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Video compression to support the expansion of whole-slide imaging into cytology

机译:视频压缩支持整体映像扩展到细胞学中

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摘要

Digital screening and diagnosis from cytology slides can be aided by capturing multiple focal planes. However, using conventional methods, the large file sizes of high-resolution whole-slide images increase linearly with the number of focal planes acquired, leading to significant data storage and bandwidth requirements for the efficient storage and transfer of cytology virtual slides. We investigated whether a sequence of focal planes contained sufficient redundancy to efficiently compress virtual slides across focal planes by applying a commonly available video compression standard, high-efficiency video coding (HEVC). By developing an adaptive algorithm that applied compression to achieve a target image quality, we found that the compression ratio of HEVC exceeded that obtained using JPEG and JPEG2000 compression while maintaining a comparable level of image quality. These results suggest an alternative method for the efficient storage and transfer of whole-slide images that contain multiple focal planes, expanding the utility of this rapidly evolving imaging technology into cytology.
机译:通过捕获多个焦平面,可以帮助来自细胞学载玻片的数字筛选和诊断。然而,使用传统方法,高分辨率全幻灯片图像的大文件大小随着所获取的焦平面的数量而导致,导致有效存储和细胞学虚拟幻灯片的高效存储和带宽要求。我们调查了一系列焦点平面是否包含足够的冗余,以通过应用常用的视频压缩标准,高效视频编码(HEVC)在焦平面上有效地压缩虚拟幻灯片。通过开发应用压缩以实现目标图像质量的自适应算法,我们发现HEVC的压缩比超过了使用JPEG和JPEG2000压缩获得的,同时保持相当的图像质量水平。这些结果表明了一种有效存储和传输包含多个焦平面的全幻灯片的替代方法,将这种快速发展的成像技术的效用扩展到细胞学中。

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