This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being developed for embodied cognition and neuroscience research. The rodent animat is 150mm x 80mm x 70mm and has a different drive, visual, proximity, and odometry sensors, x86 PC, and LCD interface. The rat animat has a bio-inspired rodent navigation and mapping system called RatSLAM which demonstrates the capabilities of the platform and framework. A case study is presented of the robot's ability to learn the spatial layout of a figure of eight laboratory environment, including its ability to close physical loops based on visual input and odometry. A firing field plot similar to rodent 'non-conjunctive grid cells' is shown by plotting the activity of...
Biorobotics has the potential to provide an integrated understanding from neural systems to behavior...
Rats are superior to the most advanced robots when it comes to creating and exploiting spatial repre...
In theory, an autonomous mobile robot’s ability to navigate with greater intelligence and flexibilit...
This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being develo...
This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being develo...
This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being develo...
This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being develo...
The paper discusses robot navigation from biological inspiration. The authors sought to build a mode...
The paper discusses robot navigation from biological inspiration. The authors sought to build a mode...
The paper discusses robot navigation from biological inspiration. The authors sought to build a mode...
This paper presents the iRat (intelligent Rat animat technology), a robot designed for robotic and n...
A unique roving robot navigational system is presented here, which is inspired by the rat’s navigati...
More is known of the navigation skills of mice and rats than of any other vertebrate. The discovery ...
This thesis investigates the implementation of a biologically plausible navigation system on a mobil...
Biorobotics has the potential to provide an integrated understanding from neural systems to behavior...
Biorobotics has the potential to provide an integrated understanding from neural systems to behavior...
Rats are superior to the most advanced robots when it comes to creating and exploiting spatial repre...
In theory, an autonomous mobile robot’s ability to navigate with greater intelligence and flexibilit...
This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being develo...
This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being develo...
This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being develo...
This paper presents a new rat animat, a rat-sized bio-inspired robot platform currently being develo...
The paper discusses robot navigation from biological inspiration. The authors sought to build a mode...
The paper discusses robot navigation from biological inspiration. The authors sought to build a mode...
The paper discusses robot navigation from biological inspiration. The authors sought to build a mode...
This paper presents the iRat (intelligent Rat animat technology), a robot designed for robotic and n...
A unique roving robot navigational system is presented here, which is inspired by the rat’s navigati...
More is known of the navigation skills of mice and rats than of any other vertebrate. The discovery ...
This thesis investigates the implementation of a biologically plausible navigation system on a mobil...
Biorobotics has the potential to provide an integrated understanding from neural systems to behavior...
Biorobotics has the potential to provide an integrated understanding from neural systems to behavior...
Rats are superior to the most advanced robots when it comes to creating and exploiting spatial repre...
In theory, an autonomous mobile robot’s ability to navigate with greater intelligence and flexibilit...