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骨桥经皮骨导听力植入物的听力学结果测量:噪声、混响和信号处理特征的影响。

Audiological outcome measures with the BONEBRIDGE transcutaneous bone conduction hearing implant: impact of noise, reverberation and signal processing features.

机构信息

School of Communication Sciences and Disorders, Western University, London, Ontario, Canada.

National Centre for Audiology, Faculty of Health Sciences, University of Western Ontario, London, ON, Canada.

出版信息

Int J Audiol. 2020 Jul;59(7):556-565. doi: 10.1080/14992027.2020.1728400. Epub 2020 Feb 18.

DOI:10.1080/14992027.2020.1728400
PMID:32069128
Abstract

To assess the performance of an active transcutaneous implantable-bone conduction device (TI-BCD), and to evaluate the benefit of device digital signal processing (DSP) features in challenging listening environments. Participants were tested at 1- and 3-month post-activation of the TI-BCD. At each session, aided and unaided phoneme perception was assessed using the Ling-6 test. Speech reception thresholds (SRTs) and quality ratings of speech and music samples were collected in noisy and reverberant environments, with and without the DSP features. Self-assessment of the device performance was obtained using the Abbreviated Profile of Hearing Aid Benefit (APHAB) questionnaire. Six adults with conductive or mixed hearing loss. Average SRTs were 2.9 and 12.3 dB in low and high reverberation environments, respectively, which improved to -1.7 and 8.7 dB, respectively with the DSP features. In addition, speech quality ratings improved by 23 points with the DSP features when averaged across all environmental conditions. Improvement scores on APHAB scales revealed a statistically significant aided benefit. Noise and reverberation significantly impacted speech recognition performance and perceived sound quality. DSP features (directional microphone processing and adaptive noise reduction) significantly enhanced subjects' performance in these challenging listening environments.

摘要

评估主动经皮植入骨导装置(TI-BCD)的性能,并评估设备数字信号处理(DSP)功能在挑战性聆听环境中的益处。参与者在 TI-BCD 激活后 1 个月和 3 个月进行测试。在每次测试中,使用 Ling-6 测试评估助听和未助听的语音感知。在有噪声和混响的环境中,收集带有和不带有 DSP 功能的语音和音乐样本的言语接受阈(SRT)和语音质量评分。使用简化听力助听效果问卷(APHAB)评估对设备性能的自我评估。6 名患有传导性或混合性听力损失的成年人。在低混响和高混响环境中的平均 SRT 分别为 2.9dB 和 12.3dB,分别提高了 12.3dB 和 8.7dB。此外,在所有环境条件下,DSP 功能的语音质量评分平均提高了 23 分。APHAB 量表的改善分数显示出统计学上的显著辅助益处。噪声和混响显著影响语音识别性能和感知声音质量。DSP 功能(定向麦克风处理和自适应降噪)显著增强了受试者在这些挑战性聆听环境中的表现。

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