharon L

机构信息

Department of Psychology, University of Pennsylvania, Philadelphia, Pennsylvania.

出版信息

Hum Brain Mapp. 2014 Aug;35(8):3673-86. doi: 10.1002/hbm.22429. Epub 2014 Jan 22.

Abstract

Transcranial direct current stimulation (tDCS) is a noninvasive brain stimulation technique used both experimentally and therapeutically to modulate regional brain function. However, few studies have directly measured the aftereffects of tDCS on brain activity or examined changes in task-related brain activity consequent to prefrontal tDCS. To investigate the neural effects of tDCS, we collected fMRI data from 22 human subjects, both at rest and while performing the Balloon Analog Risk Task (BART), before and after true or sham transcranial direct current stimulation. TDCS decreased resting blood perfusion in orbitofrontal cortex and the right caudate and increased task-related activity in the right dorsolateral prefrontal cortex (DLPFC) and anterior cingulate cortex (ACC) in response to losses but not wins or increasing risk. Network analysis showed that whole-brain connectivity of the right ACC correlated positively with the number of pumps subjects were willing to make on the BART, and that tDCS reduced connectivity between the right ACC and the rest of the brain. Whole-brain connectivity of the right DLPFC also correlated negatively with pumps on the BART, as prior literature would suggest. Our results suggest that tDCS can alter activation and connectivity in regions distal to the electrodes.

摘要

经颅直流电刺激(tDCS)是一种非侵入性脑刺激技术,在实验和治疗中均用于调节局部脑功能。然而,很少有研究直接测量tDCS对脑活动的后续影响,或研究前额叶tDCS后与任务相关的脑活动变化。为了研究tDCS的神经效应,我们在22名人类受试者接受真或假经颅直流电刺激之前和之后,在静息状态和执行气球模拟风险任务(BART)时收集了功能磁共振成像(fMRI)数据。tDCS降低了眶额叶皮质和右侧尾状核的静息血流灌注,并增加了右侧背外侧前额叶皮质(DLPFC)和前扣带回皮质(ACC)在面对损失而非胜利或风险增加时与任务相关的活动。网络分析表明,右侧ACC的全脑连通性与受试者在BART上愿意按压的次数呈正相关,并且tDCS降低了右侧ACC与大脑其他部分之间的连通性。正如先前文献所表明的,右侧DLPFC的全脑连通性也与BART上的按压次数呈负相关。我们的结果表明,tDCS可以改变电极远端区域的激活和连通性。

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