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A novel excitation-emission wavelength model to facilitate the diagnosis of urinary bladder diseases

机译:一种新的激发发射波长模型,便于促进尿膀胱疾病的诊断

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Diseases of urinary bladder are a common healthcare problem world over. Diagnostic precision and predicting response to treatment are major issues. This study aims to create an optical cross-sectionional model of a bladder, capable of visually representing the passage of photons through the tissue layers. The absorption, transmission and reflectance data, along with the derived transmission coefficients (of scattering and absorption) were obtained from literature analysis and were used in the creation of a "generic" cross-section optical property model simulating the passage of thousands of photons through the tissue at different wavelengths. Fluorescence spectra of diagnostically relevant biomarkers excited by the UV and blue wavelengths were modelled on the basis of the Monte-Carlo method. Further to this, fluorescence data gathered by the "LAKK-M" system from pig bladders was applied to the model for a specific representation of the photon passage through the tissues. The ultimate goal of this study is to employ this model to simulate the effects of different laser wavelength and energy inputs to bladder tissue and to determine the effectiveness of potential photonics based devices for the diagnosis of bladder pathologies. The model will aid in observing differences between healthy and pathological bladder tissues registered by photonics based devices.
机译:膀胱疾病是一个常见的医疗保健问题。诊断精度和预测治疗响应是主要问题。该研究旨在创造一个膀胱的光学横截面模型,能够通过组织层在视觉上表示光子的通过。从文献分析中获得吸收,传输和反射率数据以及衍生的透射系数(散射和吸收),并且用于模拟成千上万光子通过的“通用”横截面光学性质模型的创建不同波长的组织。通过UV和蓝色波长激发的诊断相关生物标志物的荧光光谱是根据蒙特卡罗方法进行建模的。此外,将由猪膀胱的“LAKK-M”系统收集的荧光数据应用于通过组织的光子通道的特定表示的模型。本研究的最终目标是采用该模型来模拟不同激光波长和能量输入对膀胱组织的影响,并确定基于潜在光子的设备的诊断膀胱病理学的有效性。该模型将有助于观察由基于光子的设备登记的健康和病理膀胱组织之间的差异。

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