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Increased Excitability Induced in the Primary Motor Cortex by Transcranial Ultrasound Stimulation

机译:经颅超声刺激在初级运动皮层中诱导的兴奋性增加

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>Background: Transcranial Ultrasound Stimulation (tUS) is an emerging technique that uses ultrasonic waves to noninvasively modulate brain activity. As with other forms of non-invasive brain stimulation (NIBS), tUS may be useful for altering cortical excitability and neuroplasticity for a variety of research and clinical applications. The effects of tUS on cortical excitability are still unclear, and further complications arise from the wide parameter space offered by various types of devices, transducer arrangements, and stimulation protocols. Diagnostic ultrasound imaging devices are safe, commonly available systems that may be useful for tUS. However, the feasibility of modifying brain activity with diagnostic tUS is currently unknown.>Objective: We aimed to examine the effects of a commercial diagnostic tUS device using an imaging protocol on cortical excitability. We hypothesized that imaging tUS applied to motor cortex could induce changes in cortical excitability as measured using a transcranial magnetic stimulation (TMS) motor evoked potential (MEP) paradigm.>Methods: Forty-three subjects were assigned to receive either verum (n = 21) or sham (n = 22) diagnostic tUS in a single-blind design. Baseline motor cortex excitability was measured using MEPs elicited by TMS. Diagnostic tUS was subsequently administered to the same cortical area for 2 min, immediately followed by repeated post-stimulation MEPs recorded up to 16 min post-stimulation.>Results: Verum tUS increased excitability in the motor cortex (from baseline) by 33.7% immediately following tUS (p = 0.009), and 32.4% (p = 0.047) 6 min later, with excitability no longer significantly different from baseline by 11 min post-stimulation. By contrast, subjects receiving sham tUS showed no significant changes in MEP amplitude.>Conclusion: These findings demonstrate that tUS delivered via a commercially available diagnostic imaging ultrasound system transiently increases excitability in the motor cortex as measured by MEPs. Diagnostic tUS devices are currently used for internal imaging in many health care settings, and the present results suggest that these same devices may also offer a promising tool for noninvasively modulating activity in the central nervous system. Further studies exploring the use of diagnostic imaging devices for neuromodulation are warranted.
机译:>背景:经颅超声刺激(tUS)是一种新兴技术,该技术使用超声波无创地调节大脑活动。与其他形式的非侵入性脑刺激(NIBS)一样,tUS对于改变皮质兴奋性和神经可塑性对于各种研究和临床应用而言可能是有用的。 tUS对皮层兴奋性的影响尚不清楚,并且各种设备,换能器布置和刺激方案所提供的宽广的参数空间会引起进一步的并发症。诊断超声成像设备是安全的,可能对tUS有用的常用系统。但是,目前尚不清楚使用诊断性tUS改变大脑活动的可行性。>目的:我们旨在研究使用成像协议对商用tUS诊断设备对皮层兴奋性的影响。我们假设使用经颅磁刺激(TMS)运动诱发电位(MEP)范式测量,应用于运动皮层的成像tUS可以诱导皮层兴奋性变化。>方法:分配了43名受试者接受研究。在单盲设计中使用verum(n = 21)或假(n = 22)诊断tUS。使用TMS诱发的MEP测量基线运动皮层兴奋性。随后将诊断性tUS施用至同一皮质区域2分钟,然后立即进行刺激后重复记录的MEP,直至刺激后16分钟。>结果: Verus tUS增加了运动皮层的兴奋性(来自tUS后立即下降33.7%(p = 0.009),6分钟后下降32.4%(p = 0.047),刺激后11分钟兴奋性不再与基线显着不同。相比之下,接受假tUS的受试者的MEP振幅没有明显变化。>结论:这些发现表明,通过市售的诊断成像超声系统递送的tUS可以瞬时增加运动皮层的兴奋性(如MEP所测量)。诊断性tUS设备目前在许多医疗机构中用于内部成像,目前的结果表明,这些相同的设备也可能为无创地调节中枢神经系统的活动提供有希望的工具。有必要进一步研究探索使用诊断成像设备进行神经调节。

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