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Grid enabled magnetic resonance scanners for near real-time medical image processing

机译:支持网格的磁共振扫描仪,用于近实时医学图像处理

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This paper presents the initial steps taken to integrate the University of California at San Francisco Radiology Department's magnetic resonance (MR) scanners with its high-performance computing (HPC) grid. The objective is to improve patient care by enabling near real-time, computationally intensive medical image processing, directly at an MR scanner. A graphical software tool is described that was developed to run on the MR scanners for submitting processing jobs to the Departmental grid. The computationally intensive parallel reconstruction and quantification of large, multi-dimensional MR spectroscopic imaging (MRSI) data sets was used as the prototype application for this system. Initial results indicate that real-time processing of medical imaging data on a shared HPC resource is reliable and possible in a clinically acceptable time of less than 5 min. The Department's HPC resource is comprised of hardware owned by multiple research groups at three separate University facilities throughout San Francisco. (C) 2006 Elsevier Inc. All rights reserved.
机译:本文介绍了将加利福尼亚大学旧金山放射学系的磁共振(MR)扫描仪与其高性能计算(HPC)网格集成在一起的初步步骤。目的是通过直接在MR扫描仪上实现近实时,计算密集型医学图像处理来改善患者护理。描述了一种图形软件工具,该工具已开发为在MR扫描器上运行,以将处理作业提交给部门网格。大型多维MR光谱成像(MRSI)数据集的计算密集型并行重建和量化被用作该系统的原型应用程序。初步结果表明,在共享的HPC资源上实时处理医学成像数据是可靠的,并且可能在不到5分钟的临床可接受时间内完成。该系的HPC资源由位于旧金山的三个独立大学设施中的多个研究小组拥有的硬件组成。 (C)2006 Elsevier Inc.保留所有权利。

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