综述
ENGLISH ABSTRACT
经颅交流电刺激干预神经精神疾病的研究进展
张文睿
赵文凤
张茗淋
王云霜
王玉平
王红星
作者及单位信息
·
DOI: 10.3760/cma.j.cn113661-20191105-00378
Research progress of transcranial alternating current stimulation for neuropsychiatric diseases
Zhang Wenrui
Zhao Wenfeng
Zhang Minglin
Wang Yunshuang
Wang Yuping
Wang Hongxing
Authors Info & Affiliations
Zhang Wenrui
Department of Neurology, Xuanwu Hospital, Capital Medical University, Beijing 100053, China
Zhao Wenfeng
Zhang Minglin
Wang Yunshuang
Wang Yuping
Wang Hongxing
·
DOI: 10.3760/cma.j.cn113661-20191105-00378
2997
307
0
0
3
0
PDF下载
APP内阅读
摘要

经颅交流电刺激是一种无创的电刺激疗法,有望成为干预大脑相关疾病的一种新的神经调控方法。本文中简要介绍与经颅交流电刺激干预疗效的相关因素、可能的治疗机制、临床应用及其发展前景。

电刺激疗法;精神病;神经疾病;经颅交流电刺激;神经调控
ABSTRACT

Transcranial alternating current stimulation is a non-invasive electric stimulation therapy and a promising neuromodulation approach to treat brain-related diseases. This article briefly introduces the factors related to treatment efficacy, possible mechanism, clinical application, and future development of transcranial alternating current stimulation.

Electric stimulation therapy;Psychotic disorders;Neurological disorders;Transcranial alternating current stimulation;Neuromodulation
Wang Hongxing, Email: nc.defudabe.umcc.hwxgnixgnohgnaw
引用本文

张文睿,赵文凤,张茗淋,等. 经颅交流电刺激干预神经精神疾病的研究进展[J]. 中华精神科杂志,2020,53(02):151-154.

DOI:10.3760/cma.j.cn113661-20191105-00378

PERMISSIONS

Request permissions for this article from CCC.

