In aquatic pedestrian locomotion the dynamics of terrestrial and aquatic environments are coupled. Here we study terrestrial running and aquatic punting locomotion of the marine-living crab Pachygrapsus marmoratus. We detected both active and passive phases of running and punting through the observation of crab locomotory behaviour in standardized settings and by three-dimensional kinematic analysis of its dynamic gaits using high-speed video cameras. Variations in different stride parameters were studied and compared. The comparison was done based on the dimensionless parameter the Froude number (Fr) to account for the effect of buoyancy and size variability among the crabs. The underwater spring-loaded inverted pendulum (USLIP) model bett...
The movements performed by the abdomen and tailfan during tailflipping in the sand crab Blepharipoda...
This paper presents the self-stabilisation features of a hopping gait during underwater legged locom...
This paper presents the self-stabilisation features of a hopping gait during underwater legged locom...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
Terrestrial walking has been well studied, but underwater walking has not. We use an underwater vers...
Terrestrial locomotion involving appendages has evolved independently in ver-tebrates and arthropods...
Aquatic organisms have to deal with different hydrodynamic regimes, depending on their size and spee...
Bioinspired robotics has experienced unprecedented advancements. Robots can now run, swim and fly. D...
Video analyses of crabs walking on smooth and rocky terrains when in air and when submerged in water...
The deep sea is the largest and at the same time least explored biome on Earth, but quantitative stu...
9 pages, 6 figures, 3 tablesThe deep sea is the largest and at the same time least explored biome on...
The movements performed by the abdomen and tailfan during tailflipping in the sand crab Blepharipoda...
This paper presents the self-stabilisation features of a hopping gait during underwater legged locom...
This paper presents the self-stabilisation features of a hopping gait during underwater legged locom...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
In aquatic pedestrial locomotion, the dynamics of terrestrial and aquatic environments are coupled. ...
Terrestrial walking has been well studied, but underwater walking has not. We use an underwater vers...
Terrestrial locomotion involving appendages has evolved independently in ver-tebrates and arthropods...
Aquatic organisms have to deal with different hydrodynamic regimes, depending on their size and spee...
Bioinspired robotics has experienced unprecedented advancements. Robots can now run, swim and fly. D...
Video analyses of crabs walking on smooth and rocky terrains when in air and when submerged in water...
The deep sea is the largest and at the same time least explored biome on Earth, but quantitative stu...
9 pages, 6 figures, 3 tablesThe deep sea is the largest and at the same time least explored biome on...
The movements performed by the abdomen and tailfan during tailflipping in the sand crab Blepharipoda...
This paper presents the self-stabilisation features of a hopping gait during underwater legged locom...
This paper presents the self-stabilisation features of a hopping gait during underwater legged locom...