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A NOVEL BONE CONDUCTION IMPLANT - ANALOG RADIO FREQUENCY DATA AND POWER LINK DESIGN

机译:新型骨传导植入物-模拟无线电频率数据和电源链路设计

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摘要

Patients who are suffering from conductive hearing loss and single sided deafness cannot sometimes be rehabilitated by conventional air conduction hearing aids. Today, percutaneous Bone Anchored Hearing Aid (BAHA) is an important alternative for such patients. BAHA uses a titanium implant which penetrates the skin and can cause skin infection, skin redness and requires life-long commitment of care every day. A novel Bone Conduction Implant (BCI) is designed as an alternative to the percutaneous BAHA, because it leaves the skin intact. It comprises an external audio processor and an implanted unit called the BCI Bone Bridge. Sound is transmitted to the implant via an inductive radio frequency (RF) link through the intact skin using amplitude modulation.This paper presents an analog RF data and power link design as a first implementation for the BCI. The RF link is designed to operate in critical coupling to transmit maximum power to the implant. Maximum Power Output of the BCI was measured at 2 mm skin thickness and was found to be 105 dB relative to 1 μN at the transducer resonance frequency. This output force is fairly robust in 2 mm to 6 mm skin thickness range.
机译:患有传导性听力损失和单侧耳聋的患者有时无法通过传统的空气传导助听器康复。如今,经皮骨锚式助听器(BAHA)已成为此类患者的重要替代选择。 BAHA使用钛植入物,该植入物可渗透皮肤并引起皮肤感染,皮肤发红,并且每天需要终生护理。一种新型的骨传导植入物(BCI)被设计作为经皮BAHA的替代品,因为它可以使皮肤保持完整。它包括一个外部音频处理器和一个称为BCI骨桥的植入单元。声音通过振幅调制通过完整皮肤通过感应射频(RF)链路传输到植入物。本文提出了模拟RF数据和功率链路设计,作为BCI的第一种实现。 RF链路设计为在关键耦合下运行,以将最大功率传输到植入物。 BCI的最大功率输出是在2 mm皮肤厚度处测量的,发现在换能器共振频率下相对于1μN为105 dB。该输出力在2毫米至6毫米皮肤厚度范围内相当坚固。

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