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Pressure and Flow Interplay in Aortic Dilation Using 4D Flow Magnetic Resonance Imaging

机译:使用4D流磁共振成像的主动脉扩张过程中的压力和流动相互作用

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Ascending thoracic aortic aneurysms (ATAA) are defined by a silent dilation of the ascending aorta (AA). Although maximal aortic diameter is currently used for surgery planning, a high proportion of patients with low diameters ending up with aortic dissection. Our purpose was to propose a fine and comprehensive quantitative evaluation of pressure-flow-wall interplay from 4D flow MRI data in the setting of aortic dilation.We studied 12 patients with ATAA (67±14 years, 7 male) and 12 healthy subjects (63±12 years, 8 male) who underwent 4D flow MRI acquisition. The segmented velocity fields were used to estimate: 1) local AA pressure changes from Navier-Stokes-derived relative pressure maps (AADP), 2) AA wall shear stress (AAWSS) by estimating local velocity derivatives at the aortic borders, 3) aortic flow vorticity using the λ2 method (AAV).AADP was significantly and positively associated with both AAV (r=0.55, p=0.006) and AAWSS (r=0.69 p<0.001). Such associations remained significant after adjustment for maximal diameter, age and BSA.Local variations in pressures within the aorta, rendered possible while using 4D flow MRI, are associated with flow disorganization as quantified by vorticity and with the increase in the stress exerted on the aortic wall, as quantified by wall shear stress.
机译:升主动脉动脉瘤(ATAA)是由升主动脉(AA)的无声扩张定义的。尽管目前将最大主动脉直径用于手术计划,但仍有很大比例的低直径患者最终发生主动脉夹层。我们的目的是根据主动脉扩张情况下的4D流MRI数据提出对压力-流-壁相互作用的精细,全面的定量评估。我们研究了12例ATAA患者(67±14岁,男7例)和12例健康受试者( 63±12岁,男性8位),接受了4D流MRI采集。分段速度场用于估计:1)从Navier-Stokes衍生的相对压力图(AADP)得出的局部AA压力变化; 2)通过估计主动脉边界处的局部速度导数来获得AA壁剪应力(AAWSS); 3)主动脉使用λ的流动涡度 2 方法(AAV).AADP与AAV(r = 0.55,p = 0.006)和AAWSS(r = 0.69 p <0.001)均显着正相关。在调整了最大直径,年龄和BSA之后,这种关联仍然很明显。使用4D流动MRI可以使主动脉内的局部压力变化与流动紊乱(通过涡度量化)以及施加在主动脉上的压力增加相关壁,由壁切应力量化。

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