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查看经补偿的容积渲染图像的压缩以进行远程可视化。

View compensated compression of volume rendered images for remote visualization.

作者信息

Lalgudi Hariharan G, Marcellin Michael W, Bilgin Ali, Oh Han, Nadar Mariappan S

机构信息

Department of Computer and Electrical Engineering, University of Arizona, tucson, AZ 85721, USA.

出版信息

IEEE Trans Image Process. 2009 Jul;18(7):1501-11. doi: 10.1109/TIP.2009.2017151. Epub 2009 May 12.

Abstract

Remote visualization of volumetric images has gained importance over the past few years in medical and industrial applications. Volume visualization is a computationally intensive process, often requiring hardware acceleration to achieve a real time viewing experience. One remote visualization model that can accomplish this would transmit rendered images from a server, based on viewpoint requests from a client. For constrained server-client bandwidth, an efficient compression scheme is vital for transmitting high quality rendered images. In this paper, we present a new view compensation scheme that utilizes the geometric relationship between viewpoints to exploit the correlation between successive rendered images. The proposed method obviates motion estimation between rendered images, enabling significant reduction to the complexity of a compressor. Additionally, the view compensation scheme, in conjunction with JPEG2000 performs better than AVC, the state of the art video compression standard.

摘要

在过去几年中,体图像的远程可视化在医学和工业应用中变得越来越重要。体可视化是一个计算密集型过程,通常需要硬件加速才能实现实时观看体验。一种能够实现这一目标的远程可视化模型会根据客户端的视点请求从服务器传输渲染后的图像。对于受限的服务器-客户端带宽,高效的压缩方案对于传输高质量的渲染图像至关重要。在本文中,我们提出了一种新的视图补偿方案,该方案利用视点之间的几何关系来利用连续渲染图像之间的相关性。所提出的方法避免了渲染图像之间的运动估计,从而能够显著降低压缩器的复杂度。此外,该视图补偿方案与JPEG2000相结合的性能优于当前最先进的视频压缩标准AVC。

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