Recommendations for the Safe Application of Temporal Interference Stimulation in the Human Brain Part I: Principles of Electrical Neuromodulation and Adverse Effects

IF 1.8 3区 生物学 Q3 BIOLOGY
Antonino M. Cassarà, Taylor H. Newton, Katie Zhuang, Sabine J. Regel, Peter Achermann, Alvaro Pascual-Leone, Niels Kuster, Esra Neufeld
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引用次数: 0

Abstract

Temporal interference stimulation (TIS) is a new form of transcranial electrical stimulation (tES) that has been proposed as a method for targeted, non-invasive stimulation of deep brain structures. While TIS holds promise for a variety of clinical and non-clinical applications, little data is yet available regarding its effects in humans and its mechanisms of action. In order to inform the design and safe conduct of experiments involving TIS, researchers require quantitative guidance regarding safe exposure limits and other safety considerations. To this end, we undertook a two-part effort to determine frequency-dependent thresholds for applied currents below which TIS is unlikely to pose risk to humans in terms of heating or unwanted stimulation. Part I of this effort, described here, comprises a summary of the current knowledge pertaining to the safety of TIS and related techniques. Specifically, we provide: i) a broad overview of the electrophysiological impacts neurostimulation, ii) a review of the (bio-)physical principles underlying the mechanisms of action of transcranial alternating/direct stimulation (tACS/tDCS), deep brain stimulation (DBS), and TIS, and iii) a comprehensive survey of the adverse effects (AEs) associated with each technique as reported in the scientific literature and regulatory and clinical databases. In Part II, we perform an in silico study to determine field exposure metrics for tDCS/tACS and DBS under normal (safe) operating conditions and infer frequency-dependent current thresholds for TIS that result in equivalent levels of exposure.

Abstract Image

颞叶干扰刺激在人脑中的安全应用建议第一部分:电神经调节原理和不良反应
时间干扰刺激(TIS)是经颅电刺激(tES)的一种新形式,已被提出作为一种有针对性的、非侵入性的脑深部结构刺激方法。虽然TIS具有多种临床和非临床应用的前景,但关于其对人体的影响及其作用机制的数据很少。为了为涉及TIS的实验的设计和安全进行提供信息,研究人员需要关于安全暴露限值和其他安全考虑的定量指导。为此,我们进行了两部分工作,以确定应用电流的频率相关阈值,低于该阈值,TIS不太可能在加热或不必要的刺激方面对人类构成风险。本文所述的第一部分概述了目前有关TIS安全性和相关技术的知识。具体来说,我们提供:i)对电生理影响神经刺激的广泛概述,ii)对经颅交替/直接刺激(tACS/tDCS)、深部脑刺激(DBS)和TIS的作用机制的(生物)物理原理进行回顾,以及iii)对科学文献、监管和临床数据库中报道的每种技术相关的不良反应(ae)进行全面调查。在第二部分中,我们进行了一项计算机研究,以确定在正常(安全)操作条件下tDCS/tACS和DBS的现场暴露指标,并推断出导致等效暴露水平的TIS的频率相关电流阈值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioelectromagnetics
Bioelectromagnetics 生物-生物物理
CiteScore
4.60
自引率
0.00%
发文量
44
审稿时长
6-12 weeks
期刊介绍: Bioelectromagnetics is published by Wiley-Liss, Inc., for the Bioelectromagnetics Society and is the official journal of the Bioelectromagnetics Society and the European Bioelectromagnetics Association. It is a peer-reviewed, internationally circulated scientific journal that specializes in reporting original data on biological effects and applications of electromagnetic fields that range in frequency from zero hertz (static fields) to the terahertz undulations and visible light. Both experimental and clinical data are of interest to the journal''s readers as are theoretical papers or reviews that offer novel insights into or criticism of contemporary concepts and theories of field-body interactions. The Bioelectromagnetics Society, which sponsors the journal, also welcomes experimental or clinical papers on the domains of sonic and ultrasonic radiation.
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