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Titlebook: Computational Cardiovascular Mechanics; Modeling and Applica Julius M. Guccione,Ghassan S. Kassab,Mark B. Ratcl Book 2010 Springer-Verlag U

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楼主: Lampoon
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Electron correlation in the seventies,ogies, it is increasingly feasible to apply patient-specific modeling to guide and predict the response to CRT. In this chapter we discuss strategies as to how computational modeling of CRT could be used to try to predict the outcome of this therapy patient-specifically.
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Geometrical Features of the Vascular System of boundary value problems in biomechanics and is intimately related to function and physiology. Here, we shall provide an overview of the geometric features of the vascular system with special emphasis on the vascular system of the heart (coronary circulation).
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Governing Equations of Blood Flow and Respective Numerical Methodstures. This chapter outlines the field equations for blood flow and some of the approaches for numerical solutions. Specifically, the text focuses on the finite difference (FD) and finite element (FE) methods with applications to blood flow dynamics in coronary arteries.
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Computational Modeling of Heart Failure with Application to Cardiac Resynchronization Therapyogies, it is increasingly feasible to apply patient-specific modeling to guide and predict the response to CRT. In this chapter we discuss strategies as to how computational modeling of CRT could be used to try to predict the outcome of this therapy patient-specifically.
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Thermochemistry of the chemical bond,ly to provide new insights into cardiac electrical activation during heart failure and generate new hypotheses about multi-system coupling in the heart. The objective of this chapter is to provide an overview of the history, theory, and clinical use of electrical heart models with applications to heart failure.
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Computational Models of Cardiac Electrical Activationly to provide new insights into cardiac electrical activation during heart failure and generate new hypotheses about multi-system coupling in the heart. The objective of this chapter is to provide an overview of the history, theory, and clinical use of electrical heart models with applications to heart failure.
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Surgical Left Ventricular Remodeling Procedureslly 3-D model of the infarcted LV created using echocardiography or MRI to optimize the design of the surgical procedure or device. This chapter is concerned with brief descriptions of the studies from our laboratory that provide the best examples of these two approaches.
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