评价本文
*以上评分为匿名评价
经颅交流电刺激(transcranial alternating current stimulation, tACS)是一种低强度的非侵入性经颅电刺激(cranial electrical stimulation, CES)方法 [ 1 , 2 ]。tACS通过影响大脑神经细胞电活动的同步化和去同步化从而调节大脑皮质的兴奋性和大脑功能 [ 1 , 2 , 3 , 4 ]。该技术具有无创、易操作、低成本、安全等特点,这使得该技术在医学领域具有一定的发展潜力 [ 2 , 5 ]。CES包括经颅直流电刺激(transcranial direct current stimulation, tDCS)和tACS两大类,CES的发展可追溯到18世纪Giovanni Aldini和Alexandro Volta应用直流电对人体和动物的研究 [ 6 ]。20世纪30年代电休克治疗(electroconvulsive therapy, ECT)出现后,有关低强度的CES研究逐渐减少。ECT可导致患者意识丧失,加之受交流电引发ECT的启发,低强度电流的CES再受到重视 [ 7 ]。20世纪50年代在前苏联关于该项技术进行了大量研究,1957年Aann′Ev等首次发表了使用低强度电流"CES"应用的研究。1978年FDA批准了低强度电流的CES用于治疗焦虑症、抑郁症和失眠症 [ 7 ]。目前有关tDCS的临床研究报道较多见 [ 8 ],但很少有关tACS的报道 [ 9 ],故我们重点介绍与tACS疗效相关的因素、tACS可能的治疗机制以及临床应用和发展前景。
试读结束,您可以通过登录机构账户或个人账户后获取全文阅读权限。
参考文献
[1]
王红星. 重视低强度脉冲超声波调控大脑的潜能[J]. 神经疾病与精神卫生, 2018,18(2):77-79. DOI: 10.3969/j.issn.1009-6574.2018.02.001 .
返回引文位置Google Scholar
百度学术
万方数据
Wang Hongxing . To emphasize the potential of low-intensity pulsed ultrasound in modulating brain[J]. Journal of Neuroscience and Mental Health, 2018,18(2):77-79. DOI: 10.3969/j.issn.1009-6574.2018.02.001 .
Goto CitationGoogle Scholar
Baidu Scholar
Wanfang Data
[2]
王红星,王坤,孙志超,. 经颅交流电刺激干预从未药物治疗的抑郁症患者的疗效初探[J]. 中华医学杂志, 2020,100(3):197-201. DOI: 10.3760/cma.j.issn.0376-2491.2020.03.008 .
返回引文位置Google Scholar
百度学术
万方数据
Wang Hongxing , Wang Kun , Sun Zhichao ,et al. A pilot study of transcranial alternating current stimulation in the treatment of drug-naive adult patients with major depressive disorder[J]. Natl Med J China, 2020,100(3):197-201. DOI: 10.3760/cma.j.issn.0376-2491.2020.03.008 .
Goto CitationGoogle Scholar
Baidu Scholar
Wanfang Data
[3]
Antal A , Paulus W . Transcranial alternating current stimulation (tACS)[J]. Front Hum Neurosci, 2013,7:317. DOI: 10.3389/fnhum.2013.00317 .
返回引文位置Google Scholar
百度学术
万方数据
[4]
Wang HX , Wang L , Zhang WR ,et al. Effect of transcranial alternating current stimulation for the treatment of chronic insomnia: a randomized, double-blind, parallel-group, placebo-controlled clinical trial[J]. Psychother Psychosom, 2020,89(1):38-47. DOI: 10.1159/000504609 .
返回引文位置Google Scholar
百度学术
万方数据
[5]
Wang HX , Wang L , Zhang WR ,et al. Effect of transcranial alternating current stimulation for the treatment of chronic insomnia: a randomized, double-blind, parallel-group, placebo-controlled clinical trial[J]. Psychother Psychosom, 2020,89(1):38-47. DOI: 10.1159/000504609 .
返回引文位置Google Scholar
百度学术
万方数据
[6]
Zaghi S , Acar M , Hultgren B ,et al. Noninvasive brain stimulation with low-intensity electrical currents: putative mechanisms of action for direct and alternating current stimulation[J]. Neuroscientist, 2010,16(3):285-307. DOI: 10.1177/1073858409336227 .
返回引文位置Google Scholar
百度学术
万方数据
[7]
Guleyupoglu B , Schestatsky P , Edwards D ,et al. Classification of methods in transcranial electrical stimulation (tES) and evolving strategy from historical approaches to contemporary innovations[J]. J Neurosci Methods, 2013,219(2):297-311. DOI: 10.1016/j.jneumeth.2013.07.016 .
返回引文位置Google Scholar
百度学术
万方数据
[8]
Brunoni AR , Moffa AH , Sampaio-Junior B ,et al. Trial of electrical direct-current therapy versus escitalopram for depression[J]. N Engl J Med, 2017,376(26):2523-2533. DOI: 10.1056/NEJMoa1612999 .
返回引文位置Google Scholar
百度学术
万方数据
[9]
Matsumoto H , Ugawa Y . Adverse events of tDCS and tACS: a review[J]. Clin Neurophysiol Pract, 2017,2:19-25. DOI: 10.1016/j.cnp.2016.12.003 .
