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基于彩色共聚焦显微镜的三维图像传感

Three-dimensional image sensing by chromatic confocal microscopy.

作者信息

Tiziani H J, Uhde H M

出版信息

Appl Opt. 1994 Apr 1;33(10):1838-43. doi: 10.1364/AO.33.001838.

Abstract

In the image of a confocal microscope, only those parts of an object appear bright that are located in the focal plane of the objective. Because of an axial chromatic aberration deliberately introduced into the microscope objective, the location of the focal plane depends on the wavelength used. By using a white-light source and examining an object with a depth variation less than the axial range of the chromatic focus, we find that all parts of the object appear sharp and bright in the image, but according to its height they appear in different colors. A camera with black-and-white film sequentially combines, with three selected chromatic filters, intensity and tone of color of each object point. For each tone of color one can assign a height by using a calibration curve. This assignment could be made unequivocal by the selection of filters with adequate chromatic transmission.

摘要

在共聚焦显微镜的图像中,只有位于物镜焦平面的物体部分看起来是明亮的。由于故意引入到显微镜物镜中的轴向色差,焦平面的位置取决于所使用的波长。通过使用白光源并检查深度变化小于色差焦点轴向范围的物体,我们发现物体的所有部分在图像中看起来都清晰明亮,但根据其高度,它们呈现出不同的颜色。带有黑白胶片的相机通过三个选定的彩色滤光片依次组合每个物点的强度和色调。对于每种色调,可以通过使用校准曲线来确定一个高度。通过选择具有适当色差透射率的滤光片,可以使这种确定明确无误。

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