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Transcranial focused ultrasound selectively increases perfusion and modulates functional connectivity of deep brain regions in humans.经颅聚焦超声选择性地增加了人类深部脑区的灌注并调节了其功能连接。
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经颅聚焦超声通过选择性激活兴奋性神经元来调节前馈和反馈皮质-丘脑-皮质通路。

Transcranial Focused Ultrasound Modulates Feedforward and Feedback Cortico-Thalamo-Cortical Pathways by Selectively Activating Excitatory Neurons.

作者信息

Gao Huan, Ramachandran Sandhya, Yu Kai, He Bin

机构信息

Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213.

Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213

出版信息

J Neurosci. 2025 Jun 4;45(23):e2218242025. doi: 10.1523/JNEUROSCI.2218-24.2025.

DOI:10.1523/JNEUROSCI.2218-24.2025
PMID:40340797
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12139594/
Abstract

Transcranial focused ultrasound stimulation (tFUS) is a promising neuromodulation technique capable of noninvasively modulating focal neuronal activities and neural circuits in both animals and humans. The cell-type selectivity of tFUS within targeted areas such as the somatosensory cortex (S1) during sonication has been shown to be parameter related. However, it remains unclear how tFUS affects neural circuits by changing the correlation between neurons and how to optimize the tFUS parameters to modulate neural pathways. In this study, multisite intracranial recordings are used in anesthetized male rats to quantify the neuronal responses to tFUS stimulation recorded from S1 and posterior medial thalamic nucleus (POm) of cortico-thalamo-cortical (CTC) pathway. Different tFUS parameters including ranges of pulse repetition frequencies (PRFs) and duty cycles (DCs) are tested. We find that when targeting at S1, only regular-spiking units (RSUs) respond to specific tFUS parameters during sonication (DC, 6-60%; PRF, 1,500, 3,000 and 4,500 Hz), and RSUs from the POm exhibit a synchronized response. The changes of directional correlation between S1 RSUs and POm RSUs indicate the activation of feedback modulation. Delayed responses and correlation changes were further observed at ∼200 ms postsonication from the neurons in S1 and POm, indicating feedforward modulation. Our results reveal that tFUS can modulate the feedback and feedforward CTC pathways by selectively activating cortical RSUs and adjusting the tFUS parameters, particularly the PRF, to maximize cortical RSU activity could enhance the modulation of the CTC pathway.

摘要

经颅聚焦超声刺激(tFUS)是一种很有前景的神经调节技术,能够在动物和人类中无创地调节局部神经元活动和神经回路。在超声处理过程中,tFUS在体感皮层(S1)等目标区域内的细胞类型选择性已被证明与参数有关。然而,目前尚不清楚tFUS如何通过改变神经元之间的相关性来影响神经回路,以及如何优化tFUS参数以调节神经通路。在本研究中,对麻醉的雄性大鼠进行多部位颅内记录,以量化从皮质-丘脑-皮质(CTC)通路的S1和丘脑后内侧核(POm)记录到的对tFUS刺激的神经元反应。测试了不同的tFUS参数,包括脉冲重复频率(PRF)范围和占空比(DC)。我们发现,当靶向S1时,在超声处理期间(DC,6-60%;PRF,1500、3000和4500 Hz),只有规则放电单元(RSU)对特定的tFUS参数有反应,并且来自POm的RSU表现出同步反应。S1 RSU和POm RSU之间方向相关性的变化表明反馈调制的激活。在超声处理后约200毫秒,在S1和POm的神经元中进一步观察到延迟反应和相关性变化,表明前馈调制。我们的结果表明,tFUS可以通过选择性激活皮层RSU并调整tFUS参数(特别是PRF)来调节反馈和前馈CTC通路,最大化皮层RSU活动可以增强对CTC通路的调制。