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Measured and computed point spread functions for an indirect water immersion objective used in three-dimensional fluorescence microscopy

机译:用于三维荧光显微镜的间接水浸物镜的测量和计算点扩展函数

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Abstract: Living cells and other non-embedded biological specimens present a challenge in high- resolution microscopy because of their relatively low refractive index. It is well known that when oil-immersion objectives are used to look into these specimens, spherical aberration resulting from the index mismatch causes axial as well as transverse broadening of the 3D point spread function. Both effects reduce 3D resolution significantly, and cause the microscope to be axially shift-variant, thus complicating 3D deconvolution-based computational refinement. Axial shift variance should be much less a problem when water immersion objectives are used. With the aim of improving image data and our ability to refine it computationally, we have evaluated an apochromatic 40$MUL@/1.2 NA indirect water- immersion objective having an adjustable corrector for coverslip thickness. This work involves comparison of measured and computed 3D point spread functions, and comparison to the data acquired with an oil-immersion lens system. We show that focus-dependent spherical aberration is greatly reduced in the water-immersion system.!9
机译:摘要:活细胞和其他非嵌入式生物标本由于其相对较低的折射率而在高分辨率显微镜下面临挑战。众所周知,当使用油浸物镜观察这些样本时,由折射率不匹配引起的球差会导致3D点扩散函数的轴向和横向展宽。这两种效果都会显着降低3D分辨率,并使显微镜轴向变化,从而使基于3D反卷积的计算优化变得复杂。当使用水浸物镜时,轴向位移方差应该不是问题。为了改善图像数据并通过计算改进它的能力,我们对复消色差40$MUL@/1.2 NA间接水浸物镜进行了评估,该物镜具有可调节盖玻片厚度的校正器。这项工作涉及比较测量和计算的3D点扩散函数,以及与使用油浸透镜系统获取的数据进行比较。我们证明了在水浸系统中与焦点有关的球差大大降低了!9

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