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Cyclic variation of the power of ultrasonic Doppler signals backscattered by polystyrene microspheres and porcine erythrocyte suspensions

机译:聚苯乙烯微球和猪红细胞悬液反向散射的超声多普勒信号功率的周期性变化

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摘要

Factors affecting the power of the ultrasonic Doppler signal within the flow cycle have been evaluated experimentally using a pulsatile flow loop model. Polystyrene microspheres and porcine red cells suspended in saline solution for hematocrits between 2 and 40% were used as scattering fluid in the flow model. Experiments were performed at mean flow velocities of 11, 64, and 76 cm/s. In laminar flow experiments performed at a mean velocity of 11 cm/s, no variation of the Doppler power was found for both polystyrene microspheres and red cell suspensions (40% hematocrit). When turbulence was induced in the flow model, the power increasing during systole, a maximum was observed early after peak systole, and a decrease was obtained in diastole during deceleration of flow.
机译:使用脉动流回路模型已通过实验评估了在流动周期内影响超声多普勒信号功率的因素。悬浮在盐溶液中血细胞比容在2%至40%之间的聚苯乙烯微球和猪红细胞用作流动模型中的散射液。实验以11、64和76 cm / s的平均流速进行。在以11 cm / s的平均速度进行的层流实验中,聚苯乙烯微球和红细胞悬液(血细胞比容为40%)均未发现多普勒功率变化。当在流动模型中引起湍流时,在收缩期功率增加,在收缩峰值后早期观察到最大值,并且在血流减速期间舒张期降低。

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