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Design of an affordable fluorescence confocal laser scanning microscope for medical diagnostics

机译:用于医疗诊断的价格合理的荧光共聚焦激光扫描显微镜的设计

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Confocal fluorescence microscopes are a promising imaging tool in medical diagnostics due to their capability to selectively survey cross-sections of individual layers from 'thick' samples. Non-invasive depth resolved investigation of neoplastic skin disorders is one example among other applications. However these microscopes are at present uncommon in medical practice. This is due to their main application area in research. The instruments dealt with here are generally complex, stationary units and are accordingly cost-intensive. It is for this reason, that we have designed a robust and portable MEMS based confocal fluorescence microscope with a field of view of 0.6mm × 0.6mm. This has been made possible by the integration of a 2D micro scanner mirror developed at Fraunhofer IPMS. A variable acquisition depth of cross-sectional images of the fluorescence specimen is enabled by an integrated z-shifter. With the use of commercially available optics an optical demonstrator set up has been realized. To characterize and to demonstrate the ability of this system test measurements were performed. The resolution of the microscope is better than 228 lp/mm determined by 1951 USAF resolution test target. Images of various biological samples are presented and optical sectioning capabilities are shown. A comparison of the measured with the predicted system performance will be given.
机译:共聚焦荧光显微镜由于可以选择性地从“厚”样品中调查各个层的横截面,因此在医学诊断中是一种很有前途的成像工具。肿瘤皮肤疾病的非侵入式深度分辨研究是其他应用之一。然而,这些显微镜目前在医学实践中并不常见。这是由于它们在研究中的主要应用领域。这里处理的仪器通常是复杂的固定装置,因此成本很高。出于这个原因,我们设计了一种坚固且便携式的基于MEMS的共聚焦荧光显微镜,其视野为0.6mm×0.6mm。通过集成在Fraunhofer IPMS开发的2D微型扫描仪镜,可以实现这一点。集成的z移位器可实现荧光样品横截面图像的可变采集深度。通过使用可商购的光学器件,已经实现了光学演示器的设置。为了表征和证明该系统的能力,进行了测试测量。显微镜的分辨率优于1951 USAF分辨率测试目标确定的228 lp / mm。呈现了各种生物样品的图像,并显示了光学切片能力。将给出测量值与预测系统性能的比较。

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