
Shoaling with Fish: Using Miniature Robotic Agents to Close the Interaction Loop with Groups of Zebrafish Danio rerio by Frank Bonnet
Robotic animals are nowadays developed for various types of research, such as bio-inspired robotics, biomimetics and animal behavior studies. More specifically, in the case of collective animal behavior research, the robotic device can interact with animals by generating and exploiting signals relevant for social behavior. Once perceived by the animal society as conspecific, these robots can become powerful tools to study the animal behaviors, as they can at the same time monitor the changes in behavior and influence the collective choices of the animal society.
In this book, we present novel robotized tools that can integrate shoals of fish in order to study their collective behaviors. We used the current state of the art on the zebrafish social behavior to define the specifications of the robots, and we performed stimuli analysis to improve their developments. Bio-inspired controllers were designed based on data extracted from experiments with zebrafish for the robots to mimic the zebrafish locomotion underwater.
Experiments involving mixed groups of fish and robots qualified the robotic system to be integrated among a zebrafish shoal and to be able to influence the collective decisions of the fish. These results are very promising for the field of animal-robot interaction studies, as we showed the effect of the robots in long-duration experiments and repetitively, with the same order of response from the animals.
-
Comparative Performance of US Econometric Models
-
Robotics Research
-
Ergonomics in Robotics: Advances and Innovations
-
Applied Guidance Methodologies for Off-road Vehicles
-
Robot Dynamic Manipulation
-
Reinforcement Learning of Bimanual Robot Skills
-
Wording Robotics
-
Human-Aware Robotics: Modeling Human Motor Skills for the Design, Planning and Control of a New Generation of Robotic Devices
-
Distributed Autonomous Robotic Systems
-
Self-Organizing Robots
-
Structure from Motion using the Extended Kalman Filter
-
Visual Perception and Robotic Manipulation
-
Stochastic Reactive Distributed Robotic Systems
-
Software Engineering for Experimental Robotics
-
Type Synthesis of Parallel Mechanisms
-
Cable-Driven Parallel Robots
-
Delft Pneumatic Bipeds
-
Incremental Learning for Motion Prediction of Pedestrians and Vehicles
-
Musical Robots and Interactive Multimodal Systems
-
Learning Motor Skills
-
FastSLAM
-
The DARPA Urban Challenge
-
Random Finite Sets for Robot Mapping & SLAM
-
Multiple Heterogeneous Unmanned Aerial Vehicles
-
The Human Hand as an Inspiration for Robot Hand Development
-
Algorithmic Foundations of Robotics VIII
-
Approaches to Probabilistic Model Learning for Mobile Manipulation Robots
-
Experimental Robotics IX
-
Algorithmic Foundations of Robotics IX
-
Robotic Systems for Handling and Assembly
-
Advances in Robotics Research: From Lab to Market
-
Analysis and Synthesis of Compliant Parallel MechanismsScrew Theory Approach
-
Cells and Robots
-
Visual Guidance of Unmanned Aerial Manipulators
-
Exoskeletons in Rehabilitation Robotics
-
The DARPA Robotics Challenge Finals: Humanoid Robots To The Rescue
-
Efficient Topology Estimation for Large Scale Optical Mapping
-
Field and Service Robotics
| SKU | Unavailable |
| ISBN 13 | 9783030167837 |
| ISBN 10 | 3030167836 |
| Title | Shoaling with Fish: Using Miniature Robotic Agents to Close the Interaction Loop with Groups of Zebrafish Danio rerio |
| Author | Frank Bonnet |
| Series | Springer Tracts In Advanced Robotics |
| Condition | Unavailable |
| Binding Type | Paperback |
| Publisher | Springer Nature Switzerland AG |
| Year published | 2020-08-14 |
| Number of pages | 169 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |





































