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光学相干断层扫描评估中耳结构与功能

Assessment of middle ear structure and function with optical coherence tomography.

作者信息

Meenderink Sebastiaan W F, Warn Michael, Anchondo Laura M, Liu Yuan, Jung Timothy T K, Dong Wei

机构信息

VA Loma Linda Healthcare System, Loma Linda, CA, USA.

University of California Riverside School of Medicine, Riverside, CA, USA.

出版信息

Acta Otolaryngol. 2023 Jul-Aug;143(7):558-562. doi: 10.1080/00016489.2023.2224846. Epub 2023 Jun 27.

Abstract

BACKGROUND

Current clinical tests for middle ear (ME) injuries and related conductive hearing loss (CHL) are lengthy and costly, lacking the ability to noninvasively evaluate both structure and function in real time. Optical coherence tomography (OCT) provides both, but its application to the audiological clinic is currently limited.

OBJECTIVE

Adapt and use a commercial Spectral-Domain OCT (SD-OCT) to evaluate anatomy and sound-evoked vibrations of the tympanic membrane (TM) and ossicles in the human ME.

MATERIALS AND METHODS

SD-OCT was used to capture high-resolution three-dimensional (3D) ME images and measure sound-induced vibrations of the TM and ossicles in fresh human temporal bones.

RESULTS

The 3D images provided thickness maps of the TM. The system was, with some software adaptations, also capable of phase-sensitive vibrometry. Measurements revealed several modes of TM vibration that became more complex with frequency. Vibrations were also measured from the incus, through the TM. This quantified ME sound transmission, which is the essential measure to assess CHL.

CONCLUSION AND SIGNIFICANCE

We adapted a commercial SD-OCT to visualize the anatomy and function of the human ME. OCT has the potential to revolutionize point-of-care assessment of ME disruptions that lead to CHL which are otherwise indistinguishable via otoscopy.

摘要

背景

目前用于评估中耳(ME)损伤及相关传导性听力损失(CHL)的临床测试耗时且成本高昂,缺乏实时无创评估结构和功能的能力。光学相干断层扫描(OCT)能够同时提供这两方面的信息,但其在听力诊所的应用目前有限。

目的

采用并应用商用光谱域光学相干断层扫描(SD - OCT)评估人中耳内鼓膜(TM)和听小骨的解剖结构及声诱发振动。

材料与方法

使用SD - OCT获取新鲜人颞骨中中耳的高分辨率三维(3D)图像,并测量鼓膜和听小骨的声诱发振动。

结果

3D图像提供了鼓膜的厚度图。通过一些软件调整,该系统还能够进行相敏振动测量。测量结果揭示了鼓膜振动的几种模式,这些模式随频率变得更加复杂。还通过鼓膜测量了砧骨的振动。这量化了中耳的声音传导,而声音传导是评估传导性听力损失的关键指标。

结论与意义

我们采用商用SD - OCT来可视化人中耳的解剖结构和功能。OCT有潜力彻底改变对导致传导性听力损失的中耳病变的即时护理评估,而这些病变通过耳镜检查难以区分。

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