Swimming cells and microorganisms are as diverse in their collective dynamics as they are in their indi- vidualshapesandpropulsionmechanisms. Evenforspermcells, whichhaveastereotypedshapeconsisting of a cell body connected to a flexible flagellum, a wide range of collective dynamics is observed spanning from the formation of tightly packed groups to the display of larger-scale, turbulence-like motion. Using a detailed mathematical model that resolves flagellum dynamics, we perform simulations of sperm suspen- sions containing up to 1000 cells and explore the connection between individual and collective dynamics. We find that depending on the level