Shaffer Lauren A, Withnell Robert H, Dhar Sumit, Lilly David J, Goodman Shawn S, Harmon Kelley M
Department of Speech and Hearing Sciences, Indiana University, Bloomington, IN, USA.
Ear Hear. 2003 Oct;24(5):367-79. doi: 10.1097/01.AUD.0000090439.16438.9F.
Otoacoustic emissions (OAEs) have become a commonly used clinical tool for assessing cochlear health status, in particular, the integrity of the cochlear amplifier or motor component of cochlear function. Predicting hearing thresholds from OAEs, however, remains a research challenge. Models and experimental data suggest that there are two mechanisms involved in the generation of OAEs. For distortion product, transient, and high-level stimulus frequency emissions, the interaction of multiple sources of emissions in the cochlea leads to amplitude variation in the composite ear canal signal. Multiple sources of emissions complicate simple correlations between audiometric test frequencies and otoacoustic emission frequencies. Current research offers new methods for estimating the individual components of OAE generation. Input-output functions and DP-grams of the nonlinear component of the 2f2-f2 DPOAE may ultimately show better correlations with hearing thresholds. This paper reviews models of OAE generation and methods for estimating the contribution of source components to the composite emission that is recorded in the ear canal. The clinical implications of multiple source components are discussed.
耳声发射(OAEs)已成为评估耳蜗健康状况,特别是耳蜗放大器或耳蜗功能运动成分完整性的常用临床工具。然而,从耳声发射预测听力阈值仍然是一项研究挑战。模型和实验数据表明,耳声发射的产生涉及两种机制。对于畸变产物、瞬态和高强度刺激频率发射,耳蜗中多个发射源的相互作用导致外耳道复合信号的幅度变化。多个发射源使听力测试频率与耳声发射频率之间的简单相关性变得复杂。当前的研究提供了估计耳声发射产生的各个成分的新方法。2f2-f2畸变产物耳声发射(DPOAE)非线性成分的输入-输出函数和DP图最终可能与听力阈值显示出更好的相关性。本文综述了耳声发射产生的模型以及估计源成分对记录在外耳道中的复合发射贡献的方法。还讨论了多个源成分的临床意义。