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Modeling of intracranial hemodynamics and cerebral venous outflow: Pressures and flows behavior under arterial pulse simulation

机译:颅内血流动力学和脑静脉流出的建模:动脉脉冲仿真下的压力和流动性能

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Cerebral hemodynamics in humans is affected by postural changes (variations of the brain-axis direction with respect to the gravity field) and alterations of the basal hydraulic conductances in the main extracranial vasculature (jugular stenosis). The combined action of these factors can affect basal pressures and flows at any point of the cardiovascular system, potentially leading to different short and long-term diseases. To study this complex system, a mathematical model for the simulation of the cerebral circulation and brain drainage was developed. It takes into account the intracranial autoregulation mechanisms, the collapsibility of internal jugular veins and the time dependence of the arterial pressure due to the left ventricle. The model parameters are tuned in order to properly reproduce supine and upright flow data (obtained with Magnetic Resonance and Echo-Color Doppler technique) from healthy people and subjects with a specific stenotic pattern. First simulations show how the arterial pressure pulse affects the behavior of flows and pressures over time, and how these variables depend on different setting of parameters (i.e. simulation of different posture and stenotic pattern).
机译:人类中的脑血流动力学受到姿势变化的影响(脑轴方向相对于重力场的变化)和主要颅外血管系统(颈狭窄)中基底液压导电的改变。这些因素的组合作用可能影响基础压力并在心血管系统的任何点流动,可能导致不同的短期和长期疾病。为了研究这种复杂的系统,开发了一种模拟脑循环和脑排水的数学模型。它考虑了颅内自动调节机制,内部颈静脉的损伤以及由于左心室引起的动脉压的时间依赖性。调谐模型参数,以便从健康的人员和具有特定狭窄图案的健康人员和受试者正确再现仰卧和直立流量数据(通过磁共振和回声多普勒技术获得。第一模拟显示动脉压脉脉冲如何影响流动和压力随着时间的推移,以及这些变量如何取决于不同的参数的不同设置(即,不同姿势和狭窄模式的模拟)。

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