Computational Biomechanics for Medicine
-15%
portes grátis
Computational Biomechanics for Medicine
New Approaches and New Applications
Nielsen, Poul M.F.; Wittek, Adam; Miller, Karol; Doyle, Barry
Springer International Publishing AG
10/2016
139
Mole
Inglês
9783319356068
15 a 20 dias
454
Descrição não disponível.
Preface.- New Approaches.- Vademecums for Real-Time Computational Surgery.- Data-Guided Growth and Remodeling Model of Abdominal Aortic Aneurysm Accounting for the Bio-Chemical Effects of Intraluminal Thrombus.- A Computer Simulation for 3D Vasculature-Based Oxygen Distribution and Tumor Growth.- Numerical Algorithm for Simulation of Soft Tissue Swelling and Shrinking in a Total Lagrangian Explicit Dynamics Framework.- Spatially Weighted Objective Function to Solve the Inverse Problem in Elasticity Iteratively.- Implementation of a Modified Moving Least Squares Approximation for Predicting Soft Tissue Deformation Using a Meshless Method.- New Applications.- Automatic Landmark Detection Using a Statistical Shape Modeling and Template Matching.- Mechanical Properties of Brain-Skull Interface in Compression.- Modeling the Deformation of the Human Cornea Produced by a Forced Air Pulse.- Biomechanical Modeling of the Respiratory System: Human Diaphragm and Thorax.- A Collective Approach forReconstructing 3D Fiber Arrangements in Virtual Musculoskeletal Soft Tissue Models.- Optimization of Acetabulum Reorientation in a Periacetabular Osteotomy (PAO) by Finite Element Simulation: a Preliminary Study.
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Computer Assisted Intervention;Image-guided Surgery;Injury Mechanism Analysis;MICCAI 2014;Medical Image Analysis;Medical Image Computing;Surgical Intervention Planning;Surgical Simulation
Preface.- New Approaches.- Vademecums for Real-Time Computational Surgery.- Data-Guided Growth and Remodeling Model of Abdominal Aortic Aneurysm Accounting for the Bio-Chemical Effects of Intraluminal Thrombus.- A Computer Simulation for 3D Vasculature-Based Oxygen Distribution and Tumor Growth.- Numerical Algorithm for Simulation of Soft Tissue Swelling and Shrinking in a Total Lagrangian Explicit Dynamics Framework.- Spatially Weighted Objective Function to Solve the Inverse Problem in Elasticity Iteratively.- Implementation of a Modified Moving Least Squares Approximation for Predicting Soft Tissue Deformation Using a Meshless Method.- New Applications.- Automatic Landmark Detection Using a Statistical Shape Modeling and Template Matching.- Mechanical Properties of Brain-Skull Interface in Compression.- Modeling the Deformation of the Human Cornea Produced by a Forced Air Pulse.- Biomechanical Modeling of the Respiratory System: Human Diaphragm and Thorax.- A Collective Approach forReconstructing 3D Fiber Arrangements in Virtual Musculoskeletal Soft Tissue Models.- Optimization of Acetabulum Reorientation in a Periacetabular Osteotomy (PAO) by Finite Element Simulation: a Preliminary Study.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.