Computational Biomechanics for Medicine Solid and Fluid Mechanics for the Benefit of Patients 1st edition by Karol Miller, Adam Wittek, Grand Joldes – Ebook PDF Instant Download/DeliveryISBN: 3030424282, 9783030424282
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Product details:
ISBN-10 : 3030424282
ISBN-13 : 9783030424282
Author: Karol Miller, Adam Wittek, Grand Joldes
Computational Biomechanics for Medicine: Solid and fluid mechanics for the benefit of patients contributions and papers from the MICCAI Computational Biomechanics for Medicine Workshop help in conjunction with Medical Image Computing and Computer Assisted Intervention conference (MICCAI 2019) in Shenzhen, China. The content is dedicated to research in the field of methods and applications of computational biomechanics to medical image analysis, image-guided surgery, surgical simulation, surgical intervention planning, disease prognosis and diagnostics, analysis of injury mechanisms, implant and prostheses design, as well as artificial organ design and medical robotics. These proceedings appeal to researchers, students and professionals in the field.
Computational Biomechanics for Medicine Solid and Fluid Mechanics for the Benefit of Patients 1st Table of contents:
Part I. Computational Solid Mechanics
Lung Tumor Tracking Based on Patient-Specific Biomechanical Model of the Respiratory System
Design of Auxetic Coronary Stents by Topology Optimization
Physics-Based Deep Neural Network for Real-Time Lesion Tracking in Ultrasound-Guided Breast Biopsy
An Improved Coarse-Grained Model to Accurately Predict Red Blood Cell Morphology and Deformability
Development of a Computational Modelling Platform for Patient-specific Treatment of Osteoporosis
Part II. Topics in Patient-Specific Computations
Towards Visualising and Understanding Patient-Specific Biomechanics of Abdominal Aortic Aneurysms
Pipeline for 3D Reconstruction of Lung Surfaces Using Intrinsic Features Under Pressure-Controlled Ventilation
A Flux-Conservative Finite Difference Scheme for Anisotropic Bioelectric Problems
A Fast Method of Virtual Stent Graft Deployment for Computer Assisted EVAR
Efficient GPU-Based Numerical Simulation of Cryoablation of the Kidney
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Tags: Computational Biomechanics, Medicine Solid, Fluid Mechanics, the Benefit of Patients, Karol Miller, Adam Wittek, Grand Joldes