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Influence on fluid dynamics of coronary artery outlet angle variation in artificial aortic root prosthesis

机译:人工主动脉假体对冠状动脉出口角度变化的流体动力学的影响

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Background Because of higher life expectancy, the number of elderly patients today with degenerative aortic diseases is on the increase. Often artificial aortic roots are needed to replace the native tissue. This surgical procedure requires re-implantation of the previous separated coronary arteries into the wall of the prosthesis. Regardless of the prosthesis type, changes in the reinsertion technique, e.g., the variation of the outlet angle of the coronary arteries, could influence the coronary blood flow. Whether the prosthesis type or the outlet angle variation significantly improves the blood circulation and lowers the risk of coronary insufficiency is still an open question. The numerical calculations presented can help to clear up these disputable questions. Methods Two simplified base geometries are used for simulating the blood flow in order to determine velocity and pressure distributions. One model uses a straight cylindrical tube to approximate the aortic root geometry; the other uses a sinus design with pseudosinuses of Valsalva. The coronary outlet angle of the right coronary artery was discretely modified in both models in the range from 60° to 120°. The pressure and velocity distributions of both models are compared in the ascending aorta as well as in the right and the left coronary artery. Results The potentially allowed and anatomic limited variation of the outlet angle influences the pressure only a little bit and shows a very slight relative maximum between 70° and 90°. The sinus design and variations of the outlet angle of the coronary arteries were able to minimally optimize the perfusion pressure and the velocities in the coronary circulation, although the degree of such changes is rather low and would probably not achieve any clinical influence. Conclusion Our results show that surgeons should feel relatively free to vary the outlet angle within the anatomic structural conditions when employing the technique of coronary reinsertion.
机译:背景技术由于预期寿命更长,如今患有变性主动脉疾病的老年患者数量正在增加。通常需要人造主动脉根来代替天然组织。该手术过程需要将先前分离的冠状动脉重新植入假体壁。无论是哪种假体,重新插入技术的改变(例如冠状动脉出口角度的变化)都可能影响冠状动脉的血流。假体类型或出口角度变化是否显着改善了血液循环并降低了冠状动脉供血不足的风险仍是一个悬而未决的问题。提出的数值计算可以帮助解决这些有争议的问题。方法使用两个简化的基本几何形状来模拟血流,以确定速度和压力分布。一种模型使用直圆柱管近似主动脉根的几何形状。另一个使用带有瓦尔萨尔瓦假窦的窦设计。在两个模型中,右冠状动脉的冠状动脉出口角度均在60°至120°的范围内离散修改。比较两个模型在升主动脉以及右冠状动脉和左冠状动脉中的压力和速度分布。结果出口角度的潜在允许和解剖学上的有限变化仅对压力产生一点影响,并且在70°和90°之间显示出非常小的相对最大值。窦的设计和冠状动脉出口角度的变化能够使冠脉循环中的灌注压力和流速最小化,尽管这种变化的程度相当低,可能不会产生任何临床影响。结论我们的结果表明,在采用冠状动脉再插入技术时,外科医生应该在解剖结构条件下相对自由地改变出口角度。

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