使用多极颞叶干扰的非侵入性深部脑刺激的局灶控制。

Boris Botzanowski, Emma Acerbo, Sebastian Lehmann, Sarah L Kearsley, Melanie Steiner, Esra Neufeld, Florian Missey, Lyle Muller, Viktor Jirsa, Brian D Corneil, Adam Williamson
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引用次数: 0

摘要

时间干扰(TI)是一种使用经皮电极的非侵入性脑刺激方法,它允许瞄准和调节深层脑结构,通常与非侵入性模拟无关,同时避免不必要的浅层皮层结构刺激。TI的性质以前已经被证明,然而,刺激焦点与刺激强度的解耦问题尚未得到很好的解决。在本文中,我们提供了一种可能的新解决方案,多极TI (mTI),它可以增加对受刺激区域大小和刺激强度的独立控制。mTI方法使用多个载波频率来创建多个重叠的调幅包络,而不是像标准TI那样使用一个包络。该研究对mTI的概念进行了解释,并结合了从恒河猴和小鼠身上收集的实验数据。我们改善了麻醉小鼠和猴子的深度聚焦,并利用清醒猴子的新聚焦,诱发了上丘深度的靶向活动。与其他形式的非侵入性脑刺激一样,mTI方法可能是一种有趣且潜在有用的新工具。与颞叶干扰相比,多极颞叶干扰刺激可以在深度处产生更多的局灶性脑刺激。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Focal control of non-invasive deep brain stimulation using multipolar temporal interference.

Temporal interference (TI) is a method of non-invasive brain stimulation using transcutaneous electrodes which allows the targeting and modulation of deeper brain structures, not normally associated with non-invasive simulation, while avoiding unwanted stimulation of shallower cortical structures. The properties of TI have been previously demonstrated, however, the problem of decoupling stimulation focality from stimulation intensity has not yet been well addressed. In this paper, we provide a possible novel solution, multipolar TI (mTI), which allows increased independent control over both the size of the stimulated region and the stimulation intensity. The mTI method uses multiple carrier frequencies to create multiple overlapping amplitude-modulated envelopes, rather than using one envelope as in standard TI. The study presents an explanation of the concept of mTI along with experimental data gathered from Rhesus macaques and mice. We improved the focality at depth in anesthetized mice and monkeys, and using the new focality in awake monkeys, evoked targeted activity at depth in the superior colliculus. The mTI method could be an interesting and potentially useful new tool alongside other forms of non-invasive brain stimulation. Teaser Multipolar Temporal Interference Stimulation can produce a more focal brain stimulation at depth compared to Temporal Interference.

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来源期刊
CiteScore
6.90
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