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在需要符合21 CFR Part 11的形态计量学研究中的图像压缩:对于TIFF格式文件和各种JPEG压缩强度而言,程序是关键。

Image compression in morphometry studies requiring 21 CFR Part 11 compliance: procedure is key with TIFFs and various JPEG compression strengths.

作者信息

Tengowski Mark W

机构信息

Pfizer Global Research & Development, Safety Sciences Groton, Groton, Connecticut 06340, USA.

出版信息

Toxicol Pathol. 2004 Mar-Apr;32(2):258-63. doi: 10.1080/01926230490274399.

Abstract

This study aims to compare the integrity and reproducibility of measurements created from uncompressed and compressed digital images in order to implement compliance with 21 CFR Part 11 for image analysis studies executed using 21 CFR Part 58 compliant capture systems. Images of a 400-mesh electron microscope grid and H&E stained rat liver tissue were captured on an upright microscope with digital camera using commercially available analysis software. Digital images were stored as either uncompressed TIFFs or in one of five different levels of JPEG compression. The grid images were analyzed with automatic detection of bright objects while the liver images were segmented using color cube-based morphometry techniques, respectively, using commercially-available image analysis software. When comparing the feature-extracted measurements from the TIFF uncompressed to the JPEG compressed images, the data suggest that JPEG compression does not alter the accuracy or reliability to reproduce individual data point measurements in all but the highest compression levels. There is, however, discordance if the initial measure was obtained with a TIFF format and subsequently saved as one of the JPEG levels, suggesting that the use of compression must precede feature extraction. It is a common practice in software packages to work with TIFF uncompressed images. However, this study suggests that the use of JPEG compression as part of the analysis work flow was an acceptable practice for these images and features. Investigators applying image file compression to other organ images will need to validate the utility of image compression in their work flow. A procedure to digitally acquire and JPEG compress images prior to image analysis has the potential to reduce file archiving demands without compromising reproducibility of data.

摘要

本研究旨在比较由未压缩和压缩数字图像生成的测量结果的完整性和可重复性,以便在使用符合21 CFR Part 58的捕获系统执行的图像分析研究中符合21 CFR Part 11的要求。使用市售分析软件,在配备数码相机的直立显微镜上捕获400目电子显微镜网格和苏木精-伊红(H&E)染色大鼠肝脏组织的图像。数字图像存储为未压缩的TIFF格式或五种不同JPEG压缩级别之一。分别使用市售图像分析软件,通过自动检测明亮物体分析网格图像,使用基于颜色立方体的形态计量技术分割肝脏图像。当比较从未压缩的TIFF图像和JPEG压缩图像中提取特征的测量结果时,数据表明,除了最高压缩级别外,JPEG压缩不会改变再现单个数据点测量结果的准确性或可靠性。然而,如果最初的测量是以TIFF格式获得并随后保存为JPEG级别之一,则会出现不一致情况,这表明压缩的使用必须在特征提取之前进行。在软件包中使用未压缩的TIFF图像是一种常见做法。然而,本研究表明,在分析工作流程中使用JPEG压缩对这些图像和特征来说是一种可接受的做法。将图像文件压缩应用于其他器官图像的研究人员需要在其工作流程中验证图像压缩的效用。在图像分析之前进行数字采集和JPEG压缩图像的程序有可能在不影响数据可重复性的情况下减少文件存档需求。

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