返回引文位置Google Scholar
百度学术
万方数据
[10]
Tavakoli AV , Yun K . Transcranial alternating current stimulation (tACS) mechanisms and protocols[J]. Front Cell Neurosci, 2017,11:214. DOI: 10.3389/fncel.2017.00214 .
返回引文位置Google Scholar
百度学术
万方数据
[11]
Alexander ML , Alagapan S , Lugo CE ,et al. Double-blind,randomized pilot clinical trial targeting alpha oscillations with transcranial alternating current stimulation (tACS) for the treatment of major depressive disorder (MDD)[J]. Transl Psychiatry, 2019,9(1):106. DOI: 10.1038/s41398-019-0439-0 .
返回引文位置Google Scholar
百度学术
万方数据
[12]
Mylius V , Jung M , Menzler K ,et al. Effects of transcranial direct current stimulation on pain perception and working memory[J]. Eur J Pain, 2012,16(7):974-982. DOI: 10.1002/j.1532-2149.2011.00105.x .
返回引文位置Google Scholar
百度学术
万方数据
[13]
Terney D , Chaieb L , Moliadze V ,et al. Increasing human brain excitability by transcranial high-frequency random noise stimulation[J]. J Neurosci, 2008,28(52):14147-14155. DOI: 10.1523/JNEUROSCI.4248-08.2008 .
返回引文位置Google Scholar
百度学术
万方数据
[14]
Moret B , Donato R , Nucci M ,et al. Transcranial random noise stimulation (tRNS): a wide range of frequencies is needed for increasing cortical excitability[J]. Sci Rep, 2019,9(1):15150. DOI: 10.1038/s41598-019-51553-7 .
返回引文位置Google Scholar
百度学术
万方数据
[15]
Moliadze V , Atalay D , Antal A ,et al. Close to threshold transcranial electrical stimulation preferentially activates inhibitory networks before switching to excitation with higher intensities[J]. Brain Stimul, 2012,5(4):505-511. DOI: 10.1016/j.brs.2011.11.004 .
返回引文位置Google Scholar
百度学术
万方数据
[16]
肖乐,丰雷,王刚. 低场强磁刺激技术在神经精神疾病治疗中的应用与展望[J]. 中华精神科杂志, 2018,51(3):201-203. DOI: 10.3760/cma.j.issn.1006-7884.2018.03.009 .
返回引文位置Google Scholar
百度学术
万方数据
XIAO Le , Feng Lei , Wang Gang . Low-field magnetic stimulation in the treatment of neurological and psychiatric diseases: review and prospect[J]. Chin J Psychiatry, 2018,51(3):201-203. DOI: 10.3760/cma.j.issn.1006-7884.2018.03.009 .
Goto CitationGoogle Scholar
Baidu Scholar
Wanfang Data
[17]
Reato D , Rahman A , Bikson M ,et al. Low-intensity electrical stimulation affects network dynamics by modulating population rate and spike timing[J]. J Neurosci, 2010,30(45):15067-15079. DOI: 10.1523/JNEUROSCI.2059-10.2010 .
返回引文位置Google Scholar
百度学术
万方数据
[18]
Radman T , Su Y , An JH ,et al. Spike timing amplifies the effect of electric fields on neurons: implications for endogenous field effects[J]. J Neurosci, 2007,27(11):3030-3036. DOI: 10.1523/JNEUROSCI.0095-07.2007 .
返回引文位置Google Scholar
百度学术
万方数据
[19]
Ahn S , Mellin JM , Alagapan S ,et al. Targeting reduced neural oscillations in patients with schizophrenia by transcranial alternating current stimulation[J]. Neuroimage, 2019,186:126-136. DOI: 10.1016/j.neuroimage.2018.10.056 .
返回引文位置Google Scholar
百度学术
万方数据
[20]
Widge AS , Miller EK . Targeting cognition and networks through neural oscillations: next-generation clinical brain stimulation[J]. JAMA Psychiatry, 2019,76(7):671-672. DOI: 10.1001/jamapsychiatry.2019.0740 .
返回引文位置Google Scholar
百度学术
万方数据
[21]
Butts DA , Weng C , Jin J ,et al. Temporal precision in the neural code and the timescales of natural vision[J]. Nature, 2007,449(7158):92-95. DOI: 10.1038/nature06105 .
