Therapeutic effects of non-invasive brain stimulation with direct currents (tDCS) in neuropsychiatric diseases

被引:290
作者
Kuo, Min-Fang [1 ]
Paulus, Walter [1 ]
Nitsche, Michael A. [1 ]
机构
[1] Univ Gottingen, Clin Clin Neurophysiol, Univ Med Ctr, D-37099 Gottingen, Germany
关键词
Transcranial direct current stimulation; Non-invasive brain stimulation; Neuroplasticity; Pain; Depression; Therapy; HUMAN MOTOR CORTEX; TRANSCRANIAL DC STIMULATION; LONG-TERM POTENTIATION; PREFRONTAL CORTEX; DOUBLE-BLIND; CORTICAL STIMULATION; FUNCTIONAL CONNECTIVITY; HOMEOSTATIC PLASTICITY; MAGNETIC STIMULATION; EXCITABILITY CHANGES;
D O I
10.1016/j.neuroimage.2013.05.117
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Neuroplasticity, which is the dynamic structural and functional reorganization of central nervous system connectivity due to environmental and internal demands, is recognized as a major physiological basis for adaption of cognition, and behavior, and thus of utmost importance for normal brain function. Pathological alterations of plasticity are increasingly explored as pathophysiological foundation of diverse neurological and psychiatric diseases. Non-invasive brain stimulation techniques (NIBS), such as repetitive transcranial magnetic stimulation (rTMS), and transcranial direct current stimulation (tDCS), are able to induce and modulate neuroplasticity in humans. Therefore, they have potential to alter pathological plasticity on the one hand, and foster physiological plasticity on the other, in neuropsychiatric diseases to reduce symptoms, and enhance rehabilitation. tDCS is an emerging NIBS tool, which induces glutamatergic plasticity via application of relatively weak currents through the scalp in humans. In the last years its efficacy to treat neuropsychiatric diseases has been explored increasingly. In this review, we will give an overview of pathological alterations of plasticity in neuropsychiatric diseases, gather clinical studies involving tDCS to ameliorate symptoms, and discuss future directions of application, with an emphasis on optimizing stimulation effects. (C) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:948 / 960
页数:13
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