AlMakadma Hammam, Kei Joseph, Yeager David, Feeney M Patrick
Department of Otolaryngology and Communicative Disorders, School of Medicine, University of Louisville, Louisville, Kentucky.
Hearing Research Unit for Children, School of Health and Rehabilitative Sciences, University of Queensland, Queensland, Australia.
Semin Hear. 2023 Mar 1;44(1):17-28. doi: 10.1055/s-0043-1763293. eCollection 2023 Feb.
Assessment of middle ear impedance using noninvasive electroacoustic measurements has undergone successive developments since its first clinical application in the 1940s, and gained widespread adoption since the 1970s in the form of 226-Hz tympanometry, and applications in multifrequency tympanometry. More recently, wideband acoustic immittance (WAI) is allowing unprecedented assessments of the middle ear acoustic mechanics thanks to the ability to record responses over a wide range of frequencies. The purpose of this article is to present fundamental concepts for the assessment and interpretation of wideband measures, including a review of acoustic impedance and its relation to the mass, stiffness, and resistance components of the middle ear. Additionally, an understanding of the middle ear transfer function reveals the relationship between impedance and middle-ear gain as a function of frequency. Wideband power absorbance, a WAI measure, quantifies the efficiency of sound conduction through the middle ear over a wide range of frequencies, and can serve as an analogous clinical measure to the transfer function. The interpretation of absorbance measures in ears with or without a conductive condition using absorbance measured at ambient pressure and pressurized conditions (wideband tympanometry) is described using clinical case examples. This article serves as an introduction to the fundamental principles of WAI measurements.
自20世纪40年代首次应用于临床以来,使用非侵入性电声测量评估中耳阻抗技术不断发展,自20世纪70年代以来,以226赫兹鼓室导抗测量法的形式得到广泛应用,并应用于多频鼓室导抗测量。最近,宽带声导抗(WAI)技术能够在很宽的频率范围内记录反应,从而对中耳声学力学进行前所未有的评估。本文旨在介绍宽带测量评估和解读的基本概念,包括回顾声阻抗及其与中耳质量、劲度和阻力成分的关系。此外,对中耳传递函数的理解揭示了阻抗与中耳增益之间随频率变化的关系。宽带功率吸收率是一种WAI测量指标,它量化了声音在很宽频率范围内通过中耳传导的效率,并且可以作为与传递函数类似的临床测量指标。本文通过临床病例示例,描述了在常压和加压条件下(宽带鼓室导抗测量)测量吸收率,以解读有或无传导性病变耳朵的吸收率测量结果。本文旨在介绍WAI测量的基本原理。