ENT Department, Leiden University Medical Centre, Leiden, Netherlands.
Leiden Institute for Brain and Cognition, Leiden University, Leiden, Netherlands.
Biomed Res Int. 2017;2017:7915042. doi: 10.1155/2017/7915042. Epub 2017 Sep 13.
Previous studies have demonstrated no improved or deteriorated speech intelligibility with the HiResolution Fidelity 120™ speech coding strategy (HiResF120) over the original HiRes strategy. Improved spectral and deteriorated temporal sensitivities have been shown, making it plausible that the beneficial effect in the spectral domain was offset by the worsened temporal sensitivity. We hypothesize that the implementation of fast Fourier transform (FFT) processing, instead of the traditionally used bandpass filters, explains the reduction of temporal sensitivity. In this study, spectral ripple discrimination, temporal modulation detection, and speech intelligibility in noise were assessed in a two-week take-home trial with 3 speech coding strategies: one with conventional bandpass filters (HiRes), one with FFT-based filters (HiRes FFT), and one with FFT-based filters and current steering (HiRes Optima). One participant dropped out due to discomfort with both research programs. The 10 remaining participants performed equally well on all tasks with all three speech coding strategies, implying that FFT processing does not change the ability of CI recipients to discriminate spectral or temporal information or speech understanding.
先前的研究表明,与原始 HiRes 策略相比,HiResolution Fidelity 120™ 语音编码策略(HiResF120)并未提高或降低语音可懂度。研究表明,该策略具有改善的频谱敏感性和恶化的时间敏感性,这使得在频谱域中有益的效果可能被时间敏感性的恶化所抵消。我们假设,快速傅里叶变换(FFT)处理的实施,而不是传统使用的带通滤波器,解释了时间敏感性的降低。在这项研究中,通过为期两周的家庭试用,使用三种语音编码策略(一种具有传统带通滤波器的策略(HiRes),一种具有基于 FFT 的滤波器的策略(HiRes FFT),以及一种具有基于 FFT 的滤波器和电流转向的策略(HiRes Optima))评估了频谱波纹辨别、时间调制检测和噪声中的语音可懂度。由于对两个研究方案都感到不适,一名参与者退出了。其余 10 名参与者在所有三个语音编码策略的所有任务中表现相同,这意味着 FFT 处理不会改变 CI 接受者辨别频谱或时间信息或理解语音的能力。