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Non-Invasive Neuromodulation Using Time-Varying Caloric Vestibular Stimulation

机译:随时间变化的热量前庭刺激的非侵入性神经调节

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摘要

Caloric vestibular stimulation (CVS) to elicit the vestibulo-ocular reflex has long been used in clinical settings to aid in the diagnosis of balance disorders and to confirm the absence of brainstem function. While a number of studies have hinted at the potential therapeutic applications of CVS, the limitations of existing devices have frustrated that potential. Current CVS irrigators use water or air during short-duration applications; however, this approach is not tenable for longer duration therapeutic protocols or home use. Here, we describe a solid-state CVS device we developed in order to address these limitations. This device delivers tightly controlled time-varying thermal waveforms, which can be programmed through an external control unit. It contains several safety features, which limit patients to the prescribed waveform and prevent the potential for temperature extremes. In this paper, we provide evidence that CVS treatment with time-varying, but not constant temperature waveforms, elicits changes in cerebral blood flow physiology consistent with the neuromodulation of brainstem centers, and we present results from a small pilot study, which demonstrate that the CVS can safely and feasibly be used longitudinally in the home setting to treat episodic migraine. Together, these results indicate that this solid-state CVS device may be a viable tool for non-invasive neuromodulation.
机译:长期以来,热量诱发前庭眼反射的前庭刺激(CVS)已在临床环境中用于辅助平衡失调的诊断和确认脑干功能的缺失。尽管许多研究提示了CVS的潜在治疗应用,但现有设备的局限性挫败了这一潜力。当前的CVS灌溉设备在短期应用中会使用水或空气。然而,这种方法对于更长的治疗方案或家庭使用是不可行的。在这里,我们描述了为解决这些限制而开发的固态CVS设备。该设备提供严格控制的随时间变化的热波形,可以通过外部控制单元对其进行编程。它包含多个安全功能,可将患者限制在规定的波形范围内,并防止出现极端温度的可能性。在本文中,我们提供了证据,即时变而非恒定温度波形的CVS治疗会引起脑血流生理学的变化,与脑干中心的神经调节相一致,并且我们提供了一项小型先导研究的结果,证明了CVS可以在家庭环境中纵向安全,可行地用于治疗发作性偏头痛。总之,这些结果表明该固态CVS设备可能是用于非侵入性神经调节的可行工具。

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