This article presents a project that aims at understanding the neural circuitry controlling salamander locomotion, and developing an amphibious salamander-like robot capable of replicating its bimodal locomotion, namely swimming and terrestrial walking. The controllers of the robot are central pattern generator models inspired by the salamander’s locomotion control network. The goal of the project is twofold: (1) to use robots as tools for gaining a better understanding of locomotion control in vertebrates and (2) to develop new robot and control technologies for developing agile an
Many bio-inspired robots have been developed so far after careful investigation of animals' loc...
The research was attempted to mimic the locomotion of the salamander, which is found to be one of th...
The research was attempted to mimic the locomotion of the salamander, which is found to be one of th...
This article presents a project that aims at understanding the neural circuitry controlling salamand...
Bicanski A, Ryczko D, Knuesel J, et al. Decoding the mechanisms of gait generation in salamanders by...
Salamanders have captured the interest of biologists and roboticists for decades because of their ab...
This article presents a project that aims at constructing a biologically inspired amphibious snake-l...
In this work we describe an autonomous soft-bodied robot that is both self-contained and capable of ...
Animals have evolved to occupy every environment where one might wish to operate a robot, save outer...
A milestone in vertebrate evolution, the transition from water to land, owes its success to the deve...
Here, we investigate the role of sensory feedback in gait generation and transition by using a three...
Howdoneural systemsprocess sensory information to control locomotion?Theweakly electric knifefishEig...
The transition from aquatic to terrestrial locomotion was a key development in vertebrate evolution....
Bio-inspired robotics aims to develop robotic systems that mimic or are inspired by biological syste...
A literature review on the optimization of legged robots Manuel Fernando Silva and JA Tenreiro Macha...
Many bio-inspired robots have been developed so far after careful investigation of animals' loc...
The research was attempted to mimic the locomotion of the salamander, which is found to be one of th...
The research was attempted to mimic the locomotion of the salamander, which is found to be one of th...
This article presents a project that aims at understanding the neural circuitry controlling salamand...
Bicanski A, Ryczko D, Knuesel J, et al. Decoding the mechanisms of gait generation in salamanders by...
Salamanders have captured the interest of biologists and roboticists for decades because of their ab...
This article presents a project that aims at constructing a biologically inspired amphibious snake-l...
In this work we describe an autonomous soft-bodied robot that is both self-contained and capable of ...
Animals have evolved to occupy every environment where one might wish to operate a robot, save outer...
A milestone in vertebrate evolution, the transition from water to land, owes its success to the deve...
Here, we investigate the role of sensory feedback in gait generation and transition by using a three...
Howdoneural systemsprocess sensory information to control locomotion?Theweakly electric knifefishEig...
The transition from aquatic to terrestrial locomotion was a key development in vertebrate evolution....
Bio-inspired robotics aims to develop robotic systems that mimic or are inspired by biological syste...
A literature review on the optimization of legged robots Manuel Fernando Silva and JA Tenreiro Macha...
Many bio-inspired robots have been developed so far after careful investigation of animals' loc...
The research was attempted to mimic the locomotion of the salamander, which is found to be one of th...
The research was attempted to mimic the locomotion of the salamander, which is found to be one of th...