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Imaging model of optical sectioning of thick specimen

机译:厚试样光学切片的成像模型

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Based on the cartesian coordinate system , a coaxial couple cartesian coordinate system is designed whose z-axis isrncoaxial but z-axis coordinate is independent, and its xy plane is different but coordinate is the same. The object space and the image space are set in the two sub-cartesian coordinates respectively. In the coaxial couple cartesian coordinate system, according to the principle of optical imaging, a form of the optical microscope's imaging model of optical sectioning biological thick specimen is derived. The model form show that if a biological thick specimen is expressed as a pile of slices with tiny interval, and a slice among the slices is put in microscope's focal plane, then the thick specimen's image in image plane is the superposition of the focal plane image and all of the defocus images. In the model form, thick specimen's image is simply sorted into focal plane image and defocus image to make it easy to look insight, so the model clearly reflects the imaging relationship between the slice of thick specimen, and it is conducive to the analysis of the microscope's imaging characteristics for thick specimen. And the stack of optical section according to the model is equivalent to the mathematical model of three-dimensional imaging of thick specimen.
机译:基于笛卡尔坐标系,设计了z轴为同轴但z轴坐标独立,xy平面不同但坐标相同的同轴耦合笛卡尔坐标系。对象空间和图像空间分别设置在两个子笛卡尔坐标中。在同轴耦合直角坐标系下,根据光学成像原理,推导了生物切片标本光学切片光学显微镜成像模型的形式。模型形式表明,如果将一个生物厚的标本表示为一堆间隔很小的切片,并将切片中的一个切片放在显微镜的焦平面中,则该厚标本在像平面上的图像就是焦平面图像的叠加和所有散焦图像。在模型形式中,将厚样本的图像简单地分为焦平面图像和散焦图像,以便于查看,因此模型清晰地反映了厚样本切片之间的成像关系,有利于分析显微镜对厚样品的成像特性。并且根据模型的光学截面的堆叠相当于厚样品的三维成像的数学模型。

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