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用于改善深部脑区聚焦刺激的多对经颅颞叶干扰刺激:一项模拟研究。

Multipair transcranial temporal interference stimulation for improved focalized stimulation of deep brain regions: A simulation study.

作者信息

Lee Sangjun, Park Jimin, Choi Da Som, Lee Chany, Im Chang-Hwan

机构信息

Department of Biomedical Engineering, Hanyang University, Seoul, Republic of Korea; Department of Electronic Engineering, Hanyang University, Seoul, Republic of Korea.

Department of Electronic Engineering, Hanyang University, Seoul, Republic of Korea.

出版信息

Comput Biol Med. 2022 Apr;143:105337. doi: 10.1016/j.compbiomed.2022.105337. Epub 2022 Feb 21.

Abstract

Temporal interference stimulation (TIS) has been proved to be effective in stimulating deep brain regions while avoiding the stimulation of neocortical regions in animal experiments. In the traditional TIS, two alternating currents are injected with different frequencies via two electrode pairs attached to the scalp. In the human brain, however, it is difficult to achieve a focal stimulation of deep brain structures due to the high complexity of human brain structures. In this study, we hypothesized that the use of multiple electrode pairs may contribute to the more focalized delivery of temporal interference (TI) currents to the target site in the deep area of the brain. Based on this hypothesis, we proposed a novel multipair TIS method that employs more than two electrode pairs for improved focalized stimulation of the deep brain region (in this study, the head of the right hippocampus). Three realistic finite element models were used to validate the feasibility of the proposed multipair TIS. Additional electrode pairs were sequentially added to the conventional two-electrode pairs with the aim of maximizing the delivery of TI currents to the target while minimizing TI currents in the neocortical regions. The results confirmed that the multipair TIS provides better focalized stimulation than the conventional two-pair TIS for all three head models. It is expected that the proposed multipair TIS can be used to enhance the effectiveness of noninvasive deep brain stimulation.

摘要

在动物实验中,经颅交变电场刺激(TIS)已被证明在刺激深部脑区的同时避免刺激新皮质区域方面是有效的。在传统的TIS中,通过连接到头皮的两对电极注入两种不同频率的交流电。然而,在人类大脑中,由于人类大脑结构的高度复杂性,很难实现对深部脑结构的聚焦刺激。在本研究中,我们假设使用多对电极可能有助于将经颅交变电场(TI)电流更聚焦地传递到脑深部区域的目标部位。基于这一假设,我们提出了一种新颖的多对TIS方法,该方法采用两对以上电极对,以改善对深部脑区(在本研究中为右侧海马头部)的聚焦刺激。使用三个真实的有限元模型来验证所提出的多对TIS的可行性。将额外的电极对依次添加到传统的两对电极对上,目的是在使新皮质区域的TI电流最小化的同时,最大限度地将TI电流传递到目标部位。结果证实,对于所有三个头部模型,多对TIS比传统的两对TIS提供了更好的聚焦刺激。预计所提出的多对TIS可用于提高非侵入性深部脑刺激的有效性。

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