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一种定制设计的芯片,用于控制植入式刺激器和遥测系统,以控制瘫痪肌肉。

A custom designed chip to control an implantable stimulator and telemetry system for control of paralyzed muscles.

作者信息

Pourmehdi S, Strojnik P, Peckham H, Buckett J, Smith B

机构信息

NeuroControl Corporation, Cleveland, Ohio 44106, USA.

出版信息

Artif Organs. 1999 May;23(5):396-8. doi: 10.1046/j.1525-1594.1999.06358.x.

Abstract

A custom designed chip has been developed for the control of paralyzed muscles. The system is capable of fulfilling the stimulus and telemetry needs of advanced functional neuromuscular stimulation (FNS) applications requiring multiple channels of stimulation and multiple channels for sensor or biopotential sensing. An inductive radiofrequency link provides power to the implant device as well as 2 way transcutaneous communication. An application specific integrated circuit (ASIC) decodes the commands and provides functional control within the implant, and modular circuitry provides specific implant functions. The ASIC chip provides up to 32 independent channels of stimulation with independent control of stimulus pulse duration, pulse amplitude, interphase delay, recharge phase duration, and pulse interval. It can also control up to 8 independent back telemetry analog channels with independent control of sampling rate and pulse powering parameters (amplitude and duration). The mixed analog digital chip has been fabricated in 1.2 microm n-well CMOS technology.

摘要

一种定制设计的芯片已被开发用于控制瘫痪肌肉。该系统能够满足先进的功能性神经肌肉刺激(FNS)应用的刺激和遥测需求,这些应用需要多通道刺激以及用于传感器或生物电位传感的多通道。一个电感式射频链路为植入设备提供电力以及双向经皮通信。一个专用集成电路(ASIC)对命令进行解码并在植入物内部提供功能控制,模块化电路提供特定的植入功能。ASIC芯片提供多达32个独立的刺激通道,可独立控制刺激脉冲持续时间、脉冲幅度、相间延迟、充电阶段持续时间和脉冲间隔。它还可以控制多达8个独立的反向遥测模拟通道,可独立控制采样率和脉冲供电参数(幅度和持续时间)。这种混合模拟数字芯片采用1.2微米n阱CMOS技术制造。

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