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Investigating perceptual features of electrode stimulation via a multidimensional scaling paradigm

机译:通过多维缩放范例研究电极刺激的感知特征

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To achieve the most effective speech processing for individuals with cochlear implants, it is important to understand the perceptual features associated with the stimulation parameters. In general, when electrodes are stimulated in order from apex to base, the pitch of the perceived sound changes in an orderly fashion from low to high. Some deviations from this assumed order have been documented. Also, pitch is the dominant perceptual attribute of a sound when the stimuli associated with different electrodes have been accurately loudness balanced. In this study, the results of a multidimensional scaling (MDS) paradigm were compared to the results of a pitch-ranking procedure for six subjects implanted with multichannel cochlear prostheses. Results indicate that there may be multiple percepts that change with electrode location. Not surprisingly, the dominant percept is strongly correlated with pitch. The results also indicate that the structure of the second percept is consistent across subjects, although not interpretable using the data measured in this study. Furthermore, results indicate that MDS data can be used to pinpoint indiscriminable electrodes more accurately than pitch data. The results of this study may have importance for the design of the next generation of speech processors.
机译:为了对植入人工耳蜗的个体实现最有效的语音处理,重要的是要了解与刺激参数相关的感知特征。通常,当从顶点到基部依次刺激电极时,所感知的声音的音高从低到高有序地变化。已经记录了与该假定顺序的一些偏差。同样,当与不同电极关联的刺激已经精确地平衡了响度时,音调是声音的主要感知属性。在这项研究中,多维缩放(MDS)范式的结果与六个对象植入多通道人工耳蜗的俯仰排序程序的结果进行了比较。结果表明,可能会有多种感知随电极位置而变化。毫不奇怪,优势感知与音高密切相关。结果也表明第二个知觉的结构在受试者之间是一致的,尽管使用本研究中测得的数据无法解释。此外,结果表明,与间距数据相比,MDS数据可用于更精确地定位难以区分的电极。这项研究的结果可能对下一代语音处理器的设计很重要。

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