Many jellyfish produce forward thrust by ejecting a volume of water contained within their subumbrellar cavities. This behaviour is powered by a single set of muscles lining the inside of the cavity, and controlled by a simple nerve ring at the base of the mesogleal bell. Refilling is powered by strain energy stored in the deformation of the bell. Despite the apparent simplicity of the system, four gait patterns can be identified in the swimming behaviour of the hydrozoan jellyfish, Polyorchis penicillatus Eschscholz. In increasing order of activity, the behaviours are: hopping, sink-fishing, transient swimming, and resonant swimming. The first two are used in fishing, while die others are active swimming gaits. Thrust is produced in...
ABSTRACT: Jellyfish are easily carried by ocean currents, yet most studies on jellyfish focus on the...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
This thesis presents an automatic animation system for jellyfish that is based on a physical simulat...
A non-destructive test was developed to measure the static mechanical properties of the locomotor s...
Thesis (Ph. D.)--University of Washington, 2002Nonlinear mechanics and dynamics are pervasive at all...
For organisms to have robust locomotion, their neuromuscular organization must adapt to constantly c...
Jellyfish have provided insight into important components of animal propulsion, such as suction thru...
Jellyfish are a successful and diverse class of animals that swim via jet propulsion, with swimming ...
The mechanical energy generated by the contraction of the subumbrellar swimming muscles to power the...
Jellyfish represent one of the earliest and simplest examples of swimming by a macroscopic organism....
The current literature suggests that moon jellyfish are the most efficient underwater swimmers for t...
Artificial control of animal locomotion has the potential to simultaneously address longstanding cha...
Gelatinous zooplankton populations are well known for their ability to take over perturbed ecosystem...
Gelatinous zooplankton populations are well known for their ability to take over perturbed ecosystem...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
ABSTRACT: Jellyfish are easily carried by ocean currents, yet most studies on jellyfish focus on the...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
This thesis presents an automatic animation system for jellyfish that is based on a physical simulat...
A non-destructive test was developed to measure the static mechanical properties of the locomotor s...
Thesis (Ph. D.)--University of Washington, 2002Nonlinear mechanics and dynamics are pervasive at all...
For organisms to have robust locomotion, their neuromuscular organization must adapt to constantly c...
Jellyfish have provided insight into important components of animal propulsion, such as suction thru...
Jellyfish are a successful and diverse class of animals that swim via jet propulsion, with swimming ...
The mechanical energy generated by the contraction of the subumbrellar swimming muscles to power the...
Jellyfish represent one of the earliest and simplest examples of swimming by a macroscopic organism....
The current literature suggests that moon jellyfish are the most efficient underwater swimmers for t...
Artificial control of animal locomotion has the potential to simultaneously address longstanding cha...
Gelatinous zooplankton populations are well known for their ability to take over perturbed ecosystem...
Gelatinous zooplankton populations are well known for their ability to take over perturbed ecosystem...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
ABSTRACT: Jellyfish are easily carried by ocean currents, yet most studies on jellyfish focus on the...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
This thesis presents an automatic animation system for jellyfish that is based on a physical simulat...