The Artificial Reaction Network (ARN) is a Cell Signalling Network inspired connectionist representation belonging to the branch of A-Life known as Artificial Chemistry. Its purpose is to represent chemical circuitry and to explore computational properties responsible for generating emergent high-level behaviour associated with cells. In this paper, the computational mechanisms involved in pattern recognition and spatio-temporal pattern generation are examined in robotic control tasks. The results show that the ARN has application in limbed robotic control and computational functionality in common with Artificial Neural Networks. Like spiking neural models, the ARN can combine pattern recognition and complex temporal control functionality i...
This thesis investigates the functionality of the units used in connectionist Artificial Intelligenc...
Prompted by recent advancements in synthetic biology, we highlight the possible use of bio-chemical ...
Prompted by recent advancements in synthetic biology, we highlight the possible use of bio-chemical ...
The Artificial Reaction Network (ARN) is a bio-inspired connectionist paradigm based on the emerging...
In this paper we present a novel method of simulating cellular intelligence, the Artificial Reaction...
The Artificial Reaction Network (ARN) is an Artificial Chemistry inspired by Cell Signalling Network...
The Artificial Reaction Network (ARN) is a bio-inspired connectionist paradigm based on the emerging...
The Artificial Reaction Network (ARN) is a cell signaling network inspired representation belonging ...
The Artificial Reaction Network (ARN) is an Artificial Chemistry representation inspired by cell sig...
Connectionist models are usually based on artificial neural networks. However, there is another rout...
Connectionist approaches to Artificial Intelligence are almost always based on Artificial Neural Net...
Cell Signalling Networks (CSNs) are complex biochemical networks responsible for the coordination of...
Cell Signalling Networks (CSNs) are complex biochemical networks responsible for the coordination of...
Cell Signalling Networks (CSNs) are complex biochemical networks responsible for the coordination of...
Cell Signalling Networks (CSNs) are complex biochemical networks responsible for the coordination of...
This thesis investigates the functionality of the units used in connectionist Artificial Intelligenc...
Prompted by recent advancements in synthetic biology, we highlight the possible use of bio-chemical ...
Prompted by recent advancements in synthetic biology, we highlight the possible use of bio-chemical ...
The Artificial Reaction Network (ARN) is a bio-inspired connectionist paradigm based on the emerging...
In this paper we present a novel method of simulating cellular intelligence, the Artificial Reaction...
The Artificial Reaction Network (ARN) is an Artificial Chemistry inspired by Cell Signalling Network...
The Artificial Reaction Network (ARN) is a bio-inspired connectionist paradigm based on the emerging...
The Artificial Reaction Network (ARN) is a cell signaling network inspired representation belonging ...
The Artificial Reaction Network (ARN) is an Artificial Chemistry representation inspired by cell sig...
Connectionist models are usually based on artificial neural networks. However, there is another rout...
Connectionist approaches to Artificial Intelligence are almost always based on Artificial Neural Net...
Cell Signalling Networks (CSNs) are complex biochemical networks responsible for the coordination of...
Cell Signalling Networks (CSNs) are complex biochemical networks responsible for the coordination of...
Cell Signalling Networks (CSNs) are complex biochemical networks responsible for the coordination of...
Cell Signalling Networks (CSNs) are complex biochemical networks responsible for the coordination of...
This thesis investigates the functionality of the units used in connectionist Artificial Intelligenc...
Prompted by recent advancements in synthetic biology, we highlight the possible use of bio-chemical ...
Prompted by recent advancements in synthetic biology, we highlight the possible use of bio-chemical ...