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Porting a 3D image registration application to multi-core environment

机译:将3D图像注册应用程序移植到多核环境

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Meanwhile distributed and parallel computing has been used for medical research applications, the most recent multi-core computer architectures bring along the opportunity to adapt these paradigms to the applied medical solutions as well, thus significantly enhancing their usability.rnWe have ported an already implemented 3D image registration algorithm to the Cell Broadband Engine platform. The algorithm is able to adjust and align digitized tissue slices cut from human body into one coordinate system. Our re-designed algorithm to this heterogeneous multi-core processor shortened the processing time by 70 %.rnUnlike the pictures available after an MRI or PET scan, these tissue slices are situated on the picture at different positions with different angles, significantly strained at random parts and might be disordered during the digital acquisition.rnThis paper is a report on how the Coarse Mutual Adjustment algorithm of the MIRAX 3D module of MIRAX Viewer [1], digital microscope software was ported to the Cell Broadband Engine. It introduces the application of the software, the previously developed algorithm, describes the porting phases, and gives performance measurement results and conclusions.
机译:同时,分布式和并行计算已用于医学研究应用程序,最新的多核计算机体系结构也带来了使这些范例适应所应用的医学解决方案的机会,从而大大提高了它们的可用性。rn我们已经移植了已经实施的3D图像配准算法到Cell Broadband Engine平台。该算法能够将人体切出的数字化组织切片调整和对齐为一个坐标系。我们针对该异构多核处理器重新设计的算法将处理时间缩短了70%.rn与MRI或PET扫描后可获得的图片不同,这些组织切片位于图片上不同角度,不同位置的图片上,随机地显着拉紧本文是有关如何将数字显微镜软件MIRAX Viewer [1]的MIRAX 3D模块的粗略相互调整算法移植到Cell Broadband Engine上的报告。它介绍了该软件的应用程序(先前开发的算法),描述了移植阶段,并给出了性能测量结果和结论。

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