AbstractSperm are propelled by an actively beating tail, and display a wide variety of swimming patterns. When confined between two parallel walls, sperm swim either in circles or on curvilinear trajectories close to the walls. We employ mesoscale hydrodynamics simulations in combination with a mechanical sperm model to study the swimming behavior near walls. The simulations show that sperm become captured at the wall due to the hydrodynamic flow fields which are generated by the flagellar beat. The circular trajectories are determined by the chiral asymmetry of the sperm shape. For strong (weak) chirality, sperm swim in tight (wide) circles, with the beating plane of the flagellum oriented perpendicular (parallel) to the wall. For comparis...
Sperm cells are guided to the egg by chemoattractants in many species. Sperm cells are propelled in ...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Recent mathematical fluid dynamics models have shed light into an outstanding problem in reproductiv...
Sperm are propelled by an actively beating tail, and display a wide variety of swimming patterns. Wh...
AbstractSperm are propelled by an actively beating tail, and display a wide variety of swimming patt...
Sperm are propelled by an actively beating tail, and display a wide variety of swimming patterns. Wh...
Sperm cells swim through the fluid by a periodic wave-like beating of their flagellum. At low R...
Successful sperm navigation is essential for sexual reproduction, yet we still understand relatively...
A hybrid boundary integral/slender body algorithm for modelling flagellar cell motility is presented...
The detailed fluid mechanics of sperm propulsion are fundamental to our understanding of reproductio...
The hydrodynamic basis for the accumulation of sper-matozoa at surfaces has been investigated. The g...
A major puzzle in biology is how mammalian sperm maintain the correct swimming direction during vari...
158 pagesFor successful fertilization in mammals, sperm must migrate through the female reproductive...
Mammalian sperm cells manage locomotion by the movement of their flagella. Dynein motors inside the ...
The hydrodynamic behaviors of sperms in confined spaces (e.g. Poiseuille flow and quiescent flow bet...
Sperm cells are guided to the egg by chemoattractants in many species. Sperm cells are propelled in ...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Recent mathematical fluid dynamics models have shed light into an outstanding problem in reproductiv...
Sperm are propelled by an actively beating tail, and display a wide variety of swimming patterns. Wh...
AbstractSperm are propelled by an actively beating tail, and display a wide variety of swimming patt...
Sperm are propelled by an actively beating tail, and display a wide variety of swimming patterns. Wh...
Sperm cells swim through the fluid by a periodic wave-like beating of their flagellum. At low R...
Successful sperm navigation is essential for sexual reproduction, yet we still understand relatively...
A hybrid boundary integral/slender body algorithm for modelling flagellar cell motility is presented...
The detailed fluid mechanics of sperm propulsion are fundamental to our understanding of reproductio...
The hydrodynamic basis for the accumulation of sper-matozoa at surfaces has been investigated. The g...
A major puzzle in biology is how mammalian sperm maintain the correct swimming direction during vari...
158 pagesFor successful fertilization in mammals, sperm must migrate through the female reproductive...
Mammalian sperm cells manage locomotion by the movement of their flagella. Dynein motors inside the ...
The hydrodynamic behaviors of sperms in confined spaces (e.g. Poiseuille flow and quiescent flow bet...
Sperm cells are guided to the egg by chemoattractants in many species. Sperm cells are propelled in ...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Recent mathematical fluid dynamics models have shed light into an outstanding problem in reproductiv...