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Sound spectral processing based on fast Fourier transform applied to cochlear implant for the conception of a graphical spectrogram and for the generation of stimulating pulses

机译:基于快速傅里叶变换的声光谱处理施加到图形谱图概念的耳蜗植入和刺激脉冲的产生

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This paper presents a sound spectral processing based on a fast Fourier transform (FFT), which is applied to cochlear prostheses, for conceiving graphical spectrogram and for generating stimulating pulses. The Sound Graphical-spectrogram is a simulation of electrical stimulating-pulses, recommended for cochlear prostheses, especially for performing experiments and clinical set-up during stimulation test and re-education. This spectral sound processing was implemented on a computer board for simulation, and on a 'DSP' board (digital signal processor) of GRAMS' cochlear prosthesis for stimulating current generation. The algorithm includes different desired specifications, which are designed to be adjustable. Our purpose is to satisfy auditory pathological constraints of cochlear implant recipients having unique and diverse needs. The stimulation algorithm conceived allows electrical stimulating pulse generation in real time with use flexibility thanks to DSP performance. Algorithm functionality was tested for different sounds (harmonics and composite sounds) and could be adapted to different cochlear prostheses for deafness rehabilitation.
机译:本文介绍了基于快速傅里叶变换(FFT)的声光谱处理,其应用于耳蜗假体,用于构思图形谱图并用于产生刺激脉冲。声音图形 - 光谱图是电刺激脉冲的模拟,推荐用于耳蜗假肢,特别是在刺激测试和重新教育期间进行实验和临床设置。该光谱处理在计算机板上实现了用于仿真的,并在克的克氏耳蜗假体的“DSP”板(数字信号处理器)上,用于刺激电流产生。该算法包括不同的所需规格,其被设计为可调节。我们的目的是满足具有独特和多样化的耳蜗植入受体的听觉病理限制。由于DSP性能,所构思的刺激算法允许实时使用灵活性实时产生电气刺激脉冲。对不同的声音(谐波和复合声音)测试了算法功能,并且可以适应耳聋康复的不同耳蜗假体。

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