Bone remodelling, as many biological phenomena, is inherently multi-scale, i.e. it is characterised by interactions involving different scales at the same time. At this aim, we exploit the Complex Automata paradigm and the BioShape 3D spatial simulator respectively (i) for describing the bone remodelling process in terms of a 2-scale aggregation of uniform Cellular Automata coupled by a well-established composition pattern, and (ii) for executing them in a uniform and integrated way in terms of shapes equipped with perception and movement capabilities. On the one hand, the proposed model confirms the high expressiveness degree of Complex Automata to describe multi-scale phenomena. On the other hand, the possibility of executing such a mod...
The purpose of this paper is to emphasize the need for more complex bone remodeling platforms that a...
AbstractExisting approaches in multiscale (MS) science and engineering have evolved from a range of ...
The simulation and visualization of biological system models is becoming more and more important bot...
Bone remodelling, as many biological phenomena, is inherently multi-scale, i.e. it is characterised...
AbstractMany biological phenomena are inherently multiscale, i.e. they are characterised by interact...
Many biological phenomena are inherently multiscale, i.e. they are characterised by interactions inv...
Many biological phenomena are inherently multiscale, i.e.\ they are characterized by interactions in...
Existing approaches in multiscale (MS) science and engineering have evolved from a range of ideas an...
Many biological phenomena are inherently multiscale, i.e. they are characterized by interactions in-...
Many biological phenomena are inherently multiscale, i.e. they are characterised by interactions in-...
BioShape [1, 2] is a uniform, particle-based, 3D space- and geometry-oriented multiscale modelling a...
Many biological phenomena are inherently multiscale (MS) - i.e. they are characterised by interactio...
2 In this paper we present the foundation of a unified, object-oriented, three-dimensional (3D) biom...
Bone remodeling is the biological process through which old bone tissue is transformed into new bone...
The purpose of this paper is to emphasize the need for more complex bone remodeling platforms that a...
AbstractExisting approaches in multiscale (MS) science and engineering have evolved from a range of ...
The simulation and visualization of biological system models is becoming more and more important bot...
Bone remodelling, as many biological phenomena, is inherently multi-scale, i.e. it is characterised...
AbstractMany biological phenomena are inherently multiscale, i.e. they are characterised by interact...
Many biological phenomena are inherently multiscale, i.e. they are characterised by interactions inv...
Many biological phenomena are inherently multiscale, i.e.\ they are characterized by interactions in...
Existing approaches in multiscale (MS) science and engineering have evolved from a range of ideas an...
Many biological phenomena are inherently multiscale, i.e. they are characterized by interactions in-...
Many biological phenomena are inherently multiscale, i.e. they are characterised by interactions in-...
BioShape [1, 2] is a uniform, particle-based, 3D space- and geometry-oriented multiscale modelling a...
Many biological phenomena are inherently multiscale (MS) - i.e. they are characterised by interactio...
2 In this paper we present the foundation of a unified, object-oriented, three-dimensional (3D) biom...
Bone remodeling is the biological process through which old bone tissue is transformed into new bone...
The purpose of this paper is to emphasize the need for more complex bone remodeling platforms that a...
AbstractExisting approaches in multiscale (MS) science and engineering have evolved from a range of ...
The simulation and visualization of biological system models is becoming more and more important bot...