首页> 外文会议>Computational Science - ICCS 2007 pt.1; Lecture Notes in Computer Science; 4487 >Grid-Enabled Software Environment for Enhanced Dynamic Data-Driven Visualization and Navigation During Image-Guided Neurosurgery
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Grid-Enabled Software Environment for Enhanced Dynamic Data-Driven Visualization and Navigation During Image-Guided Neurosurgery

机译:基于网格的软件环境,可在图像引导的神经外科手术过程中增强动态数据驱动的可视化和导航

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In this paper we present our experience with an Image Guided Neurosurgery Grid-enabled Software Environment (IGNS-GSE) which integrates real-time acquisition of intraoperative Magnetic Resonance Imaging (IMRI) with the preoperative MRI, fMRI, and DT-MRI data. We describe our distributed implementation of a non-rigid image registration method which can be executed over the Grid. Previously, non-rigid registration algorithms which use landmark tracking across the entire brain volume were considered not practical because of the high computational demands. The IGNS-GSE, for the first time ever in clinical practice, alleviated this restriction. We show that we can compute and present enhanced MR images to neurosurgeons during the tumor resection within minutes after IMRI acquisition. For the last 12 months this software system is used routinely (on average once a month) for clinical studies at Brigham and Women's Hospital in Boston, MA. Based on the analysis of the registration results, we also present future directions which will take advantage of the vast resources of the Grid to improve the accuracy of the method in places of the brain where precision is critical for the neurosurgeons.
机译:在本文中,我们介绍了图像引导神经外科网格支持软件环境(IGNS-GSE)的经验,该软件环境将术中磁共振成像(IMRI)的实时采集与术前MRI,fMRI和DT-MRI数据集成在一起。我们描述了可以在Grid上执行的非刚性图像配准方法的分布式实现。以前,由于高计算需求,在整个大脑体积上使用界标跟踪的非刚性配准算法被认为不切实际。 IGNS-GSE首次在临床实践中减轻了这种限制。我们表明,我们可以在IMRI采集后的几分钟内计算并在肿瘤切除过程中向神经外科医生显示增强的MR图像。在过去的12个月中,该软件系统在马萨诸塞州波士顿的布莱根妇女医院常规(平均每月一次)用于临床研究。在对注册结果进行分析的基础上,我们还提出了未来的方向,这些方向将利用Grid的巨大资源来提高在神经外科医师至关重要的大脑位置的方法的准确性。

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