植入式神经刺激器无线生物阻抗测量技术的研究

D. Celinskis, B. Towe
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引用次数: 3

摘要

研究了一种在小局部体积内进行无线生物阻抗测量的系统,该系统采用一种毫米大小的由超声能量驱动的植入式装置。这种微创植入物非常简单,由两个接收和解调超声波的被动元件组成,然后直接驱动组织电流。通过改变超声驱动水平及其调幅频率,除了神经刺激外,可植入装置还可用于进行阻抗测量,从而提供了治疗性神经刺激组织以及记录刺激引起的组织阻抗变化的潜力。系统在返回路径上通过体积传导进行通信。皮肤电极检测到的电位用于构建组织阻抗图。在本报告中,我们展示了无线阻抗测量的可行性,并根据信号在距离上的可探测性来表征系统性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the implantable neurostimulator-based wireless bioimpedance measurement technique
A system for wireless bioimpedance measurements in small localized volumes was investigated using a millimeter-sized implantable device powered by ultrasound energy. The minimally invasive implant is very simple, consisting of two passive components that receive and demodulate the ultrasound which then directly drives tissue currents. By varying the ultrasound drive level and its amplitude modulation frequencies, the implantable device, in addition to neurostimulation, can be used to perform impedance measurements, thus offering a potential to both therapeutically neurostimulate tissue as well as record tissue impedance changes resulting from the stimulation. The system communicates in the return path by volume conduction. Potentials detected by skin electrodes are used to construct tissue impedance plots. In this report we demonstrate the feasibility of wireless impedance measurements and characterize system performance in terms of the signal detectability over the distance.
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