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A technical review and evaluation of implantable sensors for hearing devices

机译:听力设备植入式传感器的技术审查和评估

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摘要

Most commercially available cochlear implants and hearing aids use microphones as sensors for capturing the external sound field. These microphones are in general located in an external element, which is also responsible for processing the sound signal. However, the presence of the external element is the cause of several problems such as discomfort, impossibility of being used during physical activities and sleeping, and social stigma. These limitations have driven studies with the goal of developing totally implantable hearing devices, and the design of an implantable sensor has been one of the main challenges to be overcome. Different designs of implantable sensors can be found in the literature and in some commercial implantable hearing aids, including different transduction mechanisms (capacitive, piezoelectric, electromagnetic, etc), configurations microphones, accelerometers, force sensor, etc) and locations (subcutaneous or middle ear). In this work, a detailed technical review of such designs is presented and a general classification is proposed. The technical characteristics of each sensors are presented and discussed in view of the main requirements for an implantable sensor for hearing devices, including sensitivity, internal noise, frequency bandwidth and energy consumption. The feasibility of implantation of each sensor is also evaluated and compared.
机译:大多数市售的人工耳蜗和助听器都使用麦克风作为捕获外部声场的传感器。这些麦克风通常位于外部元件中,该外部元件还负责处理声音信号。然而,外部因素的存在是造成一些问题的原因,例如不适,在体育活动和睡眠中不能使用,社会污名化。这些局限性推动了旨在开发完全可植入式听力装置的研究,而可植入式传感器的设计已成为要克服的主要挑战之一。在文献和一些商用植入式助听器中可以找到不同设计的植入式传感器,包括不同的传导机制(电容,压电,电磁等),配置麦克风,加速度计,力传感器等)和位置(皮下或中耳) )。在这项工作中,对这种设计进行了详细的技术审查,并提出了一般分类。鉴于对听力设备植入式传感器的主要要求,包括灵敏度,内部噪声,频率带宽和能耗,提出并讨论了每种传感器的技术特性。还评估并比较了植入每个传感器的可行性。

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