Written by physicians and surgeons, imaging specialists, and medical technology engineers, and edited by Dr. Evan M. Zahn of the renowned Cedars-Sinai Heart Institute, this concise, focused volume covers must-know information in this new and exciting field. Covering everything from the evolution of 3D modeling in cardiac disease to the various roles of 3D modeling in cardiology to cardiac holography and 3D bioprinting, 3-Dimensional Modeling in Cardiovascular Disease is a one-stop resource for physicians, cardiologists, radiologists, and engineers who work with patients, support care providers, and perform research.
1. Introduction - p. xi 2. Chapter 1. The Evolution of 3D Modeling in Cardiac Disease - p. 1 3. Chapter 2. The Technical Basics of Cardiac 3D Printing - p. 17 4. Chapter 3. From Multiplanar Imaging to Physical 3D Models: 3D Printing as an Adjunct to Congenital Heart Surgery - p. 43 5. Chapter 4. 3D Modeling as an Adjunct to Complex Congenital Catheter Interventions - p. 55 6. Chapter 5. Instructional Case Examples Utilizing Three-Dimensional Modeling in Congenital Heart Disease - p. 63 7. Chapter 6. Is There Role for 3D Modeling in Planning Acquired Heart Disease Surgery? - p. 75 8. Chapter 7. 3D Modeling as a Tool for Structural Heart Interventions - p. 87 9. Chapter 8. The Role of 3D Modeling in the Treatment of Advanced Heart Failure - p. 103 10. Chapter 9. Current Challenges to the Use of 3D Modeling as a Standard Clinical Tool - p. 117 11. Chapter 10. Does 3D Modeling Alter Clinical Outcomes? What Are the Data? - p. 123 12. Chapter 11. 3D Modeling as a Medical Education Resource, Simulation, and Communication Tool - p. 147 13. Chapter 12. Computational Modeling and Personalized Surgery - p. 155 14. Chapter 13. 3D Bioprinting: What Does the Future Hold? - p. 177 15. Index - p. 195
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Written by physicians and surgeons, imaging specialists, and medical technology engineers, and edited by Dr. Evan M. Zahn of the renowned Cedars-Sinai Heart Institute, this concise, focused volume covers must-know information in this new and exciting field. Covering everything from the evolution of 3D modeling in cardiac disease to the various roles of 3D modeling in cardiology to cardiac holography and 3D bioprinting, 3-Dimensional Modeling in Cardiovascular Disease is a one-stop resource for physicians, cardiologists, radiologists, and engineers who work with patients, support care providers, and perform research.
1. Introduction - p. xi 2. Chapter 1. The Evolution of 3D Modeling in Cardiac Disease - p. 1 3. Chapter 2. The Technical Basics of Cardiac 3D Printing - p. 17 4. Chapter 3. From Multiplanar Imaging to Physical 3D Models: 3D Printing as an Adjunct to Congenital Heart Surgery - p. 43 5. Chapter 4. 3D Modeling as an Adjunct to Complex Congenital Catheter Interventions - p. 55 6. Chapter 5. Instructional Case Examples Utilizing Three-Dimensional Modeling in Congenital Heart Disease - p. 63 7. Chapter 6. Is There Role for 3D Modeling in Planning Acquired Heart Disease Surgery? - p. 75 8. Chapter 7. 3D Modeling as a Tool for Structural Heart Interventions - p. 87 9. Chapter 8. The Role of 3D Modeling in the Treatment of Advanced Heart Failure - p. 103 10. Chapter 9. Current Challenges to the Use of 3D Modeling as a Standard Clinical Tool - p. 117 11. Chapter 10. Does 3D Modeling Alter Clinical Outcomes? What Are the Data? - p. 123 12. Chapter 11. 3D Modeling as a Medical Education Resource, Simulation, and Communication Tool - p. 147 13. Chapter 12. Computational Modeling and Personalized Surgery - p. 155 14. Chapter 13. 3D Bioprinting: What Does the Future Hold? - p. 177 15. Index - p. 195
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No hay ficha técnica disponible