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首页> 外文期刊>Journal of Medical Engineering >Enabling 3D-Liver Perfusion Mapping from MR-DCE Imaging Using Distributed Computing
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Enabling 3D-Liver Perfusion Mapping from MR-DCE Imaging Using Distributed Computing

机译:使用分布式计算从MR-DCE成像启用3D肝脏灌注映射

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An MR acquisition protocol and a processing method using distributed computing on the European Grid Infrastructure (EGI) to allow 3D liver perfusion parametric mapping after Magnetic Resonance Dynamic Contrast Enhanced (MR-DCE) imaging are presented. Seven patients (one healthy control and six with chronic liver diseases) were prospectively enrolled after liver biopsy. MR-dynamic acquisition was continuously performed in free-breathing during two minutes after simultaneous intravascular contrast agent (MS-325 blood pool agent) injection. Hepatic capillary system was modeled by a 3-parameters one-compartment pharmacokinetic model. The processing step was parallelized and executed on the EGI. It was modeled and implemented as a grid workflow using the Gwendia language and the MOTEUR workflow engine. Results showed good reproducibility in repeated processing on the grid. The results obtained from the grid were well correlated with ROI-based reference method ran locally on a personal computer. The speed-up range was 71 to 242 with an average value of 126. In conclusion, distributed computing applied to perfusion mapping brings significant speed-up to quantification step to be used for further clinical studies in a research context. Accuracy would be improved with higher image SNR accessible on the latest 3T MR systems available today.
机译:提出了磁共振采集协议和使用欧洲网格基础设施(EGI)上的分布式计算的处理方法,以允许在磁共振动态对比度增强(MR-DCE)成像后进行3D肝脏灌注参数映射。肝活检后前瞻性纳入了7名患者(1名健康对照和6名慢性肝病)。在同时注射血管内造影剂(MS-325血池剂)后的两分钟内,在自由呼吸中连续进行MR动态采集。通过三参数一室药代动力学模型对肝毛细血管系统进行建模。处理步骤已并行化并在EGI上执行。它使用Gwendia语言和MOTEUR工作流引擎建模并实现为网格工作流。结果显示在网格上重复处理具有良好的可重复性。从网格获得的结果与在个人计算机上本地运行的基于ROI的参考方法相关性很好。加速范围为71到242,平均值为126。总而言之,将分布式计算应用于灌注映射可以显着加快量化步骤,从而可以在研究环境中用于进一步的临床研究。在当今可用的最新3T MR系统上,可通过获得更高的图像SNR来提高准确性。

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