We propose a neural information processing system obtained by re-purposing the function of a biological neural circuit model to govern simulated and real-world control tasks. Inspired by the structure of the nervous system of the soil-worm, C. elegans, we introduce ordinary neural circuits (ONCs), defined as the model of biological neural circuits reparameterized for the control of alternative tasks. We first demonstrate that ONCs realize networks with higher maximum flow compared to arbitrary wired networks. We then learn instances of ONCs to control a series of robotic tasks, including the autonomous parking of a real-world rover robot. For reconfiguration of the purpose of the neural circuit, we adopt a search-based optimization algorith...
Artificial neural networks for motor control usually adopt generic architectures like fully connecte...
When solving complex machine learning tasks, it is often more practical to let the agent find an ade...
The intelligent controlling mechanism of a typical mobile robot is usually a computer system. Some r...
In this paper, we design novel liquid time-constant recurrent neural networks for robotic control, i...
Fundamental aspects of biologically-inspired regulatory mechanisms are considered in a robotics cont...
My dissertation focuses on three research problems to investigate how the robot's behavior leads to ...
Modern approaches in machine learning and artificial intelligence are dominated by deep learning. Al...
This thesis explores diverse topics within computational neuroscience and machine learning. The work...
Abstract Neurorobots use accurate biological models of neurons to control the be-havior of biologica...
We develop an artificial neural circuit for contour tracking and navigation inspired by the chemotax...
This paper presents a simple yet biologicallygrounded model of the C. elegans neural circuit for f...
Highly efficient performance-resources trade-off of the biological brain is a motivation for researc...
Energy-efficient learning and control are becoming increasingly crucial for robots that solve comple...
A fundamental research question in neuroscience pertains to understanding how neural networks throug...
The Artificial Reaction Network (ARN) is a Cell Signalling Network inspired connectionist representa...
Artificial neural networks for motor control usually adopt generic architectures like fully connecte...
When solving complex machine learning tasks, it is often more practical to let the agent find an ade...
The intelligent controlling mechanism of a typical mobile robot is usually a computer system. Some r...
In this paper, we design novel liquid time-constant recurrent neural networks for robotic control, i...
Fundamental aspects of biologically-inspired regulatory mechanisms are considered in a robotics cont...
My dissertation focuses on three research problems to investigate how the robot's behavior leads to ...
Modern approaches in machine learning and artificial intelligence are dominated by deep learning. Al...
This thesis explores diverse topics within computational neuroscience and machine learning. The work...
Abstract Neurorobots use accurate biological models of neurons to control the be-havior of biologica...
We develop an artificial neural circuit for contour tracking and navigation inspired by the chemotax...
This paper presents a simple yet biologicallygrounded model of the C. elegans neural circuit for f...
Highly efficient performance-resources trade-off of the biological brain is a motivation for researc...
Energy-efficient learning and control are becoming increasingly crucial for robots that solve comple...
A fundamental research question in neuroscience pertains to understanding how neural networks throug...
The Artificial Reaction Network (ARN) is a Cell Signalling Network inspired connectionist representa...
Artificial neural networks for motor control usually adopt generic architectures like fully connecte...
When solving complex machine learning tasks, it is often more practical to let the agent find an ade...
The intelligent controlling mechanism of a typical mobile robot is usually a computer system. Some r...