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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >Impact of plaques in the left coronary artery on wall shear stress and pressure gradient in coronary side branches
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Impact of plaques in the left coronary artery on wall shear stress and pressure gradient in coronary side branches

机译:左冠状动脉斑块对冠状动脉侧支壁切应力和压力梯度的影响

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摘要

In this study, we investigate plaques located at the left coronary bifurcation. We focus on the effect that the resulting changes in wall shear stress (WSS) and wall pressure stress gradient (WPSG) have on atherosclerotic progress in coronary artery disease. Coronary plaques were simulated and placed at the left main stem and the left anterior descending to produce >50% narrowing of the coronary lumen. Computational fluid dynamics analysis was carried out, simulating realistic physiological conditions that show the in vivo cardiac haemodynamic. WSS and WPSG in the left coronary artery were calculated and compared in the left coronary models, with and without the presence of plaques during cardiac cycles. Our results showed that WSS decreased while WPSG was increased in coronary side branches due to the presence of plaques. There is a direct correlation between coronary plaques and subsequent WSS and WPSG variations based on the bifurcation plaques simulated in the realistic coronary models.
机译:在这项研究中,我们调查位于左冠状动脉分叉处的斑块。我们关注的是壁剪切应力(WSS)和壁压力应力梯度(WPSG)的最终变化对冠状动脉疾病的动脉粥样硬化进展的影响。模拟冠状动脉斑块并将其放置在左主干和左前降支处,以产生> 50%的冠状动脉腔狭窄。进行了计算流体动力学分析,以模拟显示体内心脏血液动力学的现实生理条件。计算左冠状动脉模型中的WSS和WPSG,并在左冠状动脉模型中比较是否存在心动周期中的斑块。我们的结果表明,由于斑块的存在,冠状动脉侧支中的WSS降低而WPSG升高。冠状动脉斑块与随后的WSS和WPSG变异之间存在直接相关性,基于实际冠状动脉模型中模拟的分叉斑块。

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