首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >A Mosaicking Approach for In Vivo Thickness Mapping of the Human Tympanic Membrane Using Low Coherence Interferometry
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A Mosaicking Approach for In Vivo Thickness Mapping of the Human Tympanic Membrane Using Low Coherence Interferometry

机译:低相干干涉法测定人鼓膜的体内膜厚的镶嵌方法

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摘要

The thickness of the human tympanic membrane (TM) is known to vary considerably across different regions of the TM. Quantitative determination of the thickness distribution and mapping of the TM is of significant importance in hearing research, particularly in mathematical modeling of middle-ear dynamics. Change in TM thickness is also associated with several middle-ear pathologies. Determination of the TM thickness distribution could therefore also enable a more comprehensive diagnosis of various otologic diseases. Despite its importance, very limited data on human TM thickness distribution, obtained almost exclusively from ex vivo samples, are available in the literature. In this study, the thickness distribution for the in vivo human TM is reported for the first time. A hand-held imaging system, which combines a low coherence interferometry (LCI) technique for single-point thickness measurement, with video-otoscopy for recording the image of the TM, was used to collect the data used in this study. Data were acquired by pointing the imaging probe over different regions of the TM, while simultaneously recording the LCI and concomitant TM surface video image data from an average of 500 locations on the TM. TM thickness distribution maps were obtained by mapping the LCI imaging sites onto an anatomically accurate wide-field image of the TM, which was generated by mosaicking the sequence of multiple small field-of-view video-otoscopy images. Descriptive statistics of the thickness measurements obtained from the different regions of the TM are presented, and the general thickness distribution trends are discussed.
机译:众所周知,人类鼓膜(TM)的厚度在TM的不同区域之间存在很大差异。 TM的厚度分布和映射的定量确定在听力研究中,特别是在中耳动力学的数学建模中,具有重要意义。 TM厚度的变化也与几种中耳病理有关。因此,TM厚度分布的确定也可以使各种耳科疾病的诊断更加全面。尽管具有重要意义,但文献中仅提供了非常有限的关于人类TM厚度分布的数据,几乎只能从离体样品中获得。在这项研究中,首次报道了体内人TM的厚度分布。手持成像系统结合了用于单点厚度测量的低相干干涉测量(LCI)技术和用于记录TM图像的视频耳镜,用于收集本研究中使用的数据。通过将成像探头指向TM的不同区域,同时从TM上平均500个位置同时记录LCI和伴随的TM表面视频图像数据,获取数据。通过将LCI成像部位映射到TM的解剖学准确的宽视场图像上来获得TM厚度分布图,该图像是通过拼接多个小视野视频耳镜图像的序列而生成的。介绍了从TM的不同区域获得的厚度测量值的描述性统计数据,并讨论了总体厚度分布趋势。

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