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脑经颅直流电刺激调节小鼠运动兴奋性。

Brain transcranial direct current stimulation modulates motor excitability in mice.

机构信息

Experimental Neurophysiology Unit, Institute of Experimental Neurology - INSPE, University Scientific Institute Hospital San Raffaele, Via Olgettina 60, 20132 Milan, Italy.

出版信息

Eur J Neurosci. 2010 Feb;31(4):704-9. doi: 10.1111/j.1460-9568.2010.07092.x. Epub 2010 Feb 5.


DOI:10.1111/j.1460-9568.2010.07092.x
PMID:20141528
Abstract

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 (approximately 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.

摘要

在将弱经颅直流电刺激(tDCS)应用于动物和人类大脑后不久,皮质脊髓兴奋性的变化就被报道了,这种变化主要取决于刺激方案的极性、持续时间和电流密度。在人类中,已经报道阳极 tDCS 可以增强经颅脑刺激引起的运动诱发电位(MEPs),而阴极 tDCS 则显示出降低它们的作用。在这里,我们研究了 tDCS 对小鼠运动皮层的影响。在七氟醚麻醉下,从 12 只 C57BL/6 小鼠的前肢记录经颅电刺激引起的 MEPs,在阳极和阴极 tDCS(tDCS 持续时间为 10 分钟)前后(0、5 和 10 分钟)进行记录。与假刺激(麻醉)相比,阳极 tDCS 后 MEPs 大小明显增加,而阴极 tDCS 后则减少(约 20%比假刺激)。这两种效应在接下来的 10 分钟内逐渐恢复到基础水平。尽管 tDCS 的作用部位和机制需要更清楚地确定,但 tDCS 对小鼠 MEPs 的影响的方向性与之前在人类中的发现一致。tDCS 在小鼠中的可行性表明,这种技术在评估神经和神经精神疾病动物模型中大脑极化的潜在治疗选择方面具有潜在的适用性。

相似文献

[1]
Brain transcranial direct current stimulation modulates motor excitability in mice.

Eur J Neurosci. 2010-2-5

[2]
Slow-oscillatory transcranial direct current stimulation can induce bidirectional shifts in motor cortical excitability in awake humans.

Neuroscience. 2010-1-18

[3]
Transcranial direct current stimulation over the primary motor cortex during fMRI.

Neuroimage. 2011-1-4

[4]
Acute changes in motor cortical excitability during slow oscillatory and constant anodal transcranial direct current stimulation.

J Neurophysiol. 2009-8-19

[5]
Transcranial direct current stimulation effects on I-wave activity in humans.

J Neurophysiol. 2011-3-23

[6]
Improved isometric force endurance after transcranial direct current stimulation over the human motor cortical areas.

Eur J Neurosci. 2007-7

[7]
Modulating parameters of excitability during and after transcranial direct current stimulation of the human motor cortex.

J Physiol. 2005-10-1

[8]
Shaping the effects of transcranial direct current stimulation of the human motor cortex.

J Neurophysiol. 2007-4

[9]
Preconditioning with transcranial direct current stimulation sensitizes the motor cortex to rapid-rate transcranial magnetic stimulation and controls the direction of after-effects.

Biol Psychiatry. 2004-11-1

[10]
Excitability modulation of the motor system induced by transcranial direct current stimulation: a multimodal approach.

Neuroimage. 2013-7-9

引用本文的文献

[1]
Physical activity and anodal-transcranial direct current stimulation: a synergistic approach to boost motor cortex plasticity.

Brain Commun. 2025-5-6

[2]
Repeated tDCS at Clinically Relevant Field Intensity Can Boost Concurrent Motor Learning in Rats.

J Neurosci. 2025-5-14

[3]
Repeated tDCS at clinically-relevant field intensity can boost concurrent motor learning in rats.

bioRxiv. 2025-1-16

[4]
Aftereffect of single transcranial direct and alternating current stimulation on spontaneous home-cage and open-field EEG activities in a mouse model of Alzheimer's disease.

Front Aging Neurosci. 2024-12-16

[5]
Effects of transcranial direct current stimulation over human motor cortex on cognitive-motor and sensory-motor functions.

Sci Rep. 2023-11-28

[6]
Noninvasive Deep Brain Stimulation via Temporal Interference Electric Fields Enhanced Motor Performance of Mice and Its Neuroplasticity Mechanisms.

Mol Neurobiol. 2024-6

[7]
Transcranial direct current stimulation combined with a brief intervention for smoking cessation: a randomized double-blind clinical trial.

Eur Arch Psychiatry Clin Neurosci. 2024-6

[8]
Efficacy and safety of Transcranial Direct Current Stimulation (tDCS) on cognitive function in chronic schizophrenia with Tardive Dyskinesia (TD): a randomized, double-blind, sham-controlled, clinical trial.

BMC Psychiatry. 2023-8-24

[9]
Transcranial direct current stimulation leads to faster acquisition of motor skills, but effects are not maintained at retention.

PLoS One. 2022

[10]
Anodal and cathodal transcranial direct current stimulations of prefrontal cortex in a rodent model of Alzheimer's disease.

Front Aging Neurosci. 2022-8-23

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