Park Gyuseok, Lee Ju Hyung, Kim Kyu-Sung
Department of Electronic Engineering, College of Medicine, Inha University, Incheon, Korea.
Kingsway College, Oshawa, Canada.
Korean J Audiol. 2013 Sep;17(2):78-82. doi: 10.7874/kja.2013.17.2.78. Epub 2013 Sep 24.
For the hearing-impaired population, quality of sound when listening to speech on mobile phone is often dissatisfactory. Even with a turning up the volume, they feel mobile speech unclear and desire the mobile sounds to be amplified as suited for the hearing characteristics. The purpose of this study was to estimate the appropriateness of NAL-NL1 fitting formula for the hearing-impaired mobile communication.
NAL-NL1 and a modified fitting formula (M-formula) were applied for sound amplification in consideration of individual hearing loss. Amplified speech material was presented for a word-recognition score (WRS) test in each subject. To simulate actual mobile phone sound, all speech material was filtered in 8 kHz low-pass filter and presented through a mobile phone to the subjects. Speech material was categorized into a speech-without-noise group and noisy speech group.
Amplified sound with NAL-NL1 formula had a slightly better WRS than amplified speech with M-formula in speech-without-noise environments. However, in the noisy speech group, M-formula showed better WRS than NAL-NL1.
For a good speech-perception in mobile phones, more high-frequency speech components need to be provided, especially for noisy environments. This study showed the possibility that specified fitting strategies may be applied for mobile phones to improve hearing in various environments, as with hearing aids.
对于听力受损人群而言,在手机上听语音时的声音质量往往不尽人意。即便调高音量,他们仍觉得手机语音不清晰,希望手机声音能根据听力特点进行放大。本研究的目的是评估NAL-NL1拟合公式在听力受损者移动通信中的适用性。
考虑个体听力损失情况,应用NAL-NL1和一种改良拟合公式(M公式)进行声音放大。向每位受试者呈现放大后的语音材料以进行单词识别分数(WRS)测试。为模拟实际手机声音,所有语音材料均通过8kHz低通滤波器进行滤波,并通过手机呈现给受试者。语音材料分为无噪声语音组和嘈杂语音组。
在无噪声环境中,使用NAL-NL1公式放大的声音的WRS略优于使用M公式放大的语音。然而,在嘈杂语音组中,M公式的WRS优于NAL-NL1。
为了在手机上获得良好的语音感知,需要提供更多高频语音成分,尤其是在嘈杂环境中。本研究表明,与助听器一样,特定的拟合策略有可能应用于手机,以改善各种环境下的听力。