August 02, 2011 article Study of Flow-Induced Hemolysis Using Novel Couette-Type Blood-Shearing Devices Artificial Organs DOI: 10.1111/j.1525-1594.2011.01243.x OpenAlex Authors 0 Author list not loaded yet. Cited by 9 stored of 194 Search Sort Most cited Newest Oldest Patent citations Title Any typearticle review book-chapter conference-paper preprint dissertation book dataset other Any fieldAgricultural and Biological Sciences Arts and Humanities Biochemistry, Genetics and Molecular Biology Business, Management and Accounting Chemical Engineering Chemistry Computer Science Decision Sciences Dentistry Earth and Planetary Sciences Economics, Econometrics and Finance Energy Engineering Environmental Science Health Professions Immunology and Microbiology Materials Science Mathematics Medicine Neuroscience Nursing Pharmacology, Toxicology and Pharmaceutics Physics and Astronomy Psychology Social Sciences Veterinary Open access Trial‐Based Hemolysis Modeling to Investigate Operating Modes of Continuous‐Flow LVADs 2025 Artificial Organs article Engineering Mechanical Circulatory Support Devices Open access 0 citations Investigating the Impact of Cannula Size on Pump Operation and Hemodynamics in an In Silico Clinical Trial 2025 ASAIO Journal article Engineering Mechanical Circulatory Support Devices 1 citations Quantifying Experimental Variability in Shear-Induced Hemolysis to Support Uncertainty-Aware Hemolysis Models 2025 Annals of Biomedical Engineering article Medicine Blood properties and coagulation Open access 4 citations Toward Uncertainty‐Aware Hemolysis Modeling: A Universal Approach to Address Experimental Variance 2025 International Journal for Numerical Methods in Biomedical Engineering article Engineering Mechanical Circulatory Support Devices Open access 4 citations Experimental Investigation of the Applicability of the Stress‐Based and Strain‐Based Hemolysis Models for Short‐Term Stress Peaks Typical for Rotary Blood Pumps 2025 Artificial Organs article Engineering Mechanical Circulatory Support Devices Open access 5 citations Hydraulic design 2024 Elsevier eBooks book-chapter Engineering Mechanical Circulatory Support Devices 0 citations Eulerian formulation of the tensor-based morphology equations for strain-based blood damage modeling 2024 Computer Methods in Applied Mechanics and Engineering article Medicine Blood properties and coagulation Open access 14 citations Finite-element formulation for advection–reaction equations with change of variable and discontinuity capturing 2020 Computer Methods in Applied Mechanics and Engineering article Engineering Advanced Numerical Methods in Computational Mathematics Open access 9 citations Computational Fluid Dynamics for Mechanical Circulatory Support Device Development 2020 Springer eBooks book-chapter Engineering Mechanical Circulatory Support Devices 1 citations 9 results References 0