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A Programmable High-Voltage Compliance Neural Stimulator for Deep Brain Stimulation in Vivo

机译:可编程的高压顺应性神经刺激器用于体内深层脑刺激

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摘要

Deep brain stimulation (DBS) is one of the most effective therapies for movement and other disorders. The DBS neurosurgical procedure involves the implantation of a DBS device and a battery-operated neurotransmitter, which delivers electrical impulses to treatment targets through implanted electrodes. The DBS modulates the neuronal activities in the brain nucleus for improving physiological responses as long as an electric discharge above the stimulation threshold can be achieved. In an effort to improve the performance of an implanted DBS device, the device size, implementation cost, and power efficiency are among the most important DBS device design aspects. This study aims to present preliminary research results of an efficient stimulator, with emphasis on conversion efficiency. The prototype stimulator features high-voltage compliance, implemented with only a standard semiconductor process, without the use of extra masks in the foundry through our proposed circuit structure. The results of animal experiments, including evaluation of evoked responses induced by thalamic electrical stimuli with our fabricated chip, were shown to demonstrate the proof of concept of our design.
机译:深部脑刺激(DBS)是对运动和其他疾病最有效的疗法之一。 DBS神经外科手术涉及DBS设备和电池供电的神经递质的植入,后者通过植入的电极将电脉冲传递到治疗目标。只要可以实现高于刺激阈值的放电,DBS就会调节脑核中的神经元活动以改善生理反应。为了提高植入的DBS设备的性能,设备尺寸,实现成本和功率效率是DBS设备设计中最重要的方面。这项研究旨在介绍一种有效刺激物的初步研究结果,重点是转换效率。原型激励器具有高电压顺从性,仅通过标准的半导体工艺即可实现,而通过我们建议的电路结构,无需在代工厂中使用额外的掩模。动物实验的结果,包括用我们制造的芯片评估丘脑电刺激诱发的诱发反应,证明了我们设计概念的证明。

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