One of the major challenges in tissue engineering is the translation of biological knowledge on complex cell and tissue behavior into a predictive and robust engineering process. Mastering this complexity is an essential step towards clinical applications of tissue engineering. This volume discusses computational modeling tools that allow studying the biological complexity in a more quantitative way. More specifically, computational tools can help in: (i) quantifying and optimizing the tissue engineering product, e.g. by adapting scaffold design to optimize micro-environmental signals or by...
One of the major challenges in tissue engineering is the translation of biological knowledge on complex cell and tissue behavior into a predictive and...
This book reviews the state-of-the-art in multiscale computer modeling, examining both its accomplishments and its challenges. Helps connect traditional biomedical engineering at the organ and tissue scale with cellular and molecular bioengineering.
This book reviews the state-of-the-art in multiscale computer modeling, examining both its accomplishments and its challenges. Helps connect tradition...
This volume describes the state-of-knowledge in the study of the relationships between mechanical loading states in tissues and common pathophysiologies related to increase in mass of adipose tissues and/or hyperglycemia which eventually lead to obesity, diabetes, insulin resistance, hyperlipidemia, metabolic inflammations, certain types of cancer and other related diseases.
There appears to be an interaction between the loading states in tissues and cells and these chronic conditions, as well as with factors such as age, gender and genetics of the individual. Bioengineering has made...
This volume describes the state-of-knowledge in the study of the relationships between mechanical loading states in tissues and common pathophysiol...
This book is intended for graduate students and researchers active in the field of computational modeling of biomedical processes who seek to acquaint themselves with the different ways in which to study the parameter space of their model as well as its overall behavior.
This book is intended for graduate students and researchers active in the field of computational modeling of biomedical processes who seek to acquaint...
The book presents a state-of-the-art overview of biomechanical and mechanobiological modeling and simulation of soft biological tissues. Seven well-known scientists working in that particular field discuss topics such as biomolecules, networks and cells as well as failure, multi-scale, agent-based, bio-chemo-mechanical and finite element models appropriate for computational analysis. Applications include arteries, the heart, vascular stents and valve implants as well as adipose, brain, collagenous and engineered tissues. The mechanics of the whole cell and sub-cellular components as well...
The book presents a state-of-the-art overview of biomechanical and mechanobiological modeling and simulation of soft biological tissues. Seven well-kn...
This book presents regenerative strategies for the treatment of knee joint disabilities. The book is composed of four main sections totaling 19 chapters which review the current knowledge on the clinical management and preclinical regenerative strategies.
This book presents regenerative strategies for the treatment of knee joint disabilities. The book is composed of four main sections totaling 19 chapt...
This book surveys the latest vascular therapies, including small-diameter tissue-regenerative grafts, stent grafts and endovascular stents, prosthetic heart valves, and implantable cardiac pacemakers. Discusses cardiac diseases, advanced modelling and more.
This book surveys the latest vascular therapies, including small-diameter tissue-regenerative grafts, stent grafts and endovascular stents, prosthetic...