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COMPUTATIONAL FLUID DYNAMICS VISUALISATION APPLIED TO MEDICAL MAGNETIC RESONANCE IMAGING

机译:计算流体动力学可视化应用于医用磁共振成像

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By using phase encoded sequences, magnetic resonance imaging can non invasively detect fluid motion in the human body with excellent accuracy. Resulting data sets describing three-dimensional unsteady motion can be very dense, being at least comparable to state of the art computational fluid dynamics (CFD) data. CFD visualisation techniques have been applied to medical images with the objectives of improving the investigative tools available to the clinician and increasing the speed with which useful information can be obtained from the data sets. This paper demonstrates the nature of the visualisation problem and the kinds of results that have already been achieved.
机译:通过使用相位编码的序列,磁共振成像可以在人体中以优异的精度来侵入地检测流体运动。结合三维非定常运动的所得到的数据集可以非常密集,至少可与所艺术计算流体动力学(CFD)数据的状态相当。 CFD可视化技术已应用于医学图像,其目的是改善临床医生可用的调查工具,并增加可以从数据集获得有用信息的速度。本文展示了可视化问题的性质和已经实现的结果。

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