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Development of angle-resolved low coherence interferometry for clinical detection of dysplasia

机译:角度分辨低相干干涉术的发展用于临床发育异常的检测

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摘要

This review covers the development of angle-resolved low coherence interferometry (a/LCI) from initial development through clinical application. In the first applications, the approach used a time-domain interferometry scheme and was validated using animal models of carcinogenesis to assess the feasibility of detecting dysplasia in situ. Further development of the approach led to Fourier-domain interferometry schemes with higher throughput and endoscope-compatible probes to enable clinical application. These later implementations have been applied to clinical studies of dysplasia in Barrett's esophagus tissues, a metaplastic tissue type that is associated with an increased risk of esophageal adenocarcinoma. As an alternative to systematic biopsy, the a/LCI approach offers high sensitivity and specificity for detecting dysplasia in these tissues while avoiding the need for tissue removal or exogenous contrast agents. Here, the various implementations of a/LCI are discussed and the results of the preliminary animal experiments and ex vivo human tissue studies are reviewed. A review of a recent in vivo clinical study is also presented.
机译:这篇综述涵盖了从最初的发展到临床应用的角分辨低相干干涉术(a / LCI)的发展。在最初的应用中,该方法使用了时域干涉测量方案,并已使用致癌动物模型进行了评估,以评估原位检测异常增生的可行性。该方法的进一步发展导致了具有更高通量的傅立叶域干涉测量方案和可与内窥镜兼容的探头,从而可以实现临床应用。这些后来的实施方式已应用于Barrett食管组织增生的临床研究,该组织是与食管腺癌风险增加相关的一种化生组织类型。作为系统活检的替代方法,a / LCI方法可为检测这些组织中的不典型增生提供高灵敏度和特异性,同时又无需去除组织或使用外源性造影剂。在这里,讨论了a / LCI的各种实现方式,并回顾了初步动物实验和离体人体组织研究的结果。还介绍了最近的一项体内临床研究。

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