Using transcranial direct-current stimulation (tDCS) to understand cognitive processing

被引:0
作者
Robert M. G. Reinhart
Josh D. Cosman
Keisuke Fukuda
Geoffrey F. Woodman
机构
[1] Boston University,Department of Psychological and Brain Sciences, Center for Research in Sensory Communications and Neural Technology, Center for Systems Neuroscience
[2] Pfizer Inc.,Department of Translational Medicine
[3] University of Toronto Mississauga,Department of Psychology
[4] Vanderbilt University,Department of Psychology, Center for Integrative and Cognitive Neuroscience, Vanderbilt Vision Research Center
来源
Attention, Perception, & Psychophysics | 2017年 / 79卷
关键词
Cognitive neuroscience; Methods: Direct brain stimulation;
D O I
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中图分类号
学科分类号
摘要
Noninvasive brain stimulation methods are becoming increasingly common tools in the kit of the cognitive scientist. In particular, transcranial direct-current stimulation (tDCS) is showing great promise as a tool to causally manipulate the brain and understand how information is processed. The popularity of this method of brain stimulation is based on the fact that it is safe, inexpensive, its effects are long lasting, and you can increase the likelihood that neurons will fire near one electrode and decrease the likelihood that neurons will fire near another. However, this method of manipulating the brain to draw causal inferences is not without complication. Because tDCS methods continue to be refined and are not yet standardized, there are reports in the literature that show some striking inconsistencies. Primary among the complications of the technique is that the tDCS method uses two or more electrodes to pass current and all of these electrodes will have effects on the tissue underneath them. In this tutorial, we will share what we have learned about using tDCS to manipulate how the brain perceives, attends, remembers, and responds to information from our environment. Our goal is to provide a starting point for new users of tDCS and spur discussion of the standardization of methods to enhance replicability.
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页码:3 / 23
页数:20
相关论文
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