Maré M J, Dreschler W A, Verschuure H
Academic Medical Center, Department of Audiology, Amsterdam, The Netherlands.
J Speech Hear Res. 1992 Jun;35(3):675-85. doi: 10.1044/jshr.3503.675.
Speech perception was tested through a broad-band syllabic compressor with four different static input-output configurations. All other parameters of the compressor were held constant. The compressor was implemented digitally and incorporated a delay to reduce overshoot. We studied four different input-output configurations, including a linear reference condition. Normal-hearing and hearing-impaired subjects participated in the experiments testing perception of meaningful sentences as well as nonsense CVCs in carrier phrases. The speech materials were presented in quiet and in noise. The results from the CVCs were analyzed quantitatively in terms of scores and qualitatively in terms of phoneme confusions. Differences in speech perception due to the different input-output configurations were small. The input-output configuration with the highest amplification of low amplitude sounds yielded the best results. Detailed analysis of the results included a correlational analysis with a number of auditory functions characterizing the ears tested. The pure-tone audiogram provided parameters of auditory sensitivity: average audiometric loss and audiometric slope. Psychophysical tests provided parameters of temporal resolution and frequency selectivity: the temporal resolution factor, temporal gap detection, and auditory filter shape. The correlational analysis showed that the subjects with better temporal acuity obtained better results.
通过具有四种不同静态输入-输出配置的宽带音节压缩器对言语感知进行测试。压缩器的所有其他参数保持不变。该压缩器以数字方式实现,并加入了一个延迟以减少过冲。我们研究了四种不同的输入-输出配置,包括一个线性参考条件。听力正常和听力受损的受试者参与了测试对有意义句子以及载体短语中无意义CVC感知的实验。言语材料在安静和噪声环境中呈现。对CVC的结果从得分方面进行了定量分析,并从音素混淆方面进行了定性分析。由于不同的输入-输出配置导致的言语感知差异很小。对低幅度声音放大倍数最高的输入-输出配置产生了最佳结果。对结果的详细分析包括与表征受试耳朵的一些听觉功能进行相关性分析。纯音听力图提供了听觉敏感度参数:平均听力损失和听力图斜率。心理物理学测试提供了时间分辨率和频率选择性参数:时间分辨率因子、时间间隙检测和听觉滤波器形状。相关性分析表明,时间敏锐度较好的受试者获得了更好的结果。