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Robust Data-Driven Auditory Profiling Towards Precision Audiology

机译:强大的数据驱动听觉分析到精密听觉

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The sources and consequences of a sensorineural hearing loss are diverse. While several approaches have aimed at disentangling the physiological and perceptual consequences of different etiologies, hearing deficit characterization and rehabilitation have been dominated by the results from pure-tone audiometry. Here, we present a novel approach based on data-driven profiling of perceptual auditory deficits that attempts to represent auditory phenomena that are usually hidden by, or entangled with, audibility loss. We hypothesize that the hearing deficits of a given listener, both at hearing threshold and at suprathreshold sound levels, result from two independent types of “auditory distortions.” In this two-dimensional space, four distinct “auditory profiles” can be identified. To test this hypothesis, we gathered a data set consisting of a heterogeneous group of listeners that were evaluated using measures of speech intelligibility, loudness perception, binaural processing abilities, and spectrotemporal resolution. The subsequent analysis revealed that distortion type-I was associated with elevated hearing thresholds at high frequencies and reduced temporal masking release and was significantly correlated with elevated speech reception thresholds in noise. Distortion type-II was associated with low-frequency hearing loss and abnormally steep loudness functions. The auditory profiles represent four robust subpopulations of hearing-impaired listeners that exhibit different degrees of perceptual distortions. The four auditory profiles may provide a valuable basis for improved hearing rehabilitation, for example, through profile-based hearing-aid fitting.
机译:传感器听力损失的来源和后果是多种多样的。虽然有几种方法旨在解散不同病因的生理和感知后果,但听到缺陷表征和康复都是由纯音听力学的结果主导。在这里,我们提出了一种基于数据驱动的知识听觉缺陷的新方法,该方法试图代表通常隐藏或纠缠在一起,可读性损失的听觉现象。我们假设给定倾听的听力缺陷,既在听力阈值和Suprathreshold声级,也是由两个独立类型的“听觉扭曲”。在该二维空间中,可以识别四个不同的“听觉配置文件”。为了测试这一假设,我们收集了一种数据集,该数据集由使用语音清晰度,响度感知,双耳加工能力和光谱仪器分辨率的测量评估的异构听众组成。随后的分析显示,失真类型-i与高频处的升高听力阈值相关联,并且减少了时间掩蔽释放,并且与噪声的升高的语音接收阈值显着相关。失真类型-II与低频听力损耗和异常陡度函数相关联。听觉配置文件代表了四个听力受损听众的强大群,表现出不同程度的感知扭曲。四个听觉型材可以为改善听力康复,例如,通过基于型材的助剂配合来提供有价值的基础。

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