首页> 外文期刊>Hearing Research: An International Journal >Forward and reverse transfer functions of the middle ear based on pressure and velocity DPOAEs with implications for differential hearing diagnosis.
【24h】

Forward and reverse transfer functions of the middle ear based on pressure and velocity DPOAEs with implications for differential hearing diagnosis.

机译:基于压力和速度DPOAE的中耳的正向和反向传递函数,对差分听力诊断有影响。

获取原文
获取原文并翻译 | 示例
           

摘要

Recently it was shown that distortion product otoacoustic emissions (DPOAEs) can be measured as vibration of the human tympanic membrane in vivo, and proposed to use these vibration DPOAEs to support a differential diagnosis of middle-ear and cochlear pathologies. Here, we investigate how the reverse transfer function (r-TF), defined as the ratio of DPOAE-velocity of the umbo to DPOAE-pressure in the ear canal, can be used to diagnose the state of the middle ear. Anaesthetized guinea pigs served as the experimental animal. Sound was delivered free-field and the vibration of the umbo measured with a laser Doppler vibrometer (LDV). Sound pressure was measured 2-3 mm from the tympanic membrane with a probe-tube microphone. The forward transfer function (f-TF) of umbo velocity relative to ear-canal pressure was obtained by stimulating with multi-tone pressure. The r-TF was assembled from DPOAE components generated in response to acoustic stimulation with two stimulus tones of frequencies f(1) and f(2); f(2)/f(1) was constant at 1.2. The r-TF was plotted as function of DPOAE frequencies; they ranged from 1.7 kHz to 23 kHz. The r-TF showed a characteristic shape with an anti-resonance around 8 kHz as its most salient feature. The data were interpreted with the aid of a middle-ear transmission-line model taken from the literature for the cat and adapted to the guinea pig. Parameters were estimated with a three-step fitting algorithm. Importantly, the r-TF is governed by only half of the 15 independent, free parameters of the model. The parameters estimated from the r-TF were used to estimate the other half of the parameters from the f-TF. The use of r-TF data - in addition to f-TF data - allowed robust estimates of the middle-ear parameters to be obtained. The results highlight the potential of using vibration DPOAEs for ascertaining the functionality of the middle ear and, therefore, for supporting a differential diagnosis of middle-ear and cochlear pathologies.
机译:最近显示,畸变产物耳声发射(DPOAE)可以作为人体鼓膜在体内的振动进行测量,并提出使用这些振动DPOAE支持中耳和耳蜗病理的鉴别诊断。在这里,我们研究了反向传递函数(r-TF)(定义为耳道的DPOAE速度与DPOAE压力的比值)如何可用于诊断中耳的状态。麻醉的豚鼠作为实验动物。声音在自由场中传递,并通过激光多普勒振动计(LDV)来测量本振的振动。用探管麦克风在距鼓膜2-3 mm处测量声压。通过用多音调压力刺激获得相对于耳道压力的超音速的前向传递函数(f-TF)。 r-TF是由DPOAE组件组装而成的,DPOAE组件是响应于具有频率为f(1)和f(2)的两个刺激音的声刺激而生成的; f(2)/ f(1)恒定为1.2。 r-TF是DPOAE频率的函数;它们的范围为1.7 kHz至23 kHz。 r-TF最显着的特点是具有8 kHz左右的反谐振的特征形状。借助从猫的文献中提取并适用于豚鼠的中耳传输线模型对数据进行解释。用三步拟合算法估计参数。重要的是,r-TF仅受模型的15个独立,自由参数的一半控制。从r-TF估计的参数用于估计f-TF的另一半参数。除了f-TF数据外,使用r-TF数据还可以对中耳参数进行可靠的估计。结果突出显示了使用振动DPOAE来确定中耳功能的潜力,因此可以支持中耳和耳蜗病理的鉴别诊断。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号