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θ波爆发式经颅超声刺激的不同超声参数对人体运动皮层的影响。

Effects of different sonication parameters of theta burst transcranial ultrasound stimulation on human motor cortex.

作者信息

Zeng Ke, Li Zhiwei, Xia Xue, Wang Zhen, Darmani Ghazaleh, Li Xiaoli, Chen Robert

机构信息

Center for Cognition and Neuroergonomics, State Key Laboratory of Cognitive Neuroscience and Learning, Beijing Normal University, Zhuhai, Guangdong, China; Krembil Research Institute, University Health Network, Toronto, Ontario, Canada.

School of Electrical Engineering, Yanshan University, Qinhuangdao, China.

出版信息

Brain Stimul. 2024 Mar-Apr;17(2):258-268. doi: 10.1016/j.brs.2024.03.001. Epub 2024 Mar 3.

Abstract

BACKGROUND

Theta burst TUS (tbTUS) can induce increased cortical excitability in human, but how different sonication parameters influence the effects are still unknown.

OBJECTIVE

To examine how a range of sonication parameters, including acoustic intensity, pulse repetition frequency, duty cycle and sonication duration, influence the effects of tbTUS on human motor cortical excitability.

METHODS

14 right-handed healthy subjects underwent 8 sessions with different tbTUS parameters in a randomized, cross-over design on separate days. The original tbTUS protocol was studied in one session and one parameter was changed in each of the seven sessions. To examine changes in cortical excitability induced by tbTUS, we measured the motor-evoked potential (MEP) amplitude, resting motor threshold, short-interval intracortical inhibition and intracortical facilitation, as well as short-interval intracortical facilitation before and up to 90 min after tbTUS.

RESULTS

All conditions increased MEP amplitudes except the condition with low acoustic intensity of 10 W/cm. Pulse repetition frequency of 5 Hz produced higher MEP amplitudes compared to pulse repetition frequencies of 2 and 10 Hz. In addition, higher duty cycles (5%, 10%, and 15%) and longer sonication durations (40, 80, and 120 s) were associated with longer duration of increased MEP amplitudes. Resting motor threshold remained stable in all conditions. For paired-pulse TMS measures, tbTUS reduced short-interval intracortical inhibition and enhanced short-interval intracortical facilitation, but had no effect on intracortical facilitation.

CONCLUSIONS

Ultrasound bursts repeated at theta (∼5 Hz) frequency is optimal to produce increased cortical excitability with the range of 2-10 Hz. Furthermore, there was a dose-response effect regarding duty cycle and sonication duration in tbTUS for plasticity induction. The aftereffects of tbTUS were associated with a shift of the inhibition/excitation balance toward less inhibition and more excitation in the motor cortex. These findings can be used to determine the optimal tbTUS parameters in neuroscience research and treatment of neurological and psychiatric disorders.

摘要

背景

theta 爆发式经颅超声刺激(tbTUS)可增强人类皮质兴奋性,但不同的超声参数如何影响其效果仍不清楚。

目的

研究一系列超声参数,包括声强、脉冲重复频率、占空比和超声刺激持续时间,如何影响 tbTUS 对人类运动皮质兴奋性的作用。

方法

14 名右利手健康受试者在不同日期以随机交叉设计接受 8 次不同 tbTUS 参数的治疗。在一次治疗中研究原始的 tbTUS 方案,在其余七次治疗中每次改变一个参数。为检测 tbTUS 诱导的皮质兴奋性变化,我们测量了运动诱发电位(MEP)幅度、静息运动阈值、短间隔皮质内抑制和皮质内易化,以及 tbTUS 前及 tbTUS 后长达 90 分钟的短间隔皮质内易化。

结果

除声强为 10W/cm²的低强度条件外,所有条件均增加了 MEP 幅度。与 2Hz 和 10Hz 的脉冲重复频率相比,5Hz 的脉冲重复频率产生更高的 MEP 幅度。此外,更高的占空比(5%、10%和 15%)和更长的超声刺激持续时间(40、80 和 120 秒)与 MEP 幅度增加的持续时间延长有关。在所有条件下静息运动阈值保持稳定。对于配对脉冲 TMS 测量,tbTUS 降低了短间隔皮质内抑制并增强了短间隔皮质内易化,但对皮质内易化无影响。

结论

以 theta(约 5Hz)频率重复的超声脉冲在 2 - 10Hz 范围内最有利于增强皮质兴奋性。此外,在 tbTUS 诱导可塑性方面,占空比和超声刺激持续时间存在剂量反应效应。tbTUS 的后效应与运动皮质中抑制/兴奋平衡向抑制减少和兴奋增加的转变有关。这些发现可用于确定神经科学研究以及神经和精神疾病治疗中的最佳 tbTUS 参数。

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