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An electronic prosthesis mimicking the dynamic vestibular function.

机译:一种模拟动态前庭功能的电子假体。

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摘要

This paper presents a functional architecture, system level design, and electronic evaluation of a unilateral vestibular prosthesis. The sensing unit of the prosthesis is a custom-designed one-axis micro-electromechanical system (MEMS) gyroscope. Similar to the natural semicircular canal, the MEMS gyroscope senses angular motion of the head and generates voltages proportional to the corresponding angular acceleration. The voltage is then converted into electric current pulses according to the physiological data relating angular acceleration to the spike count in the vestibular nerve. The current pulses can be delivered to stimulate the corresponding vestibular nerve branch. Electronic properties of the vestibular prosthesis prototype have been systematically evaluated and found to meet the design specifications. A unique feature of the present vestibular implant prototype is the scalability: the sensing unit, pulse generator, and the current source can be potentially implemented on a single chip using integrated MEMS technology.
机译:本文介绍了单侧前庭假体的功能架构,系统级设计和电子评估。假体的传感单元是定制设计的单轴微机电系统(MEMS)陀螺仪。与天然半圆形管类似,MEMS陀螺仪可感测头部的角运动并生成与相应的角加速度成比例的电压。然后根据生理数据将电压转换为电流脉冲,该生理数据将角加速度与前庭神经中的尖峰计数相关联。可以传递电流脉冲以刺激相应的前庭神经分支。已经对前庭假体原型的电子特性进行了系统评估,发现其符合设计规范。当前前庭植入物原型的独特之处在于可扩展性:使用集成的MEMS技术,感测单元,脉冲发生器和电流源可以在单个芯片上实现。

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