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Application of 3D tracking, LED illumination and multi-wavelength techniques for quantitative cell analysis in digital holographic microscopy

机译:3D跟踪,LED照明和多波长技术在数字全息显微镜中定量细胞分析中的应用

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Digital Holographic Microscopy (DHM) allows quantitative multi-focus phase contrast imaging that has been found suitable for technical inspection and quantitative live cell imaging. The combination of DHM with fast and robust autofocus algorithms and a calibrated imaging system enables the determination of axial sample displacements. The evaluation of quantitative DHM phase contrast images permits also an effective detection of lateral object movements. Thus, data for 3D tracking is provided. Partially coherent light sources and multi-wavelength techniques open up prospects for an increased phase resolution in DHM by reduction of parasitic interference effects due to multiple reflections within the measurement setup. For this purpose, the utilization of light emitting diodes (LEDs) as well as the generation of short coherence properties by tunable laser light has been investigated for application in DHM. Results from investigations on sedimenting erythrocytes in suspension demonstrate that DHM enables (automated) quantitative dynamic 3D tracking of multiple cells without mechanical focus adjustment. Furthermore, it is shown that LEDs and multi-wavelength techniques enhance the axial resolution in inspection of reflective surfaces and quantitative digital holographic cell imaging.
机译:数字全息显微镜(DHM)可以进行定量的多焦点相衬成像,该成像已被发现适用于技术检查和定量活细胞成像。 DHM与快速,强大的自动聚焦算法以及经过校准的成像系统相结合,可以确定轴向样品的位移。定量DHM相衬图像的评估还可以有效检测物体的横向运动。因此,提供了用于3D跟踪的数据。部分相干的光源和多波长技术为减少DHM中的相位分​​辨率开辟了前景,该方法是通过减少测量设置中的多次反射引起的寄生干扰效应来实现的。为了这个目的,已经研究了发光二极管(LED)的利用以及通过可调谐激光产生的短相干特性以用于DHM。对悬浮液中沉降的红细胞的研究结果表明,DHM能够(自动)对多个细胞进行定量动态3D跟踪,而无需进行机械焦点调节。此外,还表明,LED和多波长技术可提高反射面检查和定量数字全息细胞成像中的轴向分辨率。

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