Brain transcranial direct current stimulation modulates motor excitability in mice

被引:101
作者
Cambiaghi, Marco [1 ]
Velikova, Svetla [1 ]
Gonzalez-Rosa, Javier J. [1 ]
Cursi, Marco [1 ]
Comi, Giancarlo [1 ]
Leocani, Letizia [1 ]
机构
[1] Univ Sci Inst, Hosp San Raffaele, Inst Expt Neurol INSPE, Expt Neurophysiol Unit, I-20132 Milan, Italy
关键词
C57BL; 6; mice; corticospinal; motor-evoked potentials; neuromodulation; transcranial electrical stimulation; ELECTRICAL-STIMULATION; DC-STIMULATION; MAGNETIC STIMULATION; ANODAL POLARIZATION; CEREBRAL-CORTEX; RAT; MECHANISMS; NEURONS; TDCS; ACTIVATION;
D O I
10.1111/j.1460-9568.2010.07092.x
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
Shortly after the application of weak transcranial direct current stimulation (tDCS) to the animal and human brain, changes in corticospinal excitability, which mainly depend on polarity, duration and current density of the stimulation protocol, have been reported. In humans, anodal tDCS has been reported to enhance motor-evoked potentials (MEPs) elicited by transcranial brain stimulation while cathodal tDCS has been shown to decrease them. Here we investigated the effects produced by tDCS on mice motor cortex. MEPs evoked by transcranial electric stimulation were recorded from forelimbs of 12 C57BL/6 mice, under sevofluorane anaesthesia, before and after (0, 5 and 10 min) anodal and cathodal tDCS (tDCS duration 10 min). With respect to sham condition stimulation (anaesthesia), MEP size was significantly increased immediately after anodal tDCS, and was reduced after cathodal tDCS (similar to 20% vs. sham). Both effects declined towards basal levels in the following 10 min. Although the site and mechanisms of action of tDCS need to be more clearly identified, the directionality of effects of tDCS on mice MEPs is consistent with previous findings in humans. The feasibility of tDCS in mice suggests the potential applicability of this technique to assess the potential therapeutic options of brain polarization in animal models of neurological and neuropsychiatric diseases.
引用
收藏
页码:704 / 709
页数:6
相关论文
共 47 条
[1]
Motor evoked potentials in a mouse model of chronic multiple sclerosis [J].
Amadio, S ;
Pluchino, S ;
Brini, E ;
Morana, P ;
Guerriero, R ;
Boneschi, FM ;
Comi, G ;
Zaratin, P ;
Muzio, V ;
Del Carro, U .
MUSCLE & NERVE, 2006, 33 (02) :265-273
[2]
A COMPARISON OF CORTICOSPINAL ACTIVATION BY MAGNETIC COIL AND ELECTRICAL-STIMULATION OF MONKEY MOTOR CORTEX [J].
AMASSIAN, VE ;
QUIRK, GJ ;
STEWART, M .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1990, 77 (05) :390-401
[3]
Non-synaptic mechanisms underlie the after-effects of cathodal transcutaneous direct current stimulation of the human brain [J].
Ardolino, G ;
Bossi, B ;
Barbieri, S ;
Priori, A .
JOURNAL OF PHYSIOLOGY-LONDON, 2005, 568 (02) :653-663
[4]
Effects of uniform extracellular DC electric fields on excitability in rat hippocampal slices in vitro [J].
Bikson, M ;
Inoue, M ;
Akiyama, H ;
Deans, JK ;
Fox, JE ;
Miyakawa, H ;
Jefferys, JGR .
JOURNAL OF PHYSIOLOGY-LONDON, 2004, 557 (01) :175-190
[5]
ACTION OF BRIEF POLARIZING CURRENTS ON CEREBRAL CORTEX OF RAT .1. DURING CURRENT FLOW + .2. IN PRODUCTION OF LONG-LECTING AFTER-EFFECTS [J].
BINDMAN, LJ ;
LIPPOLD, OCJ ;
REDFEARN, JW .
JOURNAL OF PHYSIOLOGY-LONDON, 1964, 172 (03) :369-&
[6]
Boggio PS, 2007, RESTOR NEUROL NEUROS, V25, P123
[7]
Altered mechanisms of motor-evoked potential generation after transient focal cerebral ischemia in the rat:: implications for transcranial magnetic stimulation [J].
Bolay, H ;
Gürsoy-Özdemir, Y ;
Ünal, I ;
Dalkara, T .
BRAIN RESEARCH, 2000, 873 (01) :26-33
[8]
Transcranial magnetic and electrical stimulation compared: Does TES activate intracortical neuronal circuits? [J].
Brocke, J ;
Irlbacher, K ;
Hauptmann, B ;
Voss, M ;
Brandt, SA .
CLINICAL NEUROPHYSIOLOGY, 2005, 116 (12) :2748-2756
[9]
Depression of motor cortex excitability by low-frequency transcranial magnetic stimulation [J].
Chen, R ;
Classen, J ;
Gerloff, C ;
Celnik, P ;
Wassermann, EM ;
Hallett, M ;
Cohen, LG .
NEUROLOGY, 1997, 48 (05) :1398-1403
[10]
Enflurane directly depresses glutamate AMPA and NMDA currents in mouse spinal cord motor neurons independent of actions on GABAA or glycine receptors [J].
Cheng, G ;
Kendig, JJ .
ANESTHESIOLOGY, 2000, 93 (04) :1075-1084