. 24/7 Space News .
Novel Salamander Robot Crawls Its Way Up The Evolutionary Ladder

The EPFL Salamander Robot walks down to the waters of Lake Geneva. Credit: Photograph by A. Badertscher, courtesy Biologically Inspired Robotics Group, EPFL
by Staff Writers
Lausanne, France (SPX) Mar 09, 2007
A group of European researchers has developed a spinal cord model of the salamander and implemented it in a novel amphibious salamander-like robot. The robot changes its speed and gait in response to simple electrical signals, suggesting that the distributed neural system in the spinal cord holds the key to vertebrates' complex locomotor capabilities.

In a paper appearing in the March 9, 2007 issue of the journal Science, scientists from the EPFL in Switzerland and the INSERM research center/University of Bordeaux in France introduce their robot, Salamandra Robotica. This four-legged yellow creature reveals a great deal about the evolution of vertebrate locomotion. It's also a vivid demonstration that robots can be used to test and verify biological concepts, and that very often nature herself offers ideal solutions for robotics design.

The researchers used a numerical model of the salamander's spinal cord to explore three fundamental issues related to this vertebrate's movement: what were the changes in the spinal cord that made it possible to evolve from aquatic to terrestrial locomotion? How are the limb and axial movements coordinated? And how is a simple electrical signal from the brain stem translated by the spinal cord into a change in gait?

Once they thought they had answers to these questions, the team implemented the model - a system of coupled oscillators representing the neural networks in the spinal cord - on a primitive salamander-like robot. Simple electrical signals, like the signals sent from the upper brain to the spinal cord, were sent wirelessly from a laptop to the robot. These signals were enough to cause the robot to change its speed and direction and change from walking to swimming. The model therefore provides a potential explanation - relevant for all four-legged organisms - of how agile locomotion is controlled by distributed neural mechanisms located in the spinal cord.

The robot serves here as a useful tool for neurobiology, explains EPFL professor Auke Ijspeert. "We used the robot to show that our model actually reflects reality.

The robot was very useful to validate that our model could effectively modulate speed, direction and gait - aspects that need a mechanical "body" to be properly evaluated - and also to verify that the generated movements are close to those of a real salamander."

This research may ultimately point to a way to gain better understanding of the more sophisticated circuits in the human spinal cord. If the control signals received by the spinal cord could be identified, perhaps it would be possible to re-initiate these by electrical stimulations in patients with spinal cord injuries.

And it's a vivid demonstration that biology offers unique ideas for robotics design. "Nature found a nice way of making a sophisticated circuit in the spinal cord and then controlling the muscles from there," notes Ijspeert. "It's a fantastic solution for coordinating multiple degrees of freedom in a simple distributed way." Robots that could change their speed, direction, and gait based on simple remote signals, like living organisms, would be extremely useful in search and rescue operations, for example.

Email This Article

Related Links
Ecole Polytechnique Federale de Lausanne
All about the robots on Earth and beyond!



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


Look Ma, No Hands, No Humans
Huntsville AL (SPX) Mar 06, 2007
It's the year 2020, and space has never been so busy. Picture this: In Earth orbit, a robotic maintenance ship skitters from one weather satellite to another, upgrading powerful optics that help meteorologists track dangerous storms. Four hundred thousand kilometers away, a cargo ferry arrives at the Moon. It spots an orbiting depot, makes its approach and mates flawlessly, offloading drill heads, solar panels and other supplies for a frontier outpost at the Moon's south pole.







  • NASA Budget Tucked Away For Now But Hard Decisions Only Deferred
  • Astronaut Fired A Month After Kidnap Attempt
  • Astrophysicist Hawking To Try Out Weightlessness
  • Impossible For Great Wall To Be Visible With Naked Eye From From Space

  • Early Mars Had Underground Water System
  • Rosetta Delivers Phobos Transit Animation And Sees Mars In Stereo
  • SpaceDev's Starsys Division Awarded Contract For NASA Mars Science Explorer Mission
  • First Test Of New Autonomous Capability On Mars Is Promising

  • Ariane 5 Mission Is A "Go"
  • Russia May Open New Space Launch Site
  • Hyundai To Build First South Korea Launch Pad
  • Construction Of Soyuz Launch Base In French Guiana Begins

  • Satellite Scientists Set To Descend On Hobart
  • CSIRO Imagery Shows Outer Great Barrier Reef At Risk From River Plumes
  • Scientists Gear Up For Envisat 2007 Symposium
  • ITT Passes Critical Design Review for GOES-R Advanced Baseline Imager

  • The Tip of the Iceberg
  • New Horizons Completes First Stage Of Long Journey To Pluto And Beyond
  • Pluto-Bound New Horizons Spacecraft Gets A Boost From Jupiter
  • Defining Planets

  • Gamma-Ray Burst Challenges Theory
  • NASA Mission Finds Link Between Big And Small Stellar Blasts
  • Full-Spectrum Study Of Small Patch Of Sky Yields Portrait Of Maturing Universe
  • Hubble Pans Across Heavens To Harvest 50,000 Evolving Galaxies

  • First Chinese Lunar Probe Assembled And Ready For Launch
  • Chinese Spacemen To Reach Moon In 15 Years
  • China To Launch Lunar Satellite Probe This Year
  • The Edge Of Luna Incognita By SMART-1

  • Raytheon To Pursue Air Force Upgrade For NextGen GPS Control Segment
  • Spirent Communications Announces Combined GPS Galileo Simulation System
  • ESA Award SSTL Contract To Build A Second GIOVE-A
  • Europe Moves To Safeguard Galileo Frequencies

  • The content herein, unless otherwise known to be public domain, are Copyright 1995-2006 - SpaceDaily.AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. ESA PortalReports are copyright European Space Agency. All NASA sourced material is public domain. Additionalcopyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by SpaceDaily on any Web page published or hosted by SpaceDaily. Privacy Statement