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非人类灵长类动物深部脑回路的远程诱导电调制

Remotely induced electrical modulation of deep brain circuits in non-human primates.

作者信息

Lybbert Carter, Webb Taylor, Wilson Matthew G, Tsunoda Keisuke, Kubanek Jan

机构信息

Department of Biomedical Engineering, University of Utah, Salt Lake City, UT, United States.

Department of Radiology and Imaging Sciences, University of Utah, Salt Lake City, UT, United States.

出版信息

Front Hum Neurosci. 2024 Dec 18;18:1432368. doi: 10.3389/fnhum.2024.1432368. eCollection 2024.

Abstract

INTRODUCTION

The combination of magnetic and focused ultrasonic fields generates focused electric fields at depth entirely noninvasively. This noninvasive method may find particularly important applications in targeted treatments of the deep brain circuits involved in mental and neurological disorders. Due to the novelty of this method, it is nonetheless unknown which parameters modulate neural activity effectively.

METHODS

We have investigated this issue by applying the combination of magnetic and focused ultrasonic fields to deep brain visual circuits in two non-human primates, quantifying the electroencephalographic gamma activity evoked in the visual cortex. We hypothesized that the pulse repetition frequency of the ultrasonic stimulation should be a key factor in modulating the responses, predicting that lower frequencies should elicit inhibitory effects and higher frequencies excitatory effects.

RESULTS

We replicated the results of a previous study, finding an inhibition of the evoked gamma responses by a strong magnetic field. This inhibition was only observed for the lowest frequency tested (5 Hz), and not for the higher frequencies (10 kHz and 50 kHz). These neuromodulatory effects were transient and no safety issues were noted.

DISCUSSION

We conclude that this new method can be used to transiently inhibit evoked neural activity in deep brain regions of primates, and that delivering the ultrasonic pulses at low pulse repetition frequencies maximizes the effect.

摘要

引言

磁场与聚焦超声场相结合能够完全无创地在深部产生聚焦电场。这种无创方法可能在针对涉及精神和神经疾病的深部脑回路的靶向治疗中找到特别重要的应用。然而,由于这种方法很新颖,目前尚不清楚哪些参数能有效调节神经活动。

方法

我们通过将磁场与聚焦超声场相结合应用于两只非人灵长类动物的深部脑视觉回路,量化视觉皮层中诱发的脑电图伽马活动,来研究这个问题。我们假设超声刺激的脉冲重复频率应该是调节反应的关键因素,并预测较低频率应引发抑制作用,而较高频率应引发兴奋作用。

结果

我们重复了先前一项研究的结果,发现强磁场会抑制诱发的伽马反应。这种抑制仅在测试的最低频率(5赫兹)下观察到,而在较高频率(10千赫和50千赫)下未观察到。这些神经调节作用是短暂的,且未发现安全问题。

讨论

我们得出结论,这种新方法可用于短暂抑制灵长类动物深部脑区诱发的神经活动,并且以低脉冲重复频率传递超声脉冲可使效果最大化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8803/11688339/6e9c0c2daa0f/fnhum-18-1432368-g001.jpg

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