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首页> 外文期刊>The Journal of the Acoustical Society of America >Acoustic method for calibration of audiometric bone vibrators
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Acoustic method for calibration of audiometric bone vibrators

机译:测听式骨振动器的声学校准方法

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摘要

The standard method for the calibration of audiometric bone vibrators requires the use of an artificial mastoid, a device that converts vibratory energy to an electrical analog. The mechanical input impedance of the device is designed to represent the average mechanical impedance of the human head. For calibration purposes, it is not necessary that the coupling device represent the impedance of the head. It is only necessary that it provides a repeatable measurement of the output of the vibrator that can be related to the normal threshold of hearing at each test frequency. In addition to the mechanical output that serves as the stimulus for the hearing test, bone vibrators produce an acoustic signal that is proportional to the mechanical force delivered to the head. By determining the transfer function relating the acoustic sound pressure to the mechanical force, the acoustic signal can serve as a proxy for the vibratory stimulus. This article describes the design and validation of an acoustic coupler for the calibration of audiometric bone vibrators.
机译:测听式骨骼振动器的标准校准方法需要使用人造乳突,这是一种将振动能量转换为电模拟量的装置。该设备的机械输入阻抗被设计为代表人头的平均机械阻抗。出于校准目的,耦合设备不必代表磁头的阻抗。仅需要提供可重复的振动器输出测量值,即可与每个测试频率下的正常听力阈值相关。除了作为听力测试刺激的机械输出外,骨骼振动器还产生与传递到头部的机械力成比例的声音信号。通过确定将声压与机械力相关的传递函数,声信号可以充当振动刺激的代理。本文介绍了用于测听骨骼振动器校准的声耦合器的设计和验证。

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