Shetty Hemanth Narayan
All India Institute of Speech and Hearing, Mysuru, India.
J Otol. 2016 Sep;11(3):95-101. doi: 10.1016/j.joto.2016.08.001. Epub 2016 Aug 27.
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.
时间包络是一种低频幅度调制,在言语感知过程中传递音段和超音段信息。不幸的是,我们很少处于完全安静的聆听环境中,周围环境中常见的噪声会掩盖言语中的精细结构线索以及部分时间包络线索。从噪声中传出的言语的可用时间内容通常足以在听力正常的个体中传达所需信息。然而,在老年人(无论是否有听力损失)中情况则不同,由于时间处理能力受损,他们缺乏这种能力。这促使研究人员关注言语时间增强在改善言语感知方面的重要性。文献中有许多时间包络策略,但每种策略都有其自身的缺陷。发现通过深带调制(DBM)进行包络增强对那些有时间处理障碍的个体有益。原因可能归因于从每个通道提取的3至30赫兹之间的时间包络带宽增强了15分贝,这显著增加了调制深度,从而使元音对辅音的掩蔽最小化。此外,对深带调制言语的输出进行重新缩放,使其持续时间增加,并能相对容易地获取词汇表中的单词。因此,在不久的将来,随着更多与DBM算法相关的实验,它可用于康复设备,以减轻时间处理障碍的影响。