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A Precision Driver Device for Intraoperative Stimulation of a Bone Conduction Implant

机译:一种精密驱动装置,用于术中刺激骨导电植入物

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Semi-implantable bone conduction implants (BCI) and active middle ear implants (AMEI) for patients with sensorineural, conductive or mixed hearing loss commonly use an amplitude modulation technology to transmit power and sound signals from an external audio processor to the implant. In patients, the distance dependence of the signal amplitude is of minor importance as the skin thickness is constant and only varies between 3-7?mm. In this range, critical coupling transmission technique sufficiently reduces the variability in amplitude, but fails to provide well-defined amplitudes in many research and clinical applications such as intraoperative integrity tests where the distance range is exceeded by using sterile covers. Here we used the BCI Bonebridge (BB, Med-El, Austria) as an example to develop and demonstrate a system that synthesizes the transmission signal, determines the distance between the transmitter and the receiver implant coil and compensates transmission losses. When compared to an external audio processor (AP304) on an artificial mastoid, our system mainly decreased amplitude variability from over 11?dB to less than 3?dB for audio frequencies (0.1-10?kHz) at distances up to 15?mm, making it adequate for intraoperative and audiometric tests.
机译:用于感应性,导电或混合听力损失的患者的半植入骨传导植入物(BCI)和活跃的中耳植入物(AMEI)通常使用幅度调制技术从外部音频处理器向植入物传输电力和声音信号。在患者中,由于皮肤厚度是恒定的,信号幅度的距离依赖性具有较小的重要性,并且仅在3-7Ωmm之间变化。在该范围内,关键耦合传输技术充分降低了幅度的变异性,但是不能在许多研究和临床应用中提供明确定义的幅度,例如通过使用无菌覆盖物超出距离范围的术中的完整性测试。在这里,我们使用BCI Bonebridge(BB,Med-EL,奥地利)作为示例来开发和演示合成传输信号的系统,确定发射器和接收器植入线圈之间的距离并补偿传输损耗。与人工乳突上的外部音频处理器(AP304)相比,我们的系统主要将幅度可变性降低到超过11?DB至小于3?DB的音频频率(0.1-10?kHz),距离高达15Ωmm,使其足以用于术中和听力测量测试。

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