Modelling the fluid mechanics of cilia and flagella in reproduction and development.
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Bimodal rheotactic behavior reflects flagellar beat asymmetry in human sperm cells.Rheotaxis facilitates upstream navigation of mammalian sperm cellsEstablishment of left-right asymmetry in vertebrate development: the node in mouse embryos.Active matter.Swimming efficiency in a shear-thinning fluid.Optimal swimming of a sheet.From flagellar undulations to collective motion: predicting the dynamics of sperm suspensions.Complex fluids affect low-Reynolds number locomotion in a kinematic-dependent manner
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P2860
Modelling the fluid mechanics of cilia and flagella in reproduction and development.
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article científic
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article scientifique
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articolo scientifico
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Modelling the fluid mechanics of cilia and flagella in reproduction and development.
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Modelling the fluid mechanics of cilia and flagella in reproduction and development.
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prefLabel
Modelling the fluid mechanics of cilia and flagella in reproduction and development.
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P2093
P2860
P356
P1476
Modelling the fluid mechanics of cilia and flagella in reproduction and development.
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P2093
Andrew A Smith
Daniel Loghin
John R Blake
Thomas D Montenegro-Johnson
P2860
P2888
P356
10.1140/EPJE/I2012-12111-1
P577
2012-10-29T00:00:00Z
P5875
P6179
1019424088