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Updated: Feb 5, 2026

Hemocompatibility Testing of Blood-Contacting Implants in a Flow Loop Model Mimicking Human Blood Flow
Published on: March 5, 2020
Optimization of a peristaltic blood pump using PSO-BPNN and NSGA-III: balancing pumping efficiency and
Jun Zhang1, RuiGui Huang1, HongTao Zhang2
1School of Mechanical and Power Engineering, Zhengzhou University, Zhengzhou, China.
Abstract:
Peristaltic pumps are promising for wearable dialysis, but optimizing flow and hemocompatibility under roller-tube contact is limited by costly 3D two-way fluid-structure interaction (FSI). We propose a surrogate-assisted three-objective workflow that couples 3D two-way FSI, a PSO-BPNN surrogate, NSGA-III search, and entropy-weighted TOPSIS decision-making. Sixty samples were used to train the surrogate for average flow rate , time-averaged shear stress , and shear-stress pulsation , achieving values of 0.97/0.91/0.94. Compared with the baseline pump, the selected design delivers 208.79 mL/min, reduces and by 6.30% and 40.76%, lowers the predicted hemolysis index by 6.71%.
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