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Three-dimensional image processing method to compensate for depth-dependent light attenuation in images from a confocal microscope

机译:三维图像处理方法,以补偿来自共聚焦显微镜的图像中的深度依赖性光衰减

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When looking into the depth of a semitransparent specimen, using a confocal laser microscope working in the epifluorescence mode, it is often observed that the recorded images are darker the deeper the optical sections are located in the specimen. One reason for this is that light is absorbed in the specimen on its way to and from the section. A manual method to compensate for this darkening is to vary the electronic amplification at the recording. The appropriate amplification depends not only on the depth but also on the specimen, its shape and density, etc. Methods to replace the manual adjustments with computer methods, applied to stacks of uncompensated images recorded at different equidistant depths, have been suggested. A basic assumption is then that there are regions of the specimen that are homogeneous enough to serve as reference regions for the compensation. A key problem is to detect these regions. An interactive method to trace homogeneous regions in a stack of recorded images is described. It is also shown how image segmentation can be performed to extract such regions.
机译:当研究半透明标本的深度时,使用在离荧光模式下工作的共聚焦激光显微镜,经常观察到记录的图像较深,较深的光学部分位于样品中。其中一个原因是光线在往返部分的样本中被吸收。用于补偿这种变暗的手动方法是在录制时改变电子放大器。相应的放大不仅取决于深度,还取决于样品,其形状和密度等。已经提出了用计算机方法替换手动调整的方法,该方法应用于在不同等距深度记录在不同等距深度的未偿付图像上。然后,基本假设是存在的标本的区域足够均匀以作为补偿的参考区域。关键问题是检测这些区域。描述了追踪记录图像堆叠中的逐个均匀区域的交互方法。还示出了如何执行图像分段以提取这些区域。

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