Pages that link to "Item:Q1783684"
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The following pages link to Coupling biochemistry and hydrodynamics captures hyperactivated sperm motility in a simple flagellar model (Q1783684):
Displaying 14 items.
- A model of CatSper channel mediated calcium dynamics in mammalian spermatozoa (Q611096) (← links)
- Lubricated immersed boundary method in two dimensions (Q1701076) (← links)
- The relative contributions of propulsive forces and receptor-ligand binding forces during early contact between spermatozoa and zona pellucida of oocytes (Q1787011) (← links)
- A linear equation for the classification of progressive and hyperactive spermatozoa (Q1806790) (← links)
- A model for the acrosome reaction in mammalian sperm (Q1990154) (← links)
- Regularized Stokeslet segments (Q2002286) (← links)
- The dynamics of sperm detachment from epithelium in a coupled fluid-biochemical model of hyperactivated motility (Q2415530) (← links)
- Modelling a tethered mammalian sperm cell undergoing hyperactivation (Q2632083) (← links)
- A Bayesian framework to estimate fluid and material parameters in micro-swimmer models (Q2659810) (← links)
- Hydrodynamic interactions of sheets vs filaments: synchronization, attraction, and alignment (Q2787635) (← links)
- Enhanced flagellar swimming through a compliant viscoelastic network in Stokes flow (Q2814950) (← links)
- Hydrodynamic propulsion of human sperm (Q3184092) (← links)
- Modeling viscoelastic networks in Stokes flow (Q3193310) (← links)
- A three-dimensional model of flagellar swimming in a Brinkman fluid (Q4625993) (← links)