Biomechanics Of Coronary Atherosclerotic Plaque

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Biomechanics of Coronary Atherosclerotic Plaque: From Model to Patient, First Edition, is the first comprehensive text to focus on important biomechanical studies conducted in the last decade that have increased our understanding of coronary atherosclerotic plaque initiation, growth, and rupture, as well as improving the design of medical devices and clinical interventions, including surgical procedures. The book provides students, researchers, engineers, clinicians, and interventional cardiologists with an overview of the main topics related to the biomechanics of atherosclerosis, in a single volume written by several experts in the field. This volume is part of the Biomechanics of Living Organs book series. The biomechanics of human soft tissues and organs has been an emerging research field since the publication of Y.C. Fung's original book series in the 1990s. The publication of such books entirely dedicated to a specific biomechanical subject is necessary to advance scientific research in the field of biomechanics and to transfer important knowledge to future generations. Therefore, this series of volumes on the biomechanics of living organs has been created. This series began in July 2017 with the publication of a first volume on the fundamentals of Hyperelastic Constitutive Laws for Finite Element Modeling of Living Organs. The current volume on the Biomechanics of Coronary Atherosclerotic Plaque, is the latest in this new series. - Presents the main computational fluid dynamic studies performed, describing blood flow in healthy and pathological artery branches, including in coronary bifurcations - Highlights the correlation between plaque initiation regions and blood shear stress amplitude - Discusses the main biomechanical and mechanobiological models to highlight the importance of quantifying the residual and peak cap stresses and the presence of μ-calcifications to evaluate the risk of plaque rupture - Introduces the most recent intravascular imaging biomarker techniques (elastography, palpography and modulography)

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Genre : Science
Author :
Publisher : Academic Press
Release : 2020-03-15
File : 688 Pages
ISBN-13 : 9780128171967


Image Based Computational Approaches For Personalized Cardiovascular Medicine Improving Clinical Applicability And Reliability Through Medical Imaging And Experimental Data

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Genre : Science
Author : Selene Pirola
Publisher : Frontiers Media SA
Release : 2023-07-13
File : 202 Pages
ISBN-13 : 9782832529577


Vascular Biomechanics

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This textbook serves as a modern introduction to vascular biomechanics and provides the comprehensive overview of the entire vascular system that is needed to run successful vascular biomechanics simulations. It aims to provide the reader with a holistic analysis of the vascular system towards its biomechanical description and includes numerous fully through-calculated examples. Various topics covered include vascular system descriptions, vascular exchange, blood vessel mechanics, vessel tissue characterization, blood flow mechanics, and vascular tissue growth and remodeling. This textbook is ideally suited for students and researchers studying and working in classical and computational vascular biomechanics. The book could also be of interest to developers of vascular devices and experts working with the regulatory approval of biomedical simulations. Follows the principle of “learning by doing” and provides numerous fully through-calculated examples for active learning, immediate recall, and self-examination; Provides a holistic understanding of vascular functioning and the integration of information from different disciplines to enable students to use sophisticated numerical methods to simulate the response of the vascular system; Includes several case studies that integrate the presented material. Case studies address problems, such as the biomechanical rupture risk assessment of Abdominal Aortic Aneurysms, Finite Element analysis of structural and blood flow problems, the computation of wall stress and wall shear stress in the aorta.

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Genre : Sports & Recreation
Author : T. Christian Gasser
Publisher : Springer Nature
Release : 2022-02-14
File : 622 Pages
ISBN-13 : 9783030709662


Atherosclerotic Plaque Characterization Methods Based On Coronary Imaging

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Atherosclerotic Plaque Characterization Methods Based on Coronary Imaging provides a complete review of computer methods for atherosclerotic plaque reconstruction and characterization. The authors, with their expertise from biomedical engineering, computer science, and cardiology, offer a holistic view. The focus of the book is on the presentation of major imaging techniques, including their limitations. It includes details on the mechanical characterization and properties of plaques and appropriate constitutive models to describe the mechanical behavior of plaques. The authors explore the challenges of using multiple coronary imaging technologies, and provide the pros and cons of invasive vs. non-invasive techniques. Methods for plaque characterization and 3D reconstruction of coronary arteries using IVUS, OCT, and CT images are described. This book will help readers study new trends in image processing analysis and plaque characterization, implement automated plaque characterization methodologies, understand coronary imaging drawbacks, and comprehend 3 dimensional coronary artery and plaque reconstruction methods. - Describes the multimodality imaging techniques that are commonly used in the diagnosis of arterial diseases, including intravascular ultrasound, optical coherence tomography, angiography, computed tomography angiography, and magnetic resonance angiography - Discusses in-depth the computational methods which can be used for the detection of different plaque types - Explores plaque in 3D reconstruction methods and plaque modeling approaches

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Genre : Medical
Author : Lambros S Athanasiou
Publisher : Academic Press
Release : 2017-05-04
File : 235 Pages
ISBN-13 : 9780128051139


Insights In Coronary Artery Disease 2022

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Genre : Medical
Author : Turgay Celik
Publisher : Frontiers Media SA
Release : 2023-10-03
File : 214 Pages
ISBN-13 : 9782832535363


Multiscale Modeling To Tackle The Complexity Of Load Bearing Organ And Tissue Regulation

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Genre : Science
Author : Jerome Noailly
Publisher : Frontiers Media SA
Release : 2022-03-11
File : 317 Pages
ISBN-13 : 9782889746620


Computational Modeling For Assessing Coronary Artery Pathophysiology

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Genre : Medical
Author : Christos Bourantas
Publisher : Frontiers Media SA
Release : 2022-09-27
File : 133 Pages
ISBN-13 : 9782832500866


Computational Biomechanics For Medicine

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This book presents contributions from the MICCAI 2021 Computational Biomechanics for Medicine Workshop. "Computational Biomechanics for Medicine - towards translation and better patient outcomes” comprises papers accepted for the MICCAI Computational Biomechanics for Medicine Workshop held virtually in conjunction with Medical Image Computing and Computer Assisted Intervention conference 2021, based in Strasbourg. The content focuses on 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. This book details state-of-the-art progress in the above fields to researchers, students, and professionals.

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Genre : Technology & Engineering
Author : Poul M.F. Nielsen
Publisher : Springer Nature
Release : 2022-10-31
File : 195 Pages
ISBN-13 : 9783031093272


Computational Biomechanics For Ventricle Arterial Dysfunction And Remodeling In Heart Failure Volume Ii

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Genre : Science
Author : Yunlong Huo
Publisher : Frontiers Media SA
Release : 2023-01-09
File : 137 Pages
ISBN-13 : 9782832511190


Computational Biomechanics Of The Heart And Vasculature With Potential Clinical And Surgical Applications

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Genre : Science
Author : Dalin Tang
Publisher : Frontiers Media SA
Release : 2022-05-03
File : 373 Pages
ISBN-13 : 9782889760442