Dillier N, Senn C, Schlatter T, Stöckli M, Utzinger U
Department of Otorhinolaryngology, University Hospital, Zürich, Switzerland.
Acta Otolaryngol Suppl. 1990;469:120-7.
Based on a single-chip DSP (TMS320C25, Texas Instruments) a programmable battery-operated sound processor with a digital encoder interface for the Nucleus-22 cochlear implant (CI) was built. The number of quasi-simultaneously addressed electrodes is only limited by the selected pulse width and the maximum rate of stimulation and can be as high as 10 electrodes at 300 Hz repetition rate. Implementation of various processing strategies (formant or channel vocoder, filterbank, zero crossings, etc.) is possible as well as sophisticated adaptive noise reduction. Programs and stimulation parameters are stored in electrically erasable memory and may be updated via a host computer. The built-in analog output may be used for single-channel stimulation or acoustic verifications of the sound processing algorithms. The power consumption with current 16K word data memory and at maximum stimulation rate is about 1 Watt, which necessitates recharging of batteries after 11 h.
基于一片单芯片DSP(德州仪器的TMS320C25),构建了一种用于Nucleus - 22人工耳蜗(CI)的可编程电池供电声音处理器,该处理器带有数字编码器接口。准同时寻址电极的数量仅受所选脉冲宽度和最大刺激速率的限制,在300 Hz重复率下可高达10个电极。各种处理策略(共振峰或通道声码器、滤波器组、过零等)以及复杂的自适应降噪都可以实现。程序和刺激参数存储在电可擦除存储器中,并且可以通过主机进行更新。内置模拟输出可用于单通道刺激或声音处理算法的声学验证。在当前16K字数据存储器且以最大刺激速率运行时,功耗约为1瓦,这使得电池需要在11小时后充电。