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Real-time restoration of white-light confocal microscope optical sections

机译:白光共聚焦显微镜光学部分的实时修复

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摘要

Confocal microscopes (CM) are routinely used for building 3-D images of microscopic structures. Nonideal imaging conditions in a white-light CM introduce additive noise and blur. The optical section images need to be restored prior to quantitative analysis. We present an adaptive noise filtering technique using Karhunen–Loéve expansion (KLE) by the method of snapshots and a ringing metric to quantify the ringing artifacts introduced in the images restored at various iterations of iterative Lucy–Richardson deconvolution algorithm. The KLE provides a set of basis functions that comprise the optimal linear basis for an ensemble of empirical observations. We show that most of the noise in the scene can be removed by reconstructing the images using the KLE basis vector with the largest eigenvalue. The prefiltering scheme presented is faster and does not require prior knowledge about image noise. Optical sections processed using the KLE prefilter can be restored using a simple inverse restoration algorithm; thus, the methodology is suitable for real-time image restoration applications. The KLE image prefilter outperforms the temporal-average prefilter in restoring CM optical sections. The ringing metric developed uses simple binary morphological operations to quantify the ringing artifacts and confirms with the visual observation of ringing artifacts in the restored images.
机译:共焦显微镜(CM)通常用于建立微观结构的3D图像。白光CM中的非理想成像条件会引入加性噪声和模糊。光学切片图像需要在定量分析之前恢复。我们介绍了一种通过快照和振铃指标使用Karhunen-Loéve扩展(KLE)的自适应噪声滤波技术,以量化在迭代Lucy-Richardson反卷积算法的各个迭代恢复的图像中引入的振铃伪影。 KLE提供了一组基函数,这些基函数包括针对一组经验观测值的最佳线性基。我们表明,通过使用具有最大特征值的KLE基向量重构图像,可以消除场景中的大多数噪声。提出的预过滤方案更快,并且不需要有关图像噪声的先验知识。使用KLE预滤波器处理的光学部分可以使用简单的逆恢复算法进行恢复。因此,该方法适用于实时图像恢复应用。在恢复CM光学部分时,KLE图像预滤波器的性能优于时间平均预滤波器。所开发的振铃指标使用简单的二进制形态学运算来量化振铃伪影,并通过视觉观察还原图像中的振铃伪影进行确认。

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