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Maximizing the Spectral and Temporal Benefits of Two Clinically Used Sound Processing Strategies for Cochlear Implants

机译:最大化耳蜗植入物两种临床使用的声音处理策略的频谱和时间收益

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Previous work showed that the Fidelity120 processing strategy provides better spectral sensitivity, while the HiResolution processing strategy can deliver more detailed temporal information for Advanced Bionics cochlear implant users. The goal of this study was to develop a new sound processing strategy by maximizing the spectral benefit of Fidelity120 and the temporal benefit of HiResolution to improve both aspects of hearing. Using acoustic simulations of Fidelity120 and HiResolution strategies, a dual-processing strategy was created by combining Fidelity120 in the low frequency channels and HiResolution in the high frequency channels. Compared to Fidelity120, the dual processing provided an improvement in performance for Schroeder-phase discrimination at 200 Hz and temporal modulation detection at 200 Hz with the cost of a slightly decreased performance for spectral-ripple discrimination relative to Fidelity120. Spectral-ripple discrimination was better with the dual processing than with HiResolution. However, no benefit for speech perception in noise was found for the dual-processing strategy over Fidelity 120 or HiResolution in our preliminary tests. Some other more optimal combination of Fidelity120 and HiResolution may be required to maximize the spectral and temporal benefits to yield improved speech perception.
机译:先前的工作表明,Fidelity120处理策略可提供更好的光谱灵敏度,而HiResolution处理策略可以为Advanced Bionics人工耳蜗用户提供更详细的时间信息。这项研究的目的是通过最大化Fidelity120的频谱优势和HiResolution的时间优势来开发一种新的声音处理策略,以改善听力的两个方面。使用Fidelity120和HiResolution策略的声学模拟,通过组合低频通道中的Fidelity120和高频通道中的HiResolution来创建双重处理策略。与Fidelity120相比,双重处理提供了200 Hz的Schroeder相位判别性能和200 Hz的时间调制检测性能的提高,但相对于Fidelity120而言,频谱波纹判别性能略有下降。双重处理的光谱波纹识别效果比HiResolution更好。但是,在我们的初步测试中,没有发现与Fidelity 120或HiResolution相比,双重处理策略对噪声中语音感知的好处。 Fidelity120和HiResolution可能需要其他一些更优化的组合,以使频谱和时间收益最大化,从而改善语音感知。

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