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Improved 3-D cellular imaging by multispectral focus assessment

机译:通过多光谱聚焦评估改进的3-D细胞成像

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摘要

Biological specimens are three-dimensional structures. However, when capturing their images through a microscope, there is only one plane in the field of view that is in focus, and out-of-focus portions of the specimen affect image quality in the in-focus plane. It is well-established that the microscope's point spread function (PSF) can be used for blur quantitation, for the restoration of real images. However, this is an ill-posed problem, with no unique solution and with high computational complexity. In this work, instead of estimating and using the PSF, we studied focus quantitation in multi-spectral image sets. A gradient map we designed was used to evaluate the sharpness degree of each pixel, in order to identify blurred areas not to be considered. Experiments with realistic multi-spectral Pap smear images showed that measurement of their sharp gradients can provide depth information roughly comparable to human perception (through a microscope), while avoiding PSF estimation. Spectrum and morphometrics-based statistical analysis for abnormal cell detection can then be implemented in an image database where the axial structure has been refined.
机译:生物标本是三维结构。但是,当通过显微镜捕获其图像时,视野中只有一个平面处于聚焦状态,而样本的失焦部分会影响聚焦平面中的图像质量。众所周知,显微镜的点扩展功能(PSF)可用于模糊定量,以恢复真实图像。但是,这是一个不适定的问题,没有唯一的解决方案,并且具有很高的计算复杂性。在这项工作中,我们而不是估计和使用PSF,而是研究了多光谱图像集中的焦点定量。我们设计的梯度图用于评估每个像素的清晰度,以识别不需要考虑的模糊区域。使用真实的多光谱巴氏涂片图像进行的实验表明,测量其尖锐梯度可以提供与人类感知(通过显微镜)大致可比的深度信息,同时避免了PSF估计。然后可以在图像数据库中对基于光谱和形态计量学的异常细胞进行统计分析,其中轴向结构已经得到了改进。

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