首页> 外文期刊>Journal of Mechanical Science and Technology >Effect of aortic spiral blood flow on wall shear stress in stenosed left main coronary arteries with varying take-off angle, stenosis severity and eccentricity
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Effect of aortic spiral blood flow on wall shear stress in stenosed left main coronary arteries with varying take-off angle, stenosis severity and eccentricity

机译:具有不同起飞角度,狭窄严重程度和偏心的旋转左主冠状动脉中主动脉螺旋血流对壁剪应力的影响

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It is well accepted that blood flow in the human aorta is spiral by nature, with beneficial impacts for the cardiovascular system in the form of improved haemodynamics and efficient perfusion. This study investigates the effect of aortic spiral blood flow on wall shear stress (WSS) in computer-generated models of the left main trunk (LMT), also known as left main coronary artery, with varying take-off angle, stenosis severity and eccentricity. The results show that the spirality effect causes a substantial reduction in maximum WSS (WSSmax), average WSS (WSSave) and size of regions with low WSS. The effects of spiral flow on WSSmax become more significant with increasing LMT take-off angle and stenosis eccentricity, and they become less significant with increasing stenosis severity. The aortic spiral blood flow intensity, LMT take-off angle, stenosis severity and eccentricity statistically significantly predict the WSS; however, the strongest predictor of WSS is stenosis severity (F(4, 399) = 3653.85, p 0.001 for WSSmax and F(4, 399) = 913.46, p 0.001 for WSSave), followed by LMT take-off angle (F(4, 399) = 582.735, p 0.001 for WSSmax and F(4, 399) = 163.16, p 0.001 for WSSave), stenosis eccentricity (F(4, 399) = 230.15, p 0.001 for WSSmax and F(4, 399) = 52.94, p 0.001 for WSSave) and blood flow spirality (F(4, 399) = 112.37, p 0.001 for WSSmax and F(4, 399) = 32.18, p 0.001 for WSSave). Our findings suggest that naturally or artificially induced spiral flow in the aorta potentially has atheroprotective effects in the LMT.
机译:人们普遍认为,人体主动脉的血液流动是自然的螺旋状,对心血管系统具有改善的血管动力学和有效灌注的形式有益的影响。本研究研究了主动脉螺旋血流对左主干(LMT)的计算机产生的模型中的主动脉螺旋血流(WSS)的影响,也称为左主冠状动脉,不同的起飞角度,狭窄严重程度和偏心率。结果表明,螺旋效应导致最大WSS(WSMAX),平均WSS(WSSAVE)和具有低WSS的区域大小的大幅减少。随着LMT起飞角度和狭窄偏心的增加,螺旋流量对WSMAX的影响变得更加显着,并且随着狭窄严重程度的增加而变得不太显着。主动脉螺旋血流强度,LMT起飞角,狭窄严重程度和偏心率统计上显着预测了WSS;然而,WSS的最强预测因子是狭窄的严重程度(F(4,399)= 3653.85,P <0.001,对于WSSmax,F(4,399)= 913.46,P <0.001对于WSSAVE),其次是LMT熄火角度(F(4,399)= 582.735,P <0.001对于Wssmax,F(4,399)= 163.16,p <0.001,对于WSSAVE),狭窄偏心(F(4,399)= 230.15,P <0.15,P&LT;对于WSMAX和F(4,399)= 52.94,P

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