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Patient-specific hemodynamics prediction and virtual endovascular intervention using MediGRID and free software

机译:使用MediGRID和免费软件进行患者特定的血流动力学预测和虚拟血管内干预

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The fast growing resources available by Grid and cloud computing provide new opportunities for the daily work of scientific and business communities. Here we present a deployed system deriving detailed information on hemody-namics and vessel wall stresses from common tomography data in a simple and efficient way. The system is suited for direct use e.g. by radiologists or cardiologists in medical planning and clinical research settings. Up to now, detailed numerical simulations of similar kinds have required the effort of specialized, large, multi-disciplinary groups. The deployment of the new system is based on resources maintained by the nationally funded german MediGRID project. This assures broad accessibility, low or no set-up and maintenance costs and a high security leveL The implementationdesign facilitates intuitive interactive usage for user-intensive parts and full exploitation of high-performance-computing for the computationally intensive components of the processing pipeline. Virtual vascular surgery is supported, including the placement of stents, clipping of aneurysms, and vessel dilation. The effect of such interventions can be explored, including parametric effects like stent position or porosity, as part of the intervention planning. Physical fields of interest like pressure, wall shear stress, blood flow volume rate, or their correlations can be inspected as time series or as interactive three-dimensional scenes. The grid related parts of the workflow are controlled readily over a web interface.
机译:网格和云计算提供的快速增长的资源为科学界和企业界的日常工作提供了新的机会。在这里,我们介绍一个已部署的系统,该系统以简单而有效的方式从常见的断层扫描数据中获取有关血流动力学和血管壁应力的详细信息。该系统适合直接使用,例如由放射科医生或心脏病专家在医疗计划和临床研究环境中进行。到目前为止,类似类型的详细数值模拟需要专业,大型,多学科小组的努力。新系统的部署基于国家资助的德国MediGRID项目维护的资源。这确保了广泛的可访问性,较低的安装成本或维护成本,甚至没有安装成本和较高的安全性。实施设计有助于对用户密集型部件进行直观的交互式使用,并为处理管线中计算密集型的组件充分利用了高性能计算。支持虚拟血管手术,包括放置支架,夹住动脉瘤和扩张血管。作为干预计划的一部分,可以探讨此类干预的效果,包括诸如支架位置或孔隙率等参数效果。感兴趣的物理场(例如压力,壁切应力,血流量或它们的相关性)可以作为时间序列或作为交互式三维场景进行检查。工作流中与网格相关的部分可以通过Web界面轻松控制。

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