Mechanical models of sandfish locomotion reveal principles of high performance subsurface sand-swimming.
about
Mechanics of undulatory swimming in a frictional fluidTail use improves performance on soft substrates in models of early vertebrate land locomotorsConvergent evolution of mechanically optimal locomotion in aquatic invertebrates and vertebratesA novel growing device inspired by plant root soil penetration behaviorsAdvantage of straight walk instability in turning maneuver of multilegged locomotion: a robotics approach.A forced damped oscillation framework for undulatory swimming provides new insights into how propulsion arises in active and passive swimmingHow body torque and Strouhal number change with swimming speed and developmental stage in larval zebrafish.Mechanics and energetics in tool manufacture and use: a synthetic approachThe birth of a dinosaur footprint: subsurface 3D motion reconstruction and discrete element simulation reveal track ontogenyNeural mechanism of optimal limb coordination in crustacean swimmingClimbing, falling, and jamming during ant locomotion in confined environments.Propulsion of microorganisms by a helical flagellum.Serpentine locomotion through elastic energy releaseIntrusion rheology in grains and other flowable materials.Snake robot uncovers secrets to sidewinders' maneuverability.Emergence of the advancing neuromechanical phase in a resistive force dominated medium.Adaptation to life in aeolian sand: how the sandfish lizard, Scincus scincus, prevents sand particles from entering its lungs.Biorobotics: using robots to emulate and investigate agile locomotion.Architectures of soft robotic locomotion enabled by simple mechanical principles.Using computational and mechanical models to study animal locomotion.It's just sand between the toes: how particle size and shape variation affect running performance and kinematics in a generalist lizard.Energy efficiency of mobile soft robots.Magnetic resonance imaging of granular materials.Helical Locomotion in a Granular Medium.Vertical dynamics of a horizontally oscillating active object in a two-dimensional granular medium.Predicting and Optimizing Microswimmer Performance from the Hydrodynamics of Its Components: The Relevance of InteractionsA robotic crawler exploiting directional frictional interactions: experiments, numerics and derivation of a reduced model
P2860
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P2860
Mechanical models of sandfish locomotion reveal principles of high performance subsurface sand-swimming.
description
2011 nî lūn-bûn
@nan
2011 թուականի Մարտին հրատարակուած գիտական յօդուած
@hyw
2011 թվականի մարտին հրատարակված գիտական հոդված
@hy
2011年の論文
@ja
2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
name
Mechanical models of sandfish ...... ance subsurface sand-swimming.
@ast
Mechanical models of sandfish ...... ance subsurface sand-swimming.
@en
type
label
Mechanical models of sandfish ...... ance subsurface sand-swimming.
@ast
Mechanical models of sandfish ...... ance subsurface sand-swimming.
@en
prefLabel
Mechanical models of sandfish ...... ance subsurface sand-swimming.
@ast
Mechanical models of sandfish ...... ance subsurface sand-swimming.
@en
P2093
P2860
P356
P1476
Mechanical models of sandfish ...... mance subsurface sand-swimming
@en
P2093
Adam Kamor
Daniel I Goldman
Paul B Umbanhowar
Ryan D Maladen
P2860
P304
P356
10.1098/RSIF.2010.0678
P50
P577
2011-03-04T00:00:00Z