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Patient-Specific Modeling of the Cardiovascular System

160,49 €*

Sofort verfügbar, Lieferzeit: 1-3 Tage

Produktnummer: 18da9ff3e72dcd48849796cc8f0f60f222
Themengebiete: Computational Biology Heart Kerckhoffs Modeling calculus cardiovascular computed tomography (CT) diagnosis numerical methods physiology
Veröffentlichungsdatum: 09.09.2010
EAN: 9781441966902
Sprache: Englisch
Seitenzahl: 240
Produktart: Gebunden
Herausgeber: Kerckhoffs, Roy C.P.
Verlag: Springer US
Untertitel: Technology-Driven Personalized Medicine
Produktinformationen "Patient-Specific Modeling of the Cardiovascular System"
Peter Hunter Computational physiology for the cardiovascular system is entering a new and exciting phase of clinical application. Biophysically based models of the human heart and circulation, based on patient-specific anatomy but also informed by po- lation atlases and incorporating a great deal of mechanistic understanding at the cell, tissue, and organ levels, offer the prospect of evidence-based diagnosis and treatment of cardiovascular disease. The clinical value of patient-specific modeling is well illustrated in application areas where model-based interpretation of clinical images allows a more precise analysis of disease processes than can otherwise be achieved. For example, Chap. 6 in this volume, by Speelman et al. , deals with the very difficult problem of trying to predict whether and when an abdominal aortic aneurysm might burst. This requires automated segmentation of the vascular geometry from magnetic re- nance images and finite element analysis of wall stress using large deformation elasticity theory applied to the geometric model created from the segmentation. The time-varying normal and shear stress acting on the arterial wall is estimated from the arterial pressure and flow distributions. Thrombus formation is identified as a potentially important contributor to changed material properties of the arterial wall. Understanding how the wall adapts and remodels its material properties in the face of changes in both the stress loading and blood constituents associated with infl- matory processes (IL6, CRP, MMPs, etc.

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