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首页> 外文期刊>Acoustics Australia >Assessment of Two Audio-Recording Methods for Remote Collection of Vocal Biomarkers Indicative of Tobacco Smoking Harm
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Assessment of Two Audio-Recording Methods for Remote Collection of Vocal Biomarkers Indicative of Tobacco Smoking Harm

机译:两种远程采集指示吸烟危害的人声生物标志物的录音方法的评估

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摘要

Abstract This study aimed to determine if self-complete at-home recordings could produce audio samples of sufficient quality for use in voice analysis software, and if audio samples of similar or sufficient quality could be extracted from audio-recorded naturalistic phone interviews. Data were obtained from 31 adults aged 18 years and over who smoked. The /a/ sound segment was manually isolated, and analysis functions were used to produce the following values: fundamental frequency, jitter, shimmer, noise ratio, formant 3, and formant 4. The /a/ sound segment was then manually isolated from audio recordings of naturalistic interviews previously conducted by phone. These were analysed in the same way and compared for quality against Evistr-recorded audio samples from the same participants. A third audio sample consisted of an Evistr or phone-recorded sustained phonation of the /a/ sound. Means and standard deviations were calculated for the target vocal parameters. Statistical comparisons for quality of sound segment were conducted for readings, interviews, and vowel phonation and for sound signals extracted via both recording methods. Self-recording by adults who smoked provided audio samples of sufficient quality for analysis of vocal features that have been associated with a clinical outcome. The values obtained for sustained phonation audio samples displayed the least perturbation and noise for the vocal parameters surveyed. Sound signals recorded with smartphones appeared to be affected by electronic interference but have potential for use in diagnostic tools for measuring vocal parameters.
机译:摘要 本研究旨在确定自完整的家庭录音是否可以产生足够质量的音频样本用于语音分析软件,以及是否可以从录音自然电话访谈中提取类似或足够质量的音频样本。数据来自31名18岁及以上的吸烟成年人。手动隔离 /a/ 声音段,并使用分析函数生成以下值:基频、抖动、微光、噪声比、共振峰 3 和共振峰 4。然后,将 /a/ 声音片段与以前通过电话进行的自然主义采访的录音手动隔离。这些以相同的方式进行分析,并与来自相同参与者的 Evistr 录制的音频样本的质量进行比较。第三个音频样本包括 Evistr 或电话录制的 /a/ 声音的持续发声。计算目标人声参数的均值和标准差。对朗读、访谈和元音发声以及通过两种记录方法提取的声音信号进行声段质量的统计比较。吸烟的成年人的自我录音提供了足够质量的音频样本,用于分析与临床结果相关的发声特征。对于所调查的人声参数,持续发声音频样本获得的值显示出最小的扰动和噪声。用智能手机录制的声音信号似乎受到电子干扰的影响,但有可能用于测量声音参数的诊断工具。

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