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Evaluation of Bone Conduction Vibration System Using Photoacoustic Effect

机译:利用光声效应评估骨传导振动系统

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This article proposes a novel bone conduction vibrator based on an interesting phenomenon where audible sound can be perceived when a vibration is produced using a laser beam that is synchronized to the sound and this vibration is transmitted to an auricular cartilage. To study this phenomenon, we measured the effect using a rubber sheet with similar properties to those of soft tissue, together with an acceleration sensor, and found that audible sound was produced in the sample. We also calculated the force level based on the mechanical impedance and the acceleration in the proposed system. It is expected that a force level equal to the reference equivalent threshold force level can be achieved at a light intensity below the safety limit for human skin exposure by choosing an irradiation wavelength at which a larger degree of optical absorption occurs. This novel application of the photoacoustic effect is promising for bone conduction hearing aids.
机译:本文基于一种有趣的现象提出了一种新型的骨传导振动器,当使用与声音同步的激光束产生振动并将该振动传递到耳软骨时,可以听到可听见的声音。为了研究这种现象,我们使用了具有与软组织相似的特性的橡胶板,并结合了加速度传感器,来测量这种影响,并发现样品中产生了可听见的声音。我们还根据机械阻抗和拟议系统中的加速度计算了力水平。期望通过选择发生更大程度的光吸收的照射波长,可以在低于人皮肤暴露的安全极限的光强度下获得与参考等效阈值力水平相等的力水平。光声效应的这种新颖应用有望用于骨传导助听器。

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