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Integrated In-Ear Device for Auditory Health Assessment

机译:用于听觉健康评估的集成耳机设备

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摘要

Clinical assessment of the human auditory system is an integral part of evaluating the health of a patient’s cognitive processes. Conventional tests performed by audiologists include the Auditory Steady State Response (ASSR) and the Auditory Brainstem Response (ABR), both of which present an audio stimulus to the patient in order to elicit a change in brain state measurable by electroencephalography (EEG) techniques. Spatial monitoring of the electrophysiological activity in the auditory cortex, temporal cortex, and brain stem during auditory stimulus evaluation can be used to pinpoint to location of auditory dysfunction along the auditory pathway. However, given the obtrusive nature of conventional auditory evaluation techniques and the lack of information about sound transduction and cochlear dynamics usually irrecoverable by EEG, a better approach is needed to improve its clinical utility. Here, we present an in-ear device for auditory health assessment that integrates a sound engine for stimulation and high-density dry-electrode EEG for real-time simultaneous recording of brain activity. This system provides ease-of-use and patient comfort. We also investigate the auditory transfer function of the hearing system as an intricate convolution of the tympanic membrane, middle ear bones, and the cochlear subsystems.
机译:人体听觉系统的临床评估是评估患者认知过程健康的组成部分。听力学家执行的常规测试包括听觉稳态响应(ASSR)和听觉脑干响应(ABR),这两者都向患者呈现音频刺激,以便引发通过脑电图(EEG)技术可测量的脑状态的变化。在听觉刺激评估期间听觉皮质,颞皮质和脑干的电生理活性的空间监测可用于沿着听觉途径定位到听觉功能障碍的位置。然而,鉴于传统听觉评估技术的突出性质和缺乏关于脑电图的声音转导和耳蜗动力学的信息,因此需要更好的方法来改善其临床效用。在这里,我们提出了一种用于听觉健康评估的内耳设备,其集成了用于刺激和高密度干电极EEG的声音发动机,用于实时同时记录脑活动。该系统提供易用性和患者的舒适度。我们还研究了听力系统的听觉转移功能,作为鼓膜,中耳骨骼和耳蜗子系统的复杂卷积。

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