Cardiovascular soft tissue mechanics

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In collaboration with Dr. Sinisa Vukelic in ME and Dr.

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Roshan Shah in DOS, he is currently developing a laser treatment modality for crosslinking osteoarthritic cartilage, for the purpose of strengthening this tissue in early stages of this degenerative joint disease. Since then he has held positions as a professor at Catholic University of Brescia, a professor in mathematics at University of Minnesota in Minneapolis, and director of the Chair of Modeling and Scientific Computing at EPFL from until the end of He has authored 25 books and more than papers.

Since Prof. Steinmann's research interests are mainly in the areas of geometrically non-linear continuum mechanics and continuum physics with a strong focus on computational engineering.

He is a Fellow of the Michael E. He has made contributions to various aspects of mechanics and thermodynamics, as well as in the areas of biomedicine, traffic flow modeling, control, and resource allocation problems.

  • Cells, Tissues, and Organs.
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  • Cardiovascular Solid Mechanics;
  • EPSRC Centre for Multiscale Soft Tissue Mechanics - with application to heart & cancer!
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Calcific Aortic Valve Disease, bicuspid aortic valve and transcatheter aortic valve replacement. This session deals with biomechanical and mechano-biology aspects of calcific aortic valve disease CAVD , including in bicuspid aortic valve BAV , and their treatment by transcatheter aortic valve replacement TAVR. The session is open for talks on computational models of tissue structure mechanics , hemodynamics fluid dynamics and their fluid structure interaction FSI. Over the past decade, computational modeling in cardiac mechanics has been a powerful tool to understand and predict the behavior of the heart, its components, and their function in health and disease.

We have contributed talks on image-based computational modeling of myocardium function and heart valves, multi-scale methods of chemo-electro-mechanics, disease-specific modeling, and state-of-the-art methods for in vivo, in vitro, and in silico testing and characterization of the heart and its structures.

Recent advances in medical imaging and computational modeling techniques now provide the necessary tools to construct patient-specific models to predict the hemodynamic environment across numerous vascular territories.

Cardiovascular Solid Mechanics - Cells, Tissues, and Organs | Jay D. Humphrey | Springer

This session will highlight progress made to integrate patient-specific geometries and in vivo hemodynamics measures to elucidate the role of fluid mechanics in cardiovascular pathologies and how modeling efforts can be translated to the clinic to guide patient management. Computational methods have allowed exploration of the nuances of orthopaedic implant system design, hardware selection, component placement, and the interactions of these factors.

This session will highlight current techniques used in optimizing the application of orthopaedic implants and their relationship to human anatomy and movement. Tissue Engineering is a multidisciplinary field that combines efforts from biology, engineering and material science methods towards the development of biological substitutes to restore, maintain, or improve tissue functions.

Soft Tissue Mechanics

Computational methods for tissue engineering have been developed to study diverse tissue engineering issues. For this special session, submissions are invited on computer models to analyze and design scaffolds, to assist in the fabrication of new scaffolds and tissues, to understand the inter-relationships between scaffolds and cell attachment, proliferation and differentiation and to describe the tissue regeneration process and vascularization. In this session, top researchers in the field will present and discuss their outstanding findings regarding computational spine biomechanics.

Topics of the talks will focus on mechanics of fracture, osteoporosis, and surgical treatments for trauma and degenerative diseases. It covers a significant field of research within engineering and biomedicine in general. The session will encompass the following topics: Hard and soft tissue mechanics; Mechanical behaviors of dental materials, including alloys, polymer and ceramics; Computer methods on dental biomechanics; Imaging and image processing for dental research and clinical practice.

SofTMech Tissue Modelling Workshop A-Z report

This session will highlight approaches to modeling damage in soft tissue. Particular emphasis will be placed on experimental methods used to develop damage criteria. The Elastography Session will present recent advances in imaging techniques designed to measure mechanical properties from soft tissues and applications to the diagnosis and evaluation of different diseases and pathological conditions.

The underlying mechanisms by which these processes occur and how they differ in healthy and pathological states, however, remain to be elucidated. Thus, the purpose of this session is to showcase techniques to quantify tissue grow and remodelling in normal and pathological conditions in reproductive health including, but not limited to, pregnancy, the uterus and placenta, menopause, gynecologic diseases, pelvic floor disorders, and breast feeding. Growth and remodelling are the two components of the anelastic process of reorganisation of biological tissue internal structure in response to external stimuli.

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  • Biomechanics of Soft Tissue in Cardiovascular Systems.
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Topics include, but are not limited to, the differential geometric, multi-scale, computational and biological aspects of the process of growth-remodelling. Soft tissues are ubiquitous and play vital roles in our bodies. Buy eBook.

SofTMech Tissue Modelling Workshop A-Z report

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About this book This special volume of the Journal of Elasticity represents the first in a new p- gram dedicated to the occasional publication of collections of invited, reviewed papers of topical interest. Show all. Show next xx.