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Effect of middle ear fluid on sound transmission and auditory brainstem response in guinea pigs.

机译:中耳液对豚鼠声音传输和听觉脑干反应的影响。

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摘要

Combined measurements of middle ear transfer function and auditory brainstem response (ABR) in live guinea pigs with middle ear effusion (MEE) are reported in this paper. The MEE model was created by injecting saline into the middle ear cavity. Vibrations of the tympanic membrane (TM), the tip of the incus, and the round window membrane (RWM) were measured with a laser vibrometer at frequencies of 0.2-40 kHz when the middle ear fluid increased from 0 to 0.2 ml (i.e., full fill of the cavity). The click and pure tone ABRs were recorded as the middle ear fluid increased. Fluid introduction reduced mobility of the TM, incus and RWM mainly at high frequencies (f > 1 kHz). The magnitude of this reduction was related to the volume of fluid. The displacement transmission ratio of the TM to incus varied with frequency and fluid level. The volume displacement ratio of the oval window to round window was approximately 1.0 over most frequencies. Elevation of ABR thresholds and prolongation of ABR latencies were observed as fluid level increased. Reduction of TM displacement correlated well with elevation of ABR threshold at 0.5-8 kHz. Alterations in the ratio of ossicular displacements before and after fluid induction are consistent with fluid-induced changes in complex ossicular motions.
机译:本文报道了活体豚鼠中耳积液(MEE)对中耳传递功能和听觉脑干反应(ABR)的联合测量。通过将盐水注入中耳腔来创建MEE模型。当中耳液从0毫升增加到0.2毫升时,用激光振动计在0.2-40 kHz的频率下测量鼓膜(TM),in的尖端和圆窗膜(RWM)的振动。完全填充空腔)。随着中耳液的增加,记录了喀哒声和纯音ABR。流体引入主要在高频(f> 1 kHz)下降低了TM,incus和RWM的迁移率。这种减少的幅度与流体的体积有关。 TM与砧座的位移传递比随频率和液位而变化。在大多数频率上,椭圆形窗口与圆形窗口的体积位移比约为1.0。随着液位的升高,观察到ABR阈值升高和ABR潜伏期延长。 TM位移的减小与0.5-8kHz处的ABR阈值升高高度相关。流体诱导前后听骨位移比例的变化与复杂听骨运动中流体诱导的变化一致。

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