The continuum mechanical treatment of biological growth and remodeling has attracted considerable attention over the past fifteen years. Many aspects of these problems are now well-understood, yet there remain areas in need of significant development from the standpoint of experiments, theory, and computation. In this perspective paper we review the state of the field and highlight open questions, challenges, and avenues for further development
The emergence of shapes in living matter is the final result of a series of complex interactions rel...
The present view of biological phenomena is based on a biochemical paradigm that development of livi...
The biomechanical modeling of growing tissues has recently become an area of intense interest. In pa...
The continuum mechanical treatment of biological growth and remodeling has attracted considerable at...
One of the most remarkable differences between classical engineering materials and living matter is...
Unlike common engineering materials, living matter can autonomously respond to environmental changes...
International audienceOne of the most remarkable differences between classical engineering materials...
One of the most remarkable differences between classical engineering materials and living matter is ...
This monograph presents a general mechanical theory for biological growth. It provides both a concep...
In contrast to inert systems, living biological systems have the advantage to adapt to their environ...
Remodeling and other evolving processes such as growth or morphogenesis are key factors in the evolu...
Unlike common engineering materials, living matter can autonomously respond to environmental changes...
ABSTRACT. Biology is becoming one of the most attractive fields of application of mathematics. The d...
XHYSICAL GROWTH is a biological process which involves rates, directions, and patterns of change and...
Living systems can grow, develop, adapt, and evolve. These phenomena are non-intuitive to traditiona...
The emergence of shapes in living matter is the final result of a series of complex interactions rel...
The present view of biological phenomena is based on a biochemical paradigm that development of livi...
The biomechanical modeling of growing tissues has recently become an area of intense interest. In pa...
The continuum mechanical treatment of biological growth and remodeling has attracted considerable at...
One of the most remarkable differences between classical engineering materials and living matter is...
Unlike common engineering materials, living matter can autonomously respond to environmental changes...
International audienceOne of the most remarkable differences between classical engineering materials...
One of the most remarkable differences between classical engineering materials and living matter is ...
This monograph presents a general mechanical theory for biological growth. It provides both a concep...
In contrast to inert systems, living biological systems have the advantage to adapt to their environ...
Remodeling and other evolving processes such as growth or morphogenesis are key factors in the evolu...
Unlike common engineering materials, living matter can autonomously respond to environmental changes...
ABSTRACT. Biology is becoming one of the most attractive fields of application of mathematics. The d...
XHYSICAL GROWTH is a biological process which involves rates, directions, and patterns of change and...
Living systems can grow, develop, adapt, and evolve. These phenomena are non-intuitive to traditiona...
The emergence of shapes in living matter is the final result of a series of complex interactions rel...
The present view of biological phenomena is based on a biochemical paradigm that development of livi...
The biomechanical modeling of growing tissues has recently become an area of intense interest. In pa...