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一种简化型人工耳蜗植入系统的设计。

Design for a simplified cochlear implant system.

作者信息

An Soon Kwan, Park Se-Ik, Jun Sang Beom, Lee Choong Jae, Byun Kyung Min, Sung Jung Hyun, Wilson Blake S, Rebscher Stephen J, Oh Seung Ha, Kim Sung June

机构信息

School of Electrical Engineering and Computer Science, Seoul National University, Seoul 151-744, Korea.

出版信息

IEEE Trans Biomed Eng. 2007 Jun;54(6 Pt 1):973-82. doi: 10.1109/TBME.2007.895372.

Abstract

A simplified cochlear implant (CI) system would be appropriate for widespread use in developing countries. Here, we describe a CI that we have designed to realize such a concept. The system implements 8 channels of processing and stimulation using the continuous interleaved sampling (CIS) strategy. A generic digital signal processing (DSP) chip is used for the processing, and the filtering functions are performed with a fast Fourier transform (FFT) of a microphone or other input. Data derived from the processing are transmitted through an inductive link using pulse width modulation (PWM) encoding and amplitude shift keying (ASK) modulation. The same link is used in the reverse direction for backward telemetry of electrode and system information. A custom receiver-stimulator chip has been developed that demodulates incoming data using pulse counting and produces charge balanced biphasic pulses at 1000 pulses/s/electrode. This chip is encased in a titanium package that is hermetically sealed using a simple but effective method. A low cost metal-silicon hybrid mold has been developed for fabricating an intracochlear electrode array with 16 ball-shaped stimulating contacts.

摘要

一种简化的人工耳蜗(CI)系统将适合在发展中国家广泛使用。在此,我们描述一种我们为实现这一概念而设计的人工耳蜗。该系统采用连续交错采样(CIS)策略实现8通道的处理和刺激。使用通用数字信号处理(DSP)芯片进行处理,滤波功能通过对麦克风或其他输入进行快速傅里叶变换(FFT)来执行。处理后得到的数据通过电感链路,采用脉宽调制(PWM)编码和幅移键控(ASK)调制进行传输。同一链路用于反向遥测电极和系统信息。已开发出一种定制的接收刺激器芯片,该芯片使用脉冲计数对传入数据进行解调,并以1000脉冲/秒/电极的速度产生电荷平衡双相脉冲。该芯片封装在一个钛制封装中,采用一种简单但有效的方法进行气密密封。已开发出一种低成本的金属 - 硅混合模具,用于制造具有16个球形刺激触点的耳蜗内电极阵列。

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