首页> 外文会议>ASME summer bioengineering conference;SBC2010 >NUMERICAL MODELLING OF BLOOD FLOW IN THE MOUSE AORTIC ARCH USING INFLOW VELOCITIES OBTAINED BY PHASE-CONTRAST MRI
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NUMERICAL MODELLING OF BLOOD FLOW IN THE MOUSE AORTIC ARCH USING INFLOW VELOCITIES OBTAINED BY PHASE-CONTRAST MRI

机译:利用相衬核磁共振成像获得的流速对小鼠主动脉弓内血流进行数值模拟

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Atherosclerotic lesions have a highly non-uniform distribution in regions of arterial branching and curvature, consistent with hemodynamic factors, in particular wall shear stress (WSS), controlling their development. The widespread and increasing use of the mouse as a model for studying atherosclerosis has encouraged investigation of the hemodynamics of the mouse aortic arch [1-3], in which previous studies have revealed areas of high and low lesion prevalence and variation in the expression of pro-atherogenic molecules [4]. Our previous computational simulations [1-2] did not produce distributions of WSS that explain the pattern of lesions. We are currently investigating whether incorporation of more realistic aortic root velocity measurements, obtained using phase-contrast magnetic resonance imaging (PC-MRI), into these simulations can improve the correlation with disease. Here we present velocities obtained by PC-MRI and preliminary simulations employing the data.
机译:动脉粥样硬化病变在动脉分支和曲率区域具有高度不均匀的分布,与血液动力学因素(尤其是壁切应力(WSS))一致,从而控制了病变的发展。小鼠作为研究动脉粥样硬化的模型的广泛且不断增加的用途鼓励了对小鼠主动脉弓的血流动力学的研究[1-3],其中先前的研究揭示了病变高发区和低发区以及表达的变化。促动脉粥样硬化分子[4]。我们之前的计算模拟[1-2]并未产生WSS的分布来解释病变的模式。我们目前正在调查是否将使用相衬磁共振成像(PC-MRI)获得的更真实的主动脉根速度测量值纳入这些模拟中,可以改善与疾病的相关性。在这里,我们介绍了通过PC-MRI获得的速度以及采用该数据的初步模拟。

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