首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >A novel extended depth of field process based on nonsubsampled shearlet transform by estimating optimal range in microscopic systems
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A novel extended depth of field process based on nonsubsampled shearlet transform by estimating optimal range in microscopic systems

机译:一种新的基于非管道剪切变换通过估计微观系统的最优范围的新频率

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摘要

Increasing the depth of field (DOF) and maintain a high resolution have been the classical challenges for acquiring a single 2D image sample investigated with the microscope to enhance a complete in-focus. The extended depth-of-field microscope is implemented to overcome these problems. Various studies have proposed the wavefront coding and image fusion as the remedies for the blurred content of the in-focus image. In this study, a classical extended depth of field (EDOF) process based on the image fusion is implemented by moving a microscope platform along the fixed range, a distance between initial and final positions, to determine a random Z axis. During the movement of the platform in this range, a certain number of multi-focus images are acquired at infinite steps (Delta d). However, it is seen that the magnification objective affects the range and number of the multi-focus images. Instead of determining the range randomly, the optimal range is selected to extract a significant information from the multi-focus images. In this study, a novel EDOF process based on the multi-scale representations is improved, estimating the optimal range in the microscopic systems. Our proposed EDOF process is performed in two main stages: pre-process and image fusion. In the pre-processing stage, various ranges with different initial and final positions are extracted to scan the whole structure of the sample on the Z axis. In the second stage, a novel image fusion approach based on the Nonsubsampled Shearlet transform (NSST) is implemented into all ranges to obtain the optimal fused image. To evaluate the performances of the proposed image fusion approach and to show the effects of other color spaces on the image fusion approaches based on the multi-scale representations, fused images created with the different fusion approaches including Maximum Absolute Selection, Variance, Tenengrad, Discrete Complex Valued Wavelet Transform, Discrete Curvelet Transform, and other color spaces (HSV, YIQ and YCbCr) are tested in terms of their transferred focus information, outliers and blurring. From the obtained experimental results, the fused image created with our proposed approach contains more detailed information and fewer outliers and artifacts. Furthermore, the YCbCr and HSV color models provide the highest performances that capture the critical information in terms of focusing.
机译:增加场(DOF)的深度并保持高的分辨率已经用于获取与所述显微镜调查了单个2D图像样本来提高聚焦一个完整的经典挑战。扩展深度的场显微镜被实现以克服这些问题。各种研究提出了波前编码和图像融合作为补救措施的聚焦图像的模糊内容。在这项研究中,基于所述图像融合字段(EDOF)处理的经典扩展深度通过沿着固定范围内,初始和最终位置之间的距离移动的显微镜平台,以确定一个随机Z轴实现。在该范围内的平台的运动,多聚焦图像的一定数量的在无限步骤(德尔塔d)获得的。然而,可以看出,放大倍数的物镜影响范围和多焦点的图像的数目。代替确定随机的范围内的,最佳的范围内选择,以提取从多焦点的图像的显著信息。在这项研究中,基于该多尺度表示的新颖EDOF过程进行了改进,估计在微观系统的最佳范围。前处理和图像融合:我们提出的EDOF过程在两个主要阶段进行。在预加工阶段,具有不同的初始和最终位置的不同范围被提取到扫描上Z轴的样品的整个结构。在第二阶段,基于非子采样剪切波一个新的图像融合方法变换(NSST)被实现成的所有范围,以获得最佳的融合图像。为评价所提出的图像融合方法的性能,并显示在图像融合其他颜色空间的效果基础上,多尺度表示,与不同的融合产生融合图像方法,包括最大绝对选择,方差,Tenengrad,分立器件方案复值小波变换,曲波变换,和其它的色彩空间(HSV,YIQ和YCbCr)中的其转移焦点信息,异常值和模糊方面进行测试。从得到的实验结果,我们提出的方法产生的融合图像包含更详细的信息和更少的异常值和文物。此外,YCbCr和HSV颜色模型提供最高的性能,捕捉关键信息的重点方面。

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