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Mueller polarimetric imaging through a rigid endoscope

机译:穆勒通过刚性内窥镜进行偏振成像

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Mueller polarimetry has been shown to effectively detect multiple pathologies on a striking variety of biological tissues. The ongoing challenge is to implement Mueller polarimetry into the clinical practice in-vivo. This technique is suitable for this purpose since it provides wide field images (up to 20 cm~2) well adapted to the exploration of entire organs while revealing information on their microstructure. In addition, it is non-invasive, label-free and non-destructive. One instrument of great interest for biomedical diagnostics in vivo is the conventional rigid endoscope, also called laparoscope. This instrument is used to explore the inner cavities of the human body and is a standard in many minimally invasive surgery applications. However, it is implemented by using conventional white light intensity imaging which does not provide enough contrast to identify, for example, tumor margins during surgical resection. Mueller polarimetric imaging could provide useful contrast which can considerably improve the definition of these margins. However, to adapt a conventional laparoscope to Mueller polarimetric imaging is an instrumental challenge due to its complex polarimetric response. In this work, we provide a detailed characterization of the polarimetric properties of a conventional laparoscope. It is shown that a conventional laparoscope is characterized at the same time by birefringence and strong spectral depolarization that can be reduced by reducing the spectral bandwidth. The origin of these polarimetric effects have been investigated and modeled. Our work provides useful knowledge about implementing rigid endoscopes in polarimetric applications.
机译:已经证明了Mueller偏振物,以有效地检测多种病理,以醒目的各种生物组织。正在进行的挑战是将穆勒偏振仪实施到体内临床实践中。该技术适用于此目的,因为它提供了宽的场图像(高达20cm〜2),适应整个器官的探索,同时揭示其微观结构的信息。此外,它是非侵入性的,无标签和无损性的。体内生物医学诊断的一种令人兴趣的一种仪器是传统的刚性内窥镜,也称为腹腔镜。该仪器用于探索人体内腔,是许多微创手术应用中的标准。然而,通过使用传统的白光强度成像来实现,该成像不提供足够的对比度以在手术切除期间识别例如肿瘤余量。 Mueller Polariemetric成像可以提供有用的对比,这可以大大改善这些边缘的定义。然而,为了使常规探伤镜适于穆勒镜,Polariemetric成像是由于其复杂的极性响应引起的乐器挑战。在这项工作中,我们提供了常规腹腔镜的偏振特性的详细表征。结果表明,传统的腹腔镜通过双折射和强光谱去极化的同时表征,其可以通过减小光谱带宽来降低。已经研究了这些偏振效应的起源和建模。我们的工作提供了有关在Polariemetric应用中实施刚性内窥镜的有用知识。

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