Keefe D H, Ling R
Boys Town National Research Hospital, Omaha, Nebraska 68131, USA.
J Acoust Soc Am. 1998 Jun;103(6):3499-508. doi: 10.1121/1.423058.
Measurements of double-click-evoked otoacoustics emissions (2CEOAEs) and double-chirp distortion products (2ChDPs) are reported for normal-hearing adults based upon theory presented in an earlier report [Keefe, J. Acoust, Soc. Am. 103, 3489-3498 (1998)]. The nonlinear acoustic response of a probe assembly used in ear-canal measurements in tested in a calibration cavity to compare the double-evoked (2E) technique with existing OAE techniques. The 2E technique reduces the peak distortion by approximately 30 dB relative to existing click-evoked techniques. The 2E subtraction of click responses is partially analogous to current techniques in that the linear response is eliminated, but differs in that high-frequency measurements are improved by eliminating time gating of the cochlear response, and low-frequency measurements are improved by reducing probe distortion, especially when two acoustic sources are used. Because time gating is eliminated, it is straightforward to measure the onset of a click-evoked OAE. The nonlinear coherence function is used to measure the nonlinear distortion signal-to-noise ratio (DNR) for the 2ChDPs and 2CEOAEs. The DNR is typically 20-30 dB. An intermittent noise rejection technique is implemented in real time that compares a currently acquired ear-canal response with a stored response. Dissimilar responses indicate the presence of intermittent noise, and the noise-contaminated responses are thereby discarded before ensemble averaging.
基于早期报告[基夫,《美国声学学会杂志》103,3489 - 3498(1998)]中提出的理论,报告了对听力正常成年人的双击诱发耳声发射(2CEOAEs)和双啁啾畸变产物(2ChDPs)的测量结果。在一个校准腔中测试了用于耳道测量的探头组件的非线性声学响应,以将双诱发(2E)技术与现有的耳声发射技术进行比较。与现有的点击诱发技术相比,2E技术可将峰值畸变降低约30 dB。点击响应的2E减法在消除线性响应方面部分类似于当前技术,但不同之处在于,通过消除耳蜗响应的时间选通改善了高频测量,并且通过减少探头畸变改善了低频测量,特别是当使用两个声源时。由于消除了时间选通,测量点击诱发耳声发射的起始变得很直接。非线性相干函数用于测量2ChDPs和2CEOAEs的非线性畸变信噪比(DNR)。DNR通常为20 - 30 dB。实时实施了一种间歇噪声抑制技术,该技术将当前采集的耳道响应与存储的响应进行比较。不同的响应表明存在间歇噪声,因此在总体平均之前丢弃受噪声污染的响应。