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Design and implementation of a dual-wavelength intrinsic fluorescence camera system

机译:双波长本征荧光相机系统的设计与实现

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Intrinsic UV fluorescence imaging is a technique that permits the observation of spatial differences in emitted fluorescence. It relies on the fluorescence produced by the innate fluorophores in the sample, and thus can be used for marker-less in-vivo assessment of tissue. It has been studied as a tool for the study of the skin, specifically for the classification of lesions, the delimitation of lesion borders and the study of wound healing, among others. In its most basic setup, a sample is excited with a narrow-band UV light source and the resulting fluorescence is imaged with a UV sensitive camera filtered to the emission wavelength of interest. By carefully selecting the excitation/emission pair, we can observe changes in fluorescence associated with physiological processes. One of the main drawbacks of this simple setup is the inability to observe more than a single excitation/emission pair at the same time, as some phenomena are better studied when two or more different pairs are studied simultaneously. In this work, we describe the design and the hardware and software implementation of a dual wavelength portable UV fluorescence imaging system. Its main components are an UV camera, a dual wavelength UV LED illuminator (295 and 345 nm) and two different emission filters (345 and 390 nm) that can be swapped by a mechanical filter wheel. The system is operated using a laptop computer and custom software that performs basic pre-processing to improve the image. The system was designed to allow us to image fluorescent peaks of tryptophan and collagen cross links in order to study wound healing progression.
机译:固有紫外荧光成像是一种允许观察发射的荧光的空间差异的技术。它依赖于样品中固有荧光团产生的荧光,因此可用于组织的无标记物体内评估。已经将其作为研究皮肤的工具,特别是用于损伤分类,损伤边界定界和伤口愈合研究的工具。在其最基本的设置中,使用窄带紫外光源激发样品,并使用经过过滤至目标发射波长的紫外敏感相机对所得荧光成像。通过仔细选择激发/发射对,我们可以观察与生理过程相关的荧光变化。这种简单设置的主要缺点之一是无法同时观察多个激发/发射对,因为当同时研究两个或更多不同的对时,会更好地研究某些现象。在这项工作中,我们描述了双波长便携式UV荧光成像系统的设计以及硬件和软件实现。它的主要组件是紫外线照相机,双波长紫外线LED照明器(295和345 nm)和两个不同的发射滤光片(345和390 nm),可以通过机械滤光轮进行更换。该系统使用便携式计算机和执行基本预处理以改善图像的自定义软件进行操作。该系统旨在使我们能够成像色氨酸和胶原蛋白交联的荧光峰,从而研究伤口的愈合过程。

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