The nervous systems of animals evolved to exert dynamic control of behavior in response to the needs of the animal and changing signals from the environment. To understand the mechanisms of dynamic control, we need a means of predicting how individual neural and body elements will interact to produce the performance of the entire system. We have developed a neuromechanical application named AnimatLab that addresses this problem through simulation. A computational model of a body and nervous system can be constructed from simple components and situated in a virtual world for testing. Simulations and live experiments were used to investigate questions about locust jumping. The neural circuitry and biomechanics of kicking in locust...
Locusts generally live and move in complex environments including different kind of substrates, ran...
Journal ArticleThe firing patterns of visual neurons tracking approaching objects need to be transla...
Locusts keep their bodies moving in a straight line during the takeoff and maintain the body stable ...
We have developed a software toolkit, AnimatLab, which allows researchers to build and test virtual ...
The biomechanical and neural components that underlie locust jumping have been extensively studied [...
During the adult reproductive stage, female locusts (Schistocerca americana) experience multiple ovi...
Ontogenetic locomotion research focuses on the evolution of locomotion behavior in different develop...
Locusts are known for their ability to jump large distances to avoid predation. The jump also serves...
The Orthoptera are a diverse insect order well known for their locomotive capabilities. To jump, the...
Survival is one of the highest priorities of any animal. Interaction in the environment with conspec...
Zakotnik J, Page KL, Dürr V, Matheson T. Biomechanics and neural acitivity underlying targeted limb ...
Locusts generally live and move in complex environments including different kind of substrates, ran...
Journal ArticleThe firing patterns of visual neurons tracking approaching objects need to be transla...
Locusts keep their bodies moving in a straight line during the takeoff and maintain the body stable ...
We have developed a software toolkit, AnimatLab, which allows researchers to build and test virtual ...
The biomechanical and neural components that underlie locust jumping have been extensively studied [...
During the adult reproductive stage, female locusts (Schistocerca americana) experience multiple ovi...
Ontogenetic locomotion research focuses on the evolution of locomotion behavior in different develop...
Locusts are known for their ability to jump large distances to avoid predation. The jump also serves...
The Orthoptera are a diverse insect order well known for their locomotive capabilities. To jump, the...
Survival is one of the highest priorities of any animal. Interaction in the environment with conspec...
Zakotnik J, Page KL, Dürr V, Matheson T. Biomechanics and neural acitivity underlying targeted limb ...
Locusts generally live and move in complex environments including different kind of substrates, ran...
Journal ArticleThe firing patterns of visual neurons tracking approaching objects need to be transla...
Locusts keep their bodies moving in a straight line during the takeoff and maintain the body stable ...