Biofluid Mechanics in Cardiovascular Systems
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Chapter 1: Review of Basic Fluid Mechanics ConceptsChapter 2: Cardiovascular Structure and FunctionChapter 3: Pulmonary Anatomy, Pulmonary Physiology, and RespirationChapter 4: Hematology and Blood RheologyChapter 5: Anatomy and Physiology of Blood VesselsChapter 6: Mechanics of Heart ValvesChapter 7: Pulsatile Flow in Large ArteriesChapter 8: Flow and Pressure MeasurementChapter 9: ModelingChapter 10: Lumped Parameter Mathematical ModelsINDEX
Chapter 3: Pulmonary Anatomy, Pulmonary Physiology, and RespirationChapter 4: Hematology and Blood RheologyChapter 5: Anatomy and Physiology of Blood VesselsChapter 6: Mechanics of Heart ValvesChapter 7: Pulsatile Flow in Large ArteriesChapter 8: Flow and Pressure MeasurementChapter 9: ModelingChapter 10: Lumped Parameter Mathematical ModelsINDEX
Chapter 5: Anatomy and Physiology of Blood VesselsChapter 6: Mechanics of Heart ValvesChapter 7: Pulsatile Flow in Large ArteriesChapter 8: Flow and Pressure MeasurementChapter 9: ModelingChapter 10: Lumped Parameter Mathematical ModelsINDEX
Chapter 7: Pulsatile Flow in Large ArteriesChapter 8: Flow and Pressure MeasurementChapter 9: ModelingChapter 10: Lumped Parameter Mathematical ModelsINDEX
Chapter 9: ModelingChapter 10: Lumped Parameter Mathematical ModelsINDEX
INDEX
Biofliudics has gained in importance in recent years, forcing engineers to redefine mechanical engineering theories and apply them to biological functions. To date, no book has successfully done this. Biofliud Mechanics in Cardiovascular Systems is one of the first books to take an interdisciplinary approach to the subject. Written by a professor and researcher, this book will combine engineering principles with human biology to deliver a text specifically designed for biomedical engineering professionals and students.