返回引文位置Google Scholar
百度学术
万方数据
[22]
Citri A , Malenka RC . Synaptic plasticity: multiple forms, functions, and mechanisms[J]. Neuropsychopharmacology, 2008,33(1):18-41. DOI: 10.1038/sj.npp.1301559 .
返回引文位置Google Scholar
百度学术
万方数据
[23]
Gabis L , Shklar B , Baruch YK ,et al. Pain reduction using transcranial electrostimulation: a double blind "active placebo" controlled trial[J]. J Rehabil Med, 2009,41(4):256-261. DOI: 10.2340/16501977-0315 .
返回引文位置Google Scholar
百度学术
万方数据
[24]
Gabis L , Shklar B , Geva D . Immediate influence of transcranial electrostimulation on pain and beta-endorphin blood levels: an active placebo-controlled study[J]. Am J Phys Med Rehabil, 2003,82(2):81-85. DOI: 10.1097/00002060-200302000-00001 .
返回引文位置Google Scholar
百度学术
万方数据
[25]
Lebedev VP , Malygin AV , Kovalevski AV ,et al. Devices for noninvasive transcranial electrostimulation of the brain endorphinergic system: application for improvement of human psycho-physiological status[J]. Artif Organs, 2002,26(3):248-251. DOI: 10.1046/j.1525-1594.2002.06944.x .
返回引文位置Google Scholar
百度学术
万方数据
[26]
Riemann D , Nissen C , Palagini L ,et al. The neurobiology, investigation, and treatment of chronic insomnia[J]. Lancet Neurol, 2015,14(5):547-558. DOI: 10.1016/S1474-4422(15)00021-6 .
返回引文位置Google Scholar
百度学术
万方数据
[27]
Fröhlich F , Sellers KK , Cordle AL . Targeting the neurophysiology of cognitive systems with transcranial alternating current stimulation[J]. Expert Rev Neurother, 2015,15(2):145-167. DOI: 10.1586/14737175.2015.992782 .
返回引文位置Google Scholar
百度学术
万方数据
[28]
Hillhouse TM , Porter JH . A brief history of the development of antidepressant drugs: from monoamines to glutamate[J]. Exp Clin Psychopharmacol, 2015,23(1):1-21. DOI: 10.1037/a0038550 .
返回引文位置Google Scholar
百度学术
万方数据
[29]
Strüber D , Rach S , Neuling T ,et al. On the possible role of stimulation duration for after-effects of transcranial alternating current stimulation[J]. Front Cell Neurosci, 2015,9:311. DOI: 10.3389/fncel.2015.00311 .
返回引文位置Google Scholar
百度学术
万方数据
[30]
Kar SK , Sarkar S . Neuro-stimulation Techniques for the Management of Anxiety Disorders: An Update[J]. Clin Psychopharmacol Neurosci, 2016,14(4):330-337. DOI: 10.9758/cpn.2016.14.4.330 .
返回引文位置Google Scholar
百度学术
万方数据
[31]
Krause V , Wach C , Südmeyer M ,et al. Cortico-muscular coupling and motor performance are modulated by 20 Hz transcranial alternating current stimulation (tACS) in Parkinson′s disease[J]. Front Hum Neurosci, 2013,7:928. DOI: 10.3389/fnhum.2013.00928 .
返回引文位置Google Scholar
百度学术
万方数据
[32]
Montez T , Poil SS , Jones BF ,et al. Altered temporal correlations in parietal alpha and prefrontal theta oscillations in early-stage Alzheimer disease[J]. Proc Natl Acad Sci U S A, 2009,106(5):1614-1619. DOI: 10.1073/pnas.0811699106 .
返回引文位置Google Scholar
百度学术
万方数据
[33]
Bystritsky A , Kerwin L , Feusner J . A pilot study of cranial electrotherapy stimulation for generalized anxiety disorder[J]. J Clin Psychiatry, 2008,69(3):412-417. DOI: 10.4088/jcp.v69n0311 .
返回引文位置Google Scholar
百度学术
万方数据
[34]
Ahn S , Prim JH , Alexander ML ,et al. Identifying and Engaging Neuronal Oscillations by Transcranial Alternating Current Stimulation in Patients With Chronic Low Back Pain: A Randomized, Crossover, Double-Blind, Sham-Controlled Pilot Study[J]. J Pain, 2019,20(3):277.e1-277.e11. DOI: 10.1016/j.jpain.2018.09.004 .
