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时滞干涉刺激的生物物理学。

Biophysics of Temporal Interference Stimulation.

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI 48109, USA; Biointerfaces Institute, University of Michigan, Ann Arbor, MI 48109, USA.

Department of Neuroscience and Movement Science, University of Fribourg, Fribourg, Switzerland; Rehab and Neural Engineering Labs, University of Pittsburgh, Pittsburgh, PA 15213, USA.

出版信息

Cell Syst. 2020 Dec 16;11(6):557-572.e5. doi: 10.1016/j.cels.2020.10.004. Epub 2020 Nov 5.

Abstract

Temporal interference (TI) is a non-invasive neurostimulation technique that utilizes high-frequency external electric fields to stimulate deep neuronal structures without affecting superficial, off-target structures. TI represents a potential breakthrough for treating conditions, such as Parkinson's disease and chronic pain. However, early clinical work on TI stimulation was met with mixed outcomes challenging its fundamental mechanisms and applications. Here, we apply established physics to study the mechanisms of TI with the goal of optimizing it for clinical use. We argue that TI stimulation cannot work via passive membrane filtering, as previously hypothesized. Instead, TI stimulation requires an ion-channel mediated signal rectification process. Unfortunately, this mechanism is also responsible for high-frequency conduction block in off-target tissues, thus challenging clinical applications of TI. In consequence, we propose a set of experimental controls that should be performed in future experiments to refine our understanding and practice of TI stimulation. A record of this paper's transparent peer review process is included in the Supplemental Information.

摘要

时程干扰(TI)是一种非侵入性的神经刺激技术,利用高频外电场刺激深部神经元结构,而不会影响到表面的、非目标结构。TI 为治疗帕金森病和慢性疼痛等疾病提供了一个潜在的突破,但 TI 刺激的早期临床工作结果喜忧参半,这对其基本机制和应用提出了挑战。在这里,我们应用已建立的物理原理来研究 TI 的机制,旨在为临床应用优化它。我们认为,TI 刺激不能像以前假设的那样通过被动的膜滤波起作用。相反,TI 刺激需要一个离子通道介导的信号整流过程。不幸的是,这种机制也是导致非目标组织中高频传导阻断的原因,因此对 TI 的临床应用提出了挑战。因此,我们提出了一组在未来实验中应进行的实验控制,以完善我们对 TI 刺激的理解和实践。本文的透明同行评审过程记录包含在补充信息中。

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