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20Hz 拍频的时程干扰电神经刺激导致人类眶额皮质 fMRI BOLD 激活增加。

Temporal interference electrical neurostimulation at 20 Hz beat frequency leads to increased fMRI BOLD activation in orbitofrontal cortex in humans.

机构信息

Dept. of Psychological & Brain Sciences, Indiana University, Bloomington, IN, USA.

Dept. of Neurosurgery, Baylor College of Medicine, Houston, TX, USA.

出版信息

Brain Stimul. 2024 Jul-Aug;17(4):867-875. doi: 10.1016/j.brs.2024.07.014. Epub 2024 Jul 24.

Abstract

Temporal interference electrical neurostimulation (TI) is a relatively new method of non-invasive neurostimulation that may be able to stimulate deep brain regions without stimulating the overlying superficial regions. Although some recent studies have demonstrated the success of TI in modulating task-induced BOLD activity in humans, there is limited information on intended and off-target effects of TI during resting-state. We simultaneously performed TI stimulation with the set-up optimized for maximum focality in the left caudate and collected resting-state fMRI data to investigate the effects of TI on human BOLD signals. We found increased BOLD activation in a part of the mid-orbitofrontal cortex (OFC) and parahippocampal gyrus. Results indicate that TI can induce increased BOLD activation in the region that receives the highest magnitude of TI amplitude modulation in humans, with good safety and tolerability profiles. We also show the limits of spatial precision and explore the nature and causes of additional off-target effects. TI may be a promising approach for addressing questions about the causal role of deep brain structures in human cognition and may also afford new clinical treatments.

摘要

时变干扰电神经刺激(TI)是一种相对较新的非侵入性神经刺激方法,它可能能够刺激深部脑区而不刺激其上的浅层区域。尽管最近的一些研究表明 TI 成功地调节了人类任务诱发的 BOLD 活动,但关于 TI 在静息状态下的预期和非靶向效应的信息有限。我们同时在左尾状核中使用针对最大焦点优化的设置进行 TI 刺激,并采集静息状态 fMRI 数据,以研究 TI 对人类 BOLD 信号的影响。我们发现中眶额皮质(OFC)和海马旁回的一部分的 BOLD 激活增加。结果表明,TI 可以在人类接收到最高幅度 TI 幅度调制的区域引起 BOLD 激活增加,具有良好的安全性和耐受性。我们还展示了空间精度的局限性,并探讨了额外非靶向效应的性质和原因。TI 可能是解决关于深部脑结构在人类认知中的因果作用的问题的一种有前途的方法,也可能提供新的临床治疗方法。

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