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Portable Smart-Space Research Interface to Predetermine Environment Acoustics for Cochlear implant and Hearing aid users with CCi-MOBILE

机译:便携式智能空间研究接口,可通过CCi-MOBILE为人工耳蜗和助听器用户预先确定环境声学

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Internet of things (IoT) in healthcare, has effi-ciently accelerated medical monitoring and assessment through the real-time analysis of collected data. Hence, to support the hearing-impaired community with better calibrations to their clinical processors and hearing aids, a portable smart space interface - AURIS has been developed by the Cochlear Implant Processing Lab (CILab) at UT-Dallas. The proposed Auris interface periodically samples the acoustic space, and through a learn vs test phase, builds a Gaussian mixture model for each specific environmental locations. An effective connection is established by the Auris interface with the CRSS CCi-Mobile research platform through an android app to fine tune the con-figuration settings for cochlear implant (CI) or hearing aid (HA) users entering the room/location. Baseline objective evaluations have been performed in diverse naturalistic locations using 12 hours of audio data. The performance metrics is determined by a verified wireless communication, along with estimated acoustic environment knowledge and room classification at greater than 90% accuracy.
机译:医疗保健中的物联网(IoT)通过对收集到的数据进行实时分析,有效地加快了医疗监控和评估的速度。因此,为了更好地校准听力障碍者的临床处理器和助听器,UT-达拉斯的人工耳蜗植入实验室(CILab)开发了便携式智能空间接口AURIS。拟议的Auris接口会定期对声学空间进行采样,并通过学习与测试阶段为每个特定环境位置建立高斯混合模型。 Auris界面通过Android应用程序与CRSS CCi-Mobile研究平台建立了有效的连接,以微调进入房间/位置的人工耳蜗(CI)或助听器(HA)用户的配置设置。已使用12个小时的音频数据在各种自然环境中进行了基准客观评估。性能指标由经过验证的无线通信以及估计的声学环境知识和房间分类(大于90%的准确性)确定。

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