We present a model of simulated evolutionary development on the basis of cells as building blocks for growth. In this model, cells grow and interact in a three-dimensional (3D) environment, where development is controlled by a simple genome. Using cell-cell interaction such as differential adhesion, cells sort and form complex arrangements. This developmental process is evolved using a multi-objective evolutionary algorithm to achieve lightweight and stable material with a complex inner structure
Schramm L, Jin Y, Sendhoff B. Evolution and Analysis of Genetic Networks for Stable Cellular Growth ...
Laboratory synthesis of an elementary biological cell from isolated components may aid in understand...
Form generation or morphogenesis has a crucial role in both artificial and natural development. This...
We present a model of simulated evolutionary development on the basis of cells as building blocks fo...
Cell pattern formation has an important role in both artificial and natural development. This paper ...
This paper presents a new model for the development of artificial creatures from a single cell. The ...
This paper presents a new model for the development of artificial creatures from a single cell. The ...
We present the use of a new computationaly efficient 3D physics model for the simulation of cells in...
This thesis focuses on the evolution of the development of simulated organisms, where a biologically...
This paper describes an evolutionary process which produces dynamic biologic-like patterns. Simulati...
Steiner T, Trommler J, Brenn M, Jin Y, Sendhoff B. Global shape with morphogen gradients and motile ...
<div><p>Geometric and mechanical properties of individual cells and interactions among neighboring c...
Over the past twenty years, many techniques have appeared to simulate artificial creatures at differ...
A wide variety of modeling problems can be approached by dividing the problem into a spatial arrange...
We demonstrate that many collective phenomena in multi-cellular systems can be explained by models i...
Schramm L, Jin Y, Sendhoff B. Evolution and Analysis of Genetic Networks for Stable Cellular Growth ...
Laboratory synthesis of an elementary biological cell from isolated components may aid in understand...
Form generation or morphogenesis has a crucial role in both artificial and natural development. This...
We present a model of simulated evolutionary development on the basis of cells as building blocks fo...
Cell pattern formation has an important role in both artificial and natural development. This paper ...
This paper presents a new model for the development of artificial creatures from a single cell. The ...
This paper presents a new model for the development of artificial creatures from a single cell. The ...
We present the use of a new computationaly efficient 3D physics model for the simulation of cells in...
This thesis focuses on the evolution of the development of simulated organisms, where a biologically...
This paper describes an evolutionary process which produces dynamic biologic-like patterns. Simulati...
Steiner T, Trommler J, Brenn M, Jin Y, Sendhoff B. Global shape with morphogen gradients and motile ...
<div><p>Geometric and mechanical properties of individual cells and interactions among neighboring c...
Over the past twenty years, many techniques have appeared to simulate artificial creatures at differ...
A wide variety of modeling problems can be approached by dividing the problem into a spatial arrange...
We demonstrate that many collective phenomena in multi-cellular systems can be explained by models i...
Schramm L, Jin Y, Sendhoff B. Evolution and Analysis of Genetic Networks for Stable Cellular Growth ...
Laboratory synthesis of an elementary biological cell from isolated components may aid in understand...
Form generation or morphogenesis has a crucial role in both artificial and natural development. This...