返回引文位置Google Scholar
百度学术
万方数据
[35]
Feng Y , Zhang B , Zhang J ,et al. Effects of non-invasive brain stimulation on headache intensity and frequency of headache attacks in patients with migraine: a systematic review and meta-analysis[J]. Headache, 2019,59(9):1436-1447. DOI: 10.1111/head.13645 .
返回引文位置Google Scholar
百度学术
万方数据
[36]
Naro A , Bramanti A , Leo A ,et al. Effects of cerebellar transcranial alternating current stimulation on motor cortex excitability and motor function[J]. Brain Struct Funct, 2017,222(6):2891-2906. DOI: 10.1007/s00429-016-1355-1 .
返回引文位置Google Scholar
百度学术
万方数据
[37]
Kallel L , Mondino M , Brunelin J . Effects of theta-rhythm transcranial alternating current stimulation (4.5 Hz-tACS) in patients with clozapine-resistant negative symptoms of schizophrenia: a case series[J]. J Neural Transm (Vienna), 2016,123(10):1213-1217. DOI: 10.1007/s00702-016-1574-x .
返回引文位置Google Scholar
百度学术
万方数据
[38]
Clancy KJ , Baisley SK , Albizu A ,et al. Lasting connectivity increase and anxiety reduction via transcranial alternating current stimulation[J]. Soc Cogn Affect Neurosci, 2018,13(12):1305-1316. DOI: 10.1093/scan/nsy096 .
返回引文位置Google Scholar
百度学术
万方数据
[39]
Shekelle PG , Cook IA , Miake-Lye IM ,et al. Benefits and harms of cranial electrical stimulation for chronic painful conditions, depression, anxiety, and insomnia: a systematic review[J]. Ann Intern Med, 2018,168(6):414-421. DOI: 10.7326/m17-1970 .
返回引文位置Google Scholar
百度学术
万方数据
[40]
Shekelle P , Cook I , Miake-Lye IM ,et al. The effectiveness and risks of cranial electrical stimulation for the treatment of pain, depression, anxiety, PTSD, and insomnia: a systematic review. Washington (DC):Department of Veterans Affairs (US). 2018.
返回引文位置Google Scholar
百度学术
万方数据
[41]
Fertonani A , Ferrari C , Miniussi C . What do you feel if I apply transcranial electric stimulation? Safety, sensations and secondary induced effects[J]. Clin Neurophysiol, 2015,126(11):2181-2188. DOI: 10.1016/j.clinph.2015.03.015 .
返回引文位置Google Scholar
百度学术
万方数据
[42]
Ambrus GG , Paulus W , Antal A . Cutaneous perception thresholds of electrical stimulation methods: comparison of tDCS and tRNS[J]. Clin Neurophysiol, 2010,121(11):1908-1914. DOI: 10.1016/j.clinph.2010.04.020 .
返回引文位置Google Scholar
百度学术
万方数据
[43]
Turi Z , Ambrus GG , Janacsek K ,et al. Both the cutaneous sensation and phosphene perception are modulated in a frequency-specific manner during transcranial alternating current stimulation[J]. Restor Neurol Neurosci, 2013,31(3):275-285. DOI: 10.3233/RNN-120297 .
返回引文位置Google Scholar
百度学术
万方数据
[44]
Snyder AC , Morais MJ , Willis CM ,et al. Global network influences on local functional connectivity[J]. Nat Neurosci, 2015,18(5):736-743. DOI: 10.1038/nn.3979 .
返回引文位置Google Scholar
百度学术
万方数据
备注信息
A
王红星,Email: nc.defudabe.umcc.hwxgnixgnohgnaw
B
所有作者均声明不存在利益冲突
C
北京市自然科学基金B类重点项目 (KZ201710025017)
北京市医管局培育项目 (PX2017069)
北京市科技计划项目 (Z171100000117016)
北京市"百千万人才工程" (2017-CXYF-09)
"十三五"科技部重点研发项目 (2017YFC1310001)
评论 (0条)
注册
登录
时间排序
暂无评论,发表第一条评论抢沙发
MedAI助手(体验版)
文档即答
智问智答
机器翻译
回答内容由人工智能生成,我社无法保证其准确性和完整性,该生成内容不代表我们的态度或观点,仅供参考。
生成快照
文献快照

你好,我可以帮助您更好的了解本文,请向我提问您关注的问题。

0/2000

《中华医学会杂志社用户协议》 | 《隐私政策》

《SparkDesk 用户协议》 | 《SparkDesk 隐私政策》

网信算备340104764864601230055号 | 网信算备340104726288401230013号

技术支持:

历史对话
本文全部
还没有聊天记录
设置
模式
纯净模式沉浸模式
字号