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Temporal cues and the effect of their enhancement on speech perception in older adults – A scoping review

机译:时间提示及其增强对老年人言语感知的影响–范围回顾

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摘要

Temporal envelope is a low frequency amplitude modulation conveying segmental and suprasegmental information during speech perception. Unfortunately, we seldom find ourselves in completely quiet listening environments and noise, commonly found in the surrounding environment, obscures both the fine structure cues and partly the temporal envelope cues in speech. Available temporal content of speech emanating from noise is often enough to convey required information in normal hearing individuals. However, the case is different in older adults (with and without hearing loss) who lack such capabilities due to the impairment in temporal processing. This calls attention of a researcher to delineate the importance of temporal enhancement of speech in improving speech perception. There are many temporal envelope strategies available in the literature, but each one has its own lacunae. An envelope enhancement by a deep band modulation (DBM) is found to be beneficial for those individuals who have had a temporal processing impairment. The reason could be attributed to the 15 dB enhancement in the temporal envelope bandwidth between 3 and 30 Hz, extracted from each channel, which significantly increases the modulation depth such that masking of a consonant by a vowel is minimized. Additionally, output of deep band modulated speech is rescaled such that its duration increases and it provides relatively easy access to the word of the lexicon. Thus, in the near future, with more experiments related to DBM algorithm, it can be utilized in the rehabilitative devices to lessen the impact of the temporal processing impairment.
机译:时间包络是一种低频幅度调制,在语音感知过程中传达分段和超分段信息。不幸的是,我们很少在完全安静的聆听环境中发现自己,而在周围环境中通常会发现噪音,这会掩盖语音中的精细结构提示和部分时间包络提示。由噪声发出​​的语音的可用时间内容通常足以在正常听力的个体中传达所需的信息。但是,由于时间处理受损而缺乏这种能力的老年人(有或没有听力损失)的情况有所不同。这引起研究者的注意,以描述语音的时间增强在改善语音感知中的重要性。文献中有很多时间包络策略,但是每个策略都有其自身的缺陷。发现通过深带调制(DBM)进行的包络增强对那些具有时间处理损伤的个体是有益的。原因可归因于从每个通道提取的3至30 Hz之间的时间包络带宽增加了15 dB,这显着增加了调制深度,从而最大程度地减小了元音对辅音的掩盖。另外,对深带调制语音的输出进行重新缩放,以使其持续时间增加,并且可以相对容易地访问词典中的单词。因此,在不久的将来,随着与DBM算法有关的更多实验,可以在康复设备中利用它来减轻时间处理损伤的影响。

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