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首页> 外文期刊>Journal of Structural Biology >Video on the Internet: An introduction to the digital encoding, compression, and transmission of moving image data.
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Video on the Internet: An introduction to the digital encoding, compression, and transmission of moving image data.

机译:互联网上的视频:介绍运动图像数据的数字编码,压缩和传输。

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In this paper, we seek to provide an introduction to the fast-moving field of digital video on the Internet, from the viewpoint of the biological microscopist who might wish to store or access videos, for instance in image databases such as the BioImage Database (http://www.bioimage.org). We describe and evaluate the principal methods used for encoding and compressing moving image data for digital storage and transmission over the Internet, which involve compromises between compression efficiency and retention of image fidelity, and describe the existing alternate software technologies for downloading or streaming compressed digitized videos using a Web browser. We report the results of experiments on video microscopy recordings and three-dimensional confocal animations of biological specimens to evaluate the compression efficiencies of the principal video compression-decompression algorithms (codecs) and to document the artefacts associated with each of them. Because MPEG-1 gives very high compression while yet retaining reasonable image quality, these studies lead us to recommend that video databases should store both a high-resolution original version of each video, ideally either uncompressed or losslessly compressed, and a separate edited and highly compressed MPEG-1 preview version that can be rapidly downloaded for interactive viewing by the database user. Copyright 1999 Academic Press.
机译:在本文中,我们试图从生物显微学家的角度,介绍可能希望存储或访问视频的生物显微学家的观点,例如在诸如BioImage数据库之类的图像数据库中,介绍Internet上数字视频的快速发展领域。 http://www.bioimage.org)。我们描述并评估了用于编码和压缩运动图像数据以进行Internet上的数字存储和传输的主要方法,这些方法涉及压缩效率和图像保真度的保持之间的折衷,并描述了用于下载或流式传输压缩数字化视频的现有替代软件技术使用网络浏览器。我们报告了视频显微镜记录和生物标本的三维共聚焦动画的实验结果,以评估主要视频压缩-解压缩算法(编解码器)的压缩效率,并记录与它们各自相关的伪像。由于MPEG-1提供了很高的压缩率,同时又保持了合理的图像质量,因此这些研究促使我们建议视频数据库应同时存储每个视频的高分辨率原始版本(理想情况下为未压缩或无损压缩),并存储单独的经过编辑且高度压缩的MPEG-1预览版本,可以快速下载以供数据库用户进行交互查看。版权所有1999,学术出版社。

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