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Making Use of Auditory Models for Better Mimicking of Normal Hearing Processes With Cochlear Implants: The SAM Coding Strategy

机译:利用听觉模型更好地模仿人工耳蜗的正常听力过程:SAM编码策略

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摘要

Mimicking the human ear on the basis of auditory models has become a viable approach in many applications by now. However, only a few attempts have been made to extend the scope of physiological ear models to be employed in cochlear implants (CI). Contemporary CI systems rely on much simpler filter banks and simulate the natural signal processing of a healthy cochlea to only a very limited extent. When looking at rehabilitation outcomes, current systems seem to have reached their peak potential, which signals the need for better algorithms and/or technologies. In this paper, we present a novel sound processing strategy, SAM (Stimulation based on Auditory Modeling), that is based on neurophysiological models of the human ear and can be employed in auditory prostheses. It incorporates active cochlear filtering (basilar membrane and outer hair cells) along with the mechanoelectrical transduction of the inner hair cells, so that several psychoacoustic phenomena are accounted for inherently. Although possible, current implementation does not make use of parallel stimulation of the electrodes, which matches state-of-the-art CI hardware. This paper elaborates on SAM's signal processing and provides a computational evaluation of the strategy. Results show that aspects of normal cochlear processing that are missing in common strategies can be replicated by SAM. This is supposed to improve overall CI user performance, which we have at least partly proven in a pilot study with implantees.
机译:到目前为止,在听觉模型的基础上模仿人的耳朵已经成为​​许多应用中的可行方法。然而,仅进行了很少的尝试来扩展将在人工耳蜗(CI)中使用的生理性耳模的范围。当代的CI系统依赖于简单得多的滤波器组,并且仅在非常有限的程度上模拟了健康的耳蜗的自然信号处理。在查看康复结果时,当前系统似乎已达到其峰值潜力,这表明需要更好的算法和/或技术。在本文中,我们提出了一种新颖的声音处理策略SAM(基于听觉建模的刺激),该方法基于人耳的神经生理模型,可用于听觉假体。它结合了主动的耳蜗过滤(基底膜和外毛细胞)以及内毛细胞的机械电转导,因此固有地解释了几种心理声学现象。尽管可能,但是当前的实现方式并未利用电极的并行刺激,这与最新的CI硬件相匹配。本文详细阐述了SAM的信号处理,并提供了对该策略的计算评估。结果表明,常规策略中缺少的正常耳蜗加工方面可以通过SAM复制。这样做可以改善CI用户的整体性能,我们至少在植入者的一项初步研究中证明了这一点。

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