首页> 外文期刊>Journal of Biochemical and Biophysical Methods >An efficient way of high-contrast, quasi-3D cellular imaging: Off-axis illumination.
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An efficient way of high-contrast, quasi-3D cellular imaging: Off-axis illumination.

机译:一种高对比度的准3D细胞成像的有效方法:离轴照明。

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摘要

An imaging system enabling a convenient visualisation of cells and other small objects is presented. It represents an adaptation of the optical microscope condenser, accommodating a built-in edge (relief) diaphragm brought close to the condenser iris diaphragm and enabling high-contrast pseudo-relief (quasi-3D) imaging. The device broadens the family of available apparatus based on the off-axis (or anaxial, asymmetric, inclined, oblique, schlieren-type, sideband) illumination. The simplicity of the design makes the condenser a user-friendly, dedicated device delivering high-contrast quasi-3D images of phase objects. Those are nearly invisible under the ordinary (axial) illumination. The phase contrast microscopy commonly used in visualisation of phase objects does not deliver the quasi-3D effect and introduces a disturbing 'halo' effect around the edges. The performance of the device presented here is demonstrated on living cells and tissue replicas. High-contrast quasi-3D images of cell-free preparations of biological origin (paper fibres and microcrystals) are shown as well.
机译:提出了一种成像系统,其使细胞和其他小物体的可视化变得容易。它代表了光学显微镜聚光镜的一种改型,可容纳一个靠近聚光镜虹膜光阑的内置边缘(浮雕)光阑,并能实现高对比度伪浮雕(准3D)成像。该设备基于离轴(或轴向,非对称,倾斜,倾斜,席利尔型,边带)照明拓宽了可用设备的范围。设计的简单性使聚光镜成为用户友好的专用设备,可提供相位对象的高对比度准3D图像。这些在普通(轴向)照明下几乎是看不见的。通常在相位对象的可视化中使用的相位对比显微镜无法提供准3D效果,并且会在边缘周围产生令人不安的“光晕”效果。在活细胞和组织复制品上展示了此处介绍的设备的性能。还显示了生物来源的无细胞制剂(纸纤维和微晶)的高对比度准3D图像。

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