Locomotion of tetrapods on land adapted to different environments and needs resulting in a variety of different gait styles. However comparative analyses reveal common principles of limb movement control. Here we report that a kinematic synergy involving the planar covariation of limb segment motion holds in 54 different animal species (10 birds and 44 mammals), despite large differences in body size, mass (ranging from 30 g to 4 tonnes), limb configuration, and amplitude of movements. This kinematic synergy lies at the interface between the neural command signals output by locomotor pattern generators, the mechanics of the body center of mass and the external environment, and it may represent one neuromechanical principle conserved in evol...
Terrestrial animals are complex, high dimensional, dynamical systems. They have the ability to adap...
The rich repertoire of locomotor behaviors in quadrupedal animals requires flexible inter-limb and i...
The arboreal environment is complex and irregular and imposes significant constraints on the locomot...
Locomotion of tetrapods on land adapted to different environments and needs resulting in a variety o...
© 2020. Published by The Company of Biologists Ltd Comparative analyses of locomotion in tetrapods r...
In this paper, we demonstrated that interarticular coordination of terrestrial tetrapods emerges fro...
The rich repertoire of locomotor behaviors in quadrupedal animals requires flexible inter-limb and i...
The rich repertoire of locomotor behaviors in quadrupedal animals requires flexible inter-limb and i...
Comparative analyses of locomotion in tetrapods reveal two patterns of stride cycle variability. Tac...
Tardigrades must negotiate heterogeneous, fluctuating environments and accordingly utilize locomotiv...
Recent advances in integrative studies of locomotion have revealed several general principles. Energ...
Terrestrial animals must often negotiate heterogeneous, varying environments. Accordingly, their loc...
Despite the fact that locomotion may differ widely in mammals, common principles of kinematic contro...
Terrestrial animals are complex, high dimensional, dynamical systems. They have the ability to adap...
The rich repertoire of locomotor behaviors in quadrupedal animals requires flexible inter-limb and i...
The arboreal environment is complex and irregular and imposes significant constraints on the locomot...
Locomotion of tetrapods on land adapted to different environments and needs resulting in a variety o...
© 2020. Published by The Company of Biologists Ltd Comparative analyses of locomotion in tetrapods r...
In this paper, we demonstrated that interarticular coordination of terrestrial tetrapods emerges fro...
The rich repertoire of locomotor behaviors in quadrupedal animals requires flexible inter-limb and i...
The rich repertoire of locomotor behaviors in quadrupedal animals requires flexible inter-limb and i...
Comparative analyses of locomotion in tetrapods reveal two patterns of stride cycle variability. Tac...
Tardigrades must negotiate heterogeneous, fluctuating environments and accordingly utilize locomotiv...
Recent advances in integrative studies of locomotion have revealed several general principles. Energ...
Terrestrial animals must often negotiate heterogeneous, varying environments. Accordingly, their loc...
Despite the fact that locomotion may differ widely in mammals, common principles of kinematic contro...
Terrestrial animals are complex, high dimensional, dynamical systems. They have the ability to adap...
The rich repertoire of locomotor behaviors in quadrupedal animals requires flexible inter-limb and i...
The arboreal environment is complex and irregular and imposes significant constraints on the locomot...