Development and validation of a French speech-in-noise self-test using synthetic voice in an adult population

Arnaud Génin, Jérôme Courtial, Maxime Balcon, J. Puel, Frédéric Venail, J. Ceccato
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Abstract

Speech-in-noise (SIN) audiometry is a valuable part of audiological diagnostics and clinical measurements, providing information on an individual's ability to understand in noise. To date, such tests have been developed with natural voice presented monaurally or binaurally (via diotic and dichotic presentation). The time required to develop such tests is often long. The use of synthetic voice would simplify the test creation process and self-testing would improve accessibility.Measurements were performed using an Android tablet (Samsung Galaxy Tab A7) and calibrated Bluetooth headphones (Tilde Pro C, Orosound). Normative values were first defined using natural or synthetic voice on 69 normal-hearing participants. A total of 463 participants then undertook the SIN test comprising synthetic voice and dichotic antiphasic presentation. Of these, 399 also performed the SIN test with diotic presentation.No significant differences in the speech reception threshold (SRT) were found between natural and synthetic voices for diotic presentations (p = 0.824, paired Student t-test) with normative values of −10.7 dB SNR (SD = 1.5 dB) and −10.4 dB SNR (SD = 1.4 dB), respectively. For the SoNoise test with synthetic voice and dichotic antiphasic presentation, the results showed a normative value of −17.5 dB SNR (SD = 1.5 dB), and a strong correlation (r = 0.797, p < 0.001) with the four-frequency pure-tone average (4f-PTA). Receiver operating curves (ROC) were then calculated: for a 4f-PTA of 20 dB hearing level (HL), the SRT was −14.5 dB SNR with a sensitivity of 84% and specificity of 89%. For a 4f-PTA of 30 dB HL, the SRT was −13.7 dB SNR with a sensitivity of 89% and specificity of 91%. For a 4f-PTA of 35 dB HL, the SRT was −13.0 dB SNR with a sensitivity of 88% and specificity of 93%. The normative binaural intelligibility level difference (BILD) value was 8.6 dB (SD = 2.0 dB) with normal-hearing participants. The learning effect due to the task and interface was 1.7 dB (1st to 7th test) and test duration was 3 min.The SoNoise test in its synthetic dichotic antiphasic presentation is a fast and reliable tool to diagnose hearing impairment at 20, 30, and 35 dB HL cut-offs.
在成人群体中使用合成语音开发和验证法语噪声语音自测试
噪声语音(SIN)测听是听力诊断和临床测量的重要组成部分,可提供有关个人噪声理解能力的信息。迄今为止,此类测试都是通过单声道或双声道(通过双声道和二声道)自然语音进行的。开发此类测试通常需要很长时间。使用合成语音可简化测试创建过程,而自我测试则可提高测试的可及性。测试使用安卓平板电脑(三星 Galaxy Tab A7)和校准过的蓝牙耳机(Tilde Pro C,Orosound)进行。首先使用自然语音或合成语音为 69 名听力正常的参与者确定了标准值。随后,共有 463 名参与者进行了 SIN 测试,包括合成语音和二分法反相语音。结果发现,自然语音和合成语音在二分法呈现时的语音接收阈值(SRT)没有明显差异(p = 0.824,配对学生 t 检验),标准值分别为-10.7 dB SNR(SD = 1.5 dB)和-10.4 dB SNR(SD = 1.4 dB)。对于合成语音和二分反相音的 SoNoise 测试,结果显示正常值为-17.5 dB SNR(SD = 1.5 dB),与四频纯音平均值(4f-PTA)有很强的相关性(r = 0.797,p < 0.001)。然后计算了接收器工作曲线 (ROC):对于听力水平 (HL) 为 20 dB 的 4f-PTA,SRT 为 -14.5 dB SNR,灵敏度为 84%,特异性为 89%。听力水平为 30 dB 的 4f-PTA 的 SRT 为 -13.7 dB SNR,灵敏度为 89%,特异度为 91%。4f-PTA 为 35 dB HL 时,SRT 为 -13.0 dB SNR,灵敏度为 88%,特异度为 93%。正常听力参与者的标准双耳可懂度级差(BILD)值为 8.6 dB(SD = 2.0 dB)。由任务和界面引起的学习效应为 1.7 dB(第 1 次至第 7 次测试),测试持续时间为 3 分钟。SoNoise 测试的合成二分法反相表现形式是一种快速可靠的工具,用于诊断 20、30 和 35 dB HL 临界值的听力损伤。
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