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经颅磁刺激与脑电图联合应用:过去、现在与未来。

Combined transcranial magnetic stimulation and electroencephalography: its past, present and future.

机构信息

Centre for Addiction and Mental Health, University of Toronto, Toronto, Ontario, Canada.

出版信息

Brain Res. 2012 Jun 29;1463:93-107. doi: 10.1016/j.brainres.2012.04.045. Epub 2012 Apr 28.


DOI:10.1016/j.brainres.2012.04.045
PMID:22608075
Abstract

Transcranial magnetic stimulation (TMS) is used to index several neurophysiological processes including excitability, inhibition and plasticity. However, these measures are conventionally limited to the motor cortex and recorded from peripheral muscles. This represents a significant limitation when non-motor neurophysiological processes are of primary interest. In the last several years, TMS has been combined with electroencephalography (EEG) to derive such measures directly from the cortex. Initial studies demonstrated that meaningful recordings could be derived without being substantially affected by TMS stimulus artifact due to advancements in EEG amplifier technology. Subsequently, TMS measures of cortical excitability were reliably recorded and found to be related with more conventional TMS electromyography recordings of excitability in the cortex. More recently, other key neurophysiological indices including cortical inhibition and interhemispheric connectivity have also been reported. In this article, such findings will be reviewed and their importance discussed vis à vis healthy and disease states. We will conclude by highlighting the limitations of this work and discuss their potential future applications as a biomarker of disease states.

摘要

经颅磁刺激(TMS)用于评估多种神经生理过程,包括兴奋性、抑制性和可塑性。然而,这些测量方法通常仅限于运动皮层,并从外周肌肉记录。当主要关注非运动神经生理过程时,这是一个重大的限制。在过去的几年中,TMS 已与脑电图(EEG)结合使用,直接从皮层获得这些测量结果。最初的研究表明,由于 EEG 放大器技术的进步,即使不受 TMS 刺激伪影的显著影响,也可以得出有意义的记录。随后,可靠地记录了皮质兴奋性的 TMS 测量值,并发现与更传统的 TMS 肌电图记录的皮质兴奋性相关。最近,还报告了其他关键的神经生理指标,包括皮质抑制和大脑两半球间的连通性。本文将回顾这些发现,并讨论其在健康和疾病状态下的重要性。最后,我们将强调这项工作的局限性,并讨论其作为疾病状态生物标志物的潜在未来应用。

相似文献

[1]
Combined transcranial magnetic stimulation and electroencephalography: its past, present and future.

Brain Res. 2012-4-28

[2]
Inhibition of the cortex using transcranial magnetic stimulation in psychiatric populations: current and future directions.

J Psychiatry Neurosci. 2012-11

[3]
General indices to characterize the electrical response of the cerebral cortex to TMS.

Neuroimage. 2009-9-19

[4]
Transcranial magnetic stimulation at the interface with other techniques: a powerful tool for studying the human cortex.

Neuroscientist. 2011-2-10

[5]
Toward the establishment of neurophysiological indicators for neuropsychiatric disorders using transcranial magnetic stimulation-evoked potentials: A systematic review.

Psychiatry Clin Neurosci. 2019-11-2

[6]
Human brain cortical correlates of short-latency afferent inhibition: a combined EEG-TMS study.

J Neurophysiol. 2012-3-28

[7]
Modulation of cortical oscillatory activities induced by varying single-pulse transcranial magnetic stimulation intensity over the left primary motor area: a combined EEG and TMS study.

Neuroimage. 2005-10-1

[8]
Reliability of long-interval cortical inhibition in healthy human subjects: a TMS-EEG study.

J Neurophysiol. 2010-6-23

[9]
TMS-EEG co-registration: on TMS-induced artifact.

Clin Neurophysiol. 2009-7

[10]
TMS-EEG: a technique that has come of age?

Clin Neurophysiol. 2010-3

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Cortical plasticity differences in substance use disorders.

Fundam Res. 2023-3-7

[2]
[Comparative analysis of the impact of repetitive transcranial magnetic stimulation and burst transcranial magnetic stimulation at different frequencies on memory function and neuronal excitability of mice].

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2024-10-25

[3]
TMS provokes target-dependent intracranial rhythms across human cortical and subcortical sites.

Brain Stimul. 2024

[4]
The external evocation and movement-related modulation of motor cortex inhibition in children and adolescents with Tourette syndrome - a TMS/EEG study.

Front Neurosci. 2023-10-19

[5]
TMS provokes target-dependent intracranial rhythms across human cortical and subcortical sites.

bioRxiv. 2023-11-19

[6]
Abnormal functional asymmetry and its behavioural correlates in adults with ADHD: A TMS-EEG study.

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[7]
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Neuropsychopharmacology. 2023-1

[8]
Resting and TMS-EEG markers of treatment response in major depressive disorder: A systematic review.

Front Hum Neurosci. 2022-8-4

[9]
Neural correlates of N-back task performance and proposal for corresponding neuromodulation targets in psychiatric and neurodevelopmental disorders.

Psychiatry Clin Neurosci. 2022-10

[10]
Electroencephalogram (EEG) With or Without Transcranial Magnetic Stimulation (TMS) as Biomarkers for Post-stroke Recovery: A Narrative Review.

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