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Regional Resistance Value Optimization of Cerebral Blood Circulation

机译:脑血液循环的区域抵抗价值优化

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Cerebral blood flow supplies adequate oxygen and energy sources to the brain. Reduction in regional cerebral blood flow rates may lead to some neurological problems. In this study, a direct search optimization method was developed to adjust each resistance of lumped-parameter model of cerebral blood circulation for different physiological conditions. The developed method was tested by using a cardiovascular system model for both healthy and heart failure conditions. The mean blood flow rates of internal carotid and vertebral arteries supplying blood to the cerebral blood circulation were 271 mL/min and 106 mL/min over a cardiac cycle, respectively. In the case of heart failure, the mean blood flow rates of internal carotid arteries and vertebral arteries decreased to 190 mL/min and 74 mL/min over a cardiac cycle, respectively. The results show that regional resistance values of cerebral circulation model were optimized correctly for healthy and heart failure cases.
机译:脑血流供应足够的氧气和能源到大脑。 区域脑血流量的降低可能导致一些神经系统问题。 在本研究中,开发了一种直接搜索优化方法以调节脑血液循环的总体参数模型的每种电阻,以进行不同的生理条件。 通过使用心血管系统模型来测试开发方法,用于健康和心力衰竭条件。 内部颈动脉和椎体的平均血流率和血液向脑血液循环的血液循环分别为371ml / min,分别在心脏循环上为106ml / min。 在心力衰竭的情况下,内部颈动脉和椎动脉的平均血流率分别在心脏周期中减少至190毫升/分钟和74ml / min。 结果表明,脑循环模型的区域抵抗值适用于健康和心力衰竭案件。

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