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Recent Advances in Hemodynamics and Blood Mimetics

Specificaties
Paperback, blz. | Engels
Elsevier Science | 2025
ISBN13: 9780443240669
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Elsevier Science e druk, 2025 9780443240669
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Samenvatting

Recent Advances in Hemodynamics and Blood Mimetics is a comprehensive compilation of recent developments in biofluid mechanics and biomimetics, covering topics such as numerical modeling, biomedical applications of microfluidics, biomimetic flows, biomedicine applications, and organ-on-chip technology. The book explores blood hemodynamics at different scales, including application to diseases, the relationship between blood biomechanics and rheology, the mimetization of blood properties at arterial and capillary level, including the study of blood mechanical and flow properties, flow and surface properties of blood cells, and mimetization of these same properties in fluid/particle systems.

These concepts are applied to the development of organ-on-chip to improve the replication of biological processes in the human body. The book organizes recent knowledge on hemodynamics and blood mimetics and is representative of the different lines of research in the field, showing an integrated view of blood biomechanics encompassing all scales to create a valuable resource where different research lines can be found and their principles understood.

Specificaties

ISBN13:9780443240669
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Section 1. Numerical methods<br>1. Patient specific hemodynamics<br>2. Two-phase flows (VOF method, Euler-euler methods, Euler-Lagrange methods)<br>3. Macroscopic rheological properties estimated from microstructure of particle suspension<br>4. Dissipative Coupling of Fluid and Immersed Objects for Modelling of Cells in Flow<br>5. Flow of blood cells in microfluidic channels: a dissipative particle dynamics simulation study<br><br>Section 2. Biomedical applications of microfluidics<br>6. Biomechanics of blood cells<br>7. Techniques to fabricate microparticles for hemodynamic applications<br>8. Hemodynamics in the Microcirculation and in Microfluidics<br>9. Applications of inertial microfluidics in biomedical research<br>10. Properties and applications of PDMS microfluidic devices<br>11. In vitro hemodynamics<br><br>Section 3. Biomimetics and bioinspired flows<br>12. Review on blood analogue fluids<br>13. Murray&rsquo;s Law in blood vessel networks<br>14. Mechanical behavior of bio-inspired systems<br>15. Flow in microfluidic systems using networks of bio-inspired soft valves<br>16. Biomimetics of the pulmonary environment in vitro<br><br>Section 4. Applications to biomedicine<br>17. Gas embolisms in small vessels - formation, vessel clogging, flow<br>18. Pathological Hemodynamics<br>19. Flow Visualizations in PDMS Cerebral Aneurysm Biomodel<br>20. Blood flow in a cerebral aneurysm<br>21. Mechanical characterization of pathological blood<br><br>Section 5. Micro and nano flow applications in organ on chips<br>22. PDMS surface modification for microfluidic devices and organ on chip platforms<br>23. Flow assessment and analysis of oxygen transport in an organ on chip platform<br>24. Micro/Nanomachines for biomedical applications<br>25. Effects of microneedle design parameters on hydraulic resistance<br>26. PDMS Microneedles for organ-on-chip platforms</p>
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        Recent Advances in Hemodynamics and Blood Mimetics