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基于尖峰时间依赖可塑性的人脑区域间有效连接的靶向调节。

Targeted Modulation of Human Brain Interregional Effective Connectivity With Spike-Timing Dependent Plasticity.

机构信息

Department of Physical Medicine and Rehabilitation, Feinberg School of Medicine, Northwestern University, Chicago, IL, USA; Center for Brain Stimulation, Shirley Ryan AbilityLab, Chicago, IL, USA; Legs + Walking Lab, Shirley Ryan AbilityLab, Chicago, IL, USA.

Center for Brain Stimulation, Shirley Ryan AbilityLab, Chicago, IL, USA.

出版信息

Neuromodulation. 2023 Jun;26(4):745-754. doi: 10.1016/j.neurom.2022.10.045. Epub 2022 Nov 18.


DOI:10.1016/j.neurom.2022.10.045
PMID:36404214
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10188658/
Abstract

OBJECTIVE: The ability to selectively up- or downregulate interregional brain connectivity would be useful for research and clinical purposes. Toward this aim, cortico-cortical paired associative stimulation (ccPAS) protocols have been developed in which two areas are repeatedly stimulated with a millisecond-level asynchrony. However, ccPAS results in humans using bifocal transcranial magnetic stimulation (TMS) have been variable, and the mechanisms remain unproven. In this study, our goal was to test whether ccPAS mechanism is spike-timing-dependent plasticity (STDP). MATERIALS AND METHODS: Eleven healthy participants received ccPAS to the left primary motor cortex (M1) → right M1 with three different asynchronies (5 milliseconds shorter, equal to, or 5 milliseconds longer than the 9-millisecond transcallosal conduction delay) in separate sessions. To observe the neurophysiological effects, single-pulse TMS was delivered to the left M1 before and after ccPAS while cortico-cortical evoked responses were extracted from the contralateral M1 using source-resolved electroencephalography. RESULTS: Consistent with STDP mechanisms, the effects on synaptic strengths flipped depending on the asynchrony. Further implicating STDP, control experiments suggested that the effects were unidirectional and selective to the targeted connection. CONCLUSION: The results support the idea that ccPAS induces STDP and may selectively up- or downregulate effective connectivity between targeted regions in the human brain.

摘要

目的:选择性地上调或下调脑区间连接的能力将有助于研究和临床目的。为此,人们开发了皮质-皮质成对关联刺激(ccPAS)方案,其中两个区域以毫秒级的异步重复刺激。然而,使用双焦点经颅磁刺激(TMS)的人类 ccPAS 结果一直存在差异,其机制仍未得到证实。在这项研究中,我们的目标是测试 ccPAS 的机制是否为尖峰时间依赖性可塑性(STDP)。

材料和方法:11 名健康参与者在单独的会话中接受了左初级运动皮层(M1)→右 M1 的 ccPAS,使用三种不同的异步(比 9 毫秒的皮质间传导延迟短 5 毫秒、相等或长 5 毫秒)。为了观察神经生理效应,在 ccPAS 前后,在左 M1 给予单脉冲 TMS,同时使用源分辨脑电图从对侧 M1 提取皮质-皮质诱发电响应。

结果:与 STDP 机制一致,突触强度的影响取决于异步性。进一步表明 STDP 的作用是单向的,并且只针对靶向连接具有选择性。

结论:这些结果支持 ccPAS 诱导 STDP 的观点,并可能选择性地上调或下调人类大脑中靶向区域之间的有效连接。

相似文献

[1]
Targeted Modulation of Human Brain Interregional Effective Connectivity With Spike-Timing Dependent Plasticity.

Neuromodulation. 2023-6

[2]
Cortico-cortical paired associative stimulation (ccPAS) over premotor-motor areas affects local circuitries in the human motor cortex via Hebbian plasticity.

Neuroimage. 2023-5-1

[3]
Can we manipulate brain connectivity? A systematic review of cortico-cortical paired associative stimulation effects.

Clin Neurophysiol. 2023-10

[4]
Impaired Spike Timing Dependent Cortico-Cortical Plasticity in Alzheimer's Disease Patients.

J Alzheimers Dis. 2018

[5]
Driving Hebbian plasticity over ventral premotor-motor projections transiently enhances motor resonance.

Brain Stimul. 2024

[6]
Enhanced action performance following TMS manipulation of associative plasticity in ventral premotor-motor pathway.

Neuroimage. 2018-9-4

[7]
Paired associative stimulation applied to the cortex can increase resting-state functional connectivity: A proof of principle study.

Neurosci Lett. 2022-7-27

[8]
Gradual enhancement of corticomotor excitability during cortico-cortical paired associative stimulation.

Sci Rep. 2022-8-29

[9]
Transcranial cortico-cortical paired associative stimulation (ccPAS) over ventral premotor-motor pathways enhances action performance and corticomotor excitability in young adults more than in elderly adults.

Front Aging Neurosci. 2023-2-16

[10]
Induction of motor associative plasticity in the posterior parietal cortex-primary motor network.

Cereb Cortex. 2015-2

引用本文的文献

[1]
Real-Time Tractography-Assisted Neuronavigation for Transcranial Magnetic Stimulation.

Hum Brain Mapp. 2025-1

[2]
Onset timing of letter processing in auditory and visual sensory cortices.

Front Integr Neurosci. 2024-11-14

本文引用的文献

[1]
Removing artifacts from TMS-evoked EEG: A methods review and a unifying theoretical framework.

J Neurosci Methods. 2022-7-1

[2]
The impact of artifact removal approaches on TMS-EEG signal.

Neuroimage. 2021-10-1

[3]
Response letter to comments on "Cortico-cortical connectivity: the road from basic neurophysiological interactions to therapeutic applications" by Zibman and Zangen.

Exp Brain Res. 2021-6

[4]
Comments on "Cortico-cortical connectivity: the road from basic neurophysiological interactions to therapeutic applications" (Koch, Exp Brain Res., 2020).

Exp Brain Res. 2021-8

[5]
Driving associative plasticity in premotor-motor connections through a novel paired associative stimulation based on long-latency cortico-cortical interactions.

Brain Stimul. 2020

[6]
Measuring latency distribution of transcallosal fibers using transcranial magnetic stimulation.

Brain Stimul. 2020

[7]
Cortico-cortical connectivity: the road from basic neurophysiological interactions to therapeutic applications.

Exp Brain Res. 2020-8

[8]
High-intensity, low-frequency repetitive transcranial magnetic stimulation enhances excitability of the human corticospinal pathway.

J Neurophysiol. 2020-5-1

[9]
Paired Associative Stimulation Fails to Induce Plasticity in Freely Behaving Intact Rats.

eNeuro. 2020

[10]
The physiological effects of noninvasive brain stimulation fundamentally differ across the human cortex.

Sci Adv. 2020-1-31

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