Department of Otolaryngology/Head and Neck Surgery, Columbia University, 630 West 168th Street P&S 11-452, New York, NY 10032, USA.
Hear Res. 2012 Mar;285(1-2):20-8. doi: 10.1016/j.heares.2012.02.001.
It has been proposed that OAEs be classified not on the basis of the stimuli used to evoke them, but on the mechanisms that produce them (Shera and Guinan, 1999). One branch of this taxonomy focuses on a coherent reflection model and explicitly describes interrelationships between spontaneous emissions (SOAEs) and stimulus-frequency emissions (SFOAEs). The present study empirically examines SOAEs and SFOAEs from individual ears within the context of model predictions, using a low stimulus level (20 dB SPL) to evoke SFOAEs. Emissions were recorded from ears of normal-hearing young adults, both with and without prominent SOAE activity. When spontaneous activity was observed, SFOAEs demonstrated a localized increase about the SOAE peaks. The converse was not necessarily true though, i.e., robust SFOAEs could be measured where no SOAE peaks were observed. There was no significant difference in SFOAE phase-gradient delays between those with and without observable SOAE activity. However, delays were larger for a 20 dB SPL stimulus level than those previously reported for 40 dB SPL. The total amount of SFOAE phase accumulation occurring between adjacent SOAE peaks tended to cluster about an integral number of cycles. Overall, the present data appear congruous with predictions stemming from the coherent reflection model and support the notion that such comparisons ideally are made with emissions evoked using relatively lower stimulus levels.
已经有人提出,不应根据产生耳声发射(OAE)的刺激来对其进行分类,而应根据产生它们的机制来进行分类(Shera 和 Guinan,1999)。这种分类法的一个分支专注于相干反射模型,并明确描述了自发发射(SOAE)和刺激频率发射(SFOAE)之间的相互关系。本研究在模型预测的背景下,使用低刺激水平(20 dB SPL)来诱发 SFOAE,从个体耳朵中对 SOAE 和 SFOAE 进行实证检验,使用正常听力的年轻成年人的耳朵进行实验,同时记录有和没有突出 SOAE 活动的耳朵的发射情况。当观察到自发活动时,SFOAE 在 SOAE 峰值附近表现出局部增加。但并非总是如此,即,在没有观察到 SOAE 峰值的情况下,也可以测量到强大的 SFOAE。有和没有可观察到的 SOAE 活动的个体之间,SFOAE 的相位梯度延迟没有显著差异。然而,与之前报告的 40 dB SPL 相比,20 dB SPL 刺激水平下的延迟更大。在相邻 SOAE 峰值之间发生的 SFOAE 相位累积总量趋于集中在整数个周期左右。总的来说,目前的数据似乎与相干反射模型得出的预测相符,并支持这样的观点,即这种比较理想情况下是使用相对较低的刺激水平诱发的发射来进行的。