All multicellular living beings are created from a single cell. A developmental process, called embryogenesis, takes this first fertilized cell down a complex path of reproduction, migration and specialization into a complex organism adapted to its environment. In most cases, the first steps of the embryogenesis are taking place into a protected environment such as in an egg or in-utero. Starting from this observation, we propose a new approach to the generation of real robots, strongly inspired by living systems. Our robots are composed of tens of specialized cells, grown from a single cell using a bio-inspired virtual developmental process. Virtual cells, controlled by gene regulatory networks, divide, migrate and specialize to produce th...
Natural complex adaptive systems show many examples of self-organization and decentralization, such ...
We show how a biologically inspired model of multicellular development combined with a simulated evo...
Embryogenesis is a fascinating mystery. How a single fertilized egg, the zygote, reads out its genet...
All multicellular living beings are created from a single cell. A developmental process, called embr...
All multicellular living beings are created from a single cell. A developmental process, called embr...
Engineers are torn between an attitude of strong design and dreams of autonomous devices. They want ...
Abstract—We propose a new scenario for the evolution of robot morphologies based on an egg metaphor....
Summary. Exploding growth in computational systems forces us to gradually re-place rigid design and ...
International audienceThis paper presents a new model for the development of artificial creatures fr...
Bioengineering can address many important needs, from transformative biomedicine to environmental re...
Over the past twenty years, many techniques have appeared to simulate artificial creatures at differ...
This paper presents a new model for the development of artificial creatures from a single cell. The ...
Artificial Embryogeny (AE) can be described as the use of a dynamical system as a mid-step in a desi...
Developmental biology seeks to understand how organisms are constructed. Development is a set of ver...
Artificial Embryogeny (AE) can be described as the use of a dynamical system as a mid-step in a desi...
Natural complex adaptive systems show many examples of self-organization and decentralization, such ...
We show how a biologically inspired model of multicellular development combined with a simulated evo...
Embryogenesis is a fascinating mystery. How a single fertilized egg, the zygote, reads out its genet...
All multicellular living beings are created from a single cell. A developmental process, called embr...
All multicellular living beings are created from a single cell. A developmental process, called embr...
Engineers are torn between an attitude of strong design and dreams of autonomous devices. They want ...
Abstract—We propose a new scenario for the evolution of robot morphologies based on an egg metaphor....
Summary. Exploding growth in computational systems forces us to gradually re-place rigid design and ...
International audienceThis paper presents a new model for the development of artificial creatures fr...
Bioengineering can address many important needs, from transformative biomedicine to environmental re...
Over the past twenty years, many techniques have appeared to simulate artificial creatures at differ...
This paper presents a new model for the development of artificial creatures from a single cell. The ...
Artificial Embryogeny (AE) can be described as the use of a dynamical system as a mid-step in a desi...
Developmental biology seeks to understand how organisms are constructed. Development is a set of ver...
Artificial Embryogeny (AE) can be described as the use of a dynamical system as a mid-step in a desi...
Natural complex adaptive systems show many examples of self-organization and decentralization, such ...
We show how a biologically inspired model of multicellular development combined with a simulated evo...
Embryogenesis is a fascinating mystery. How a single fertilized egg, the zygote, reads out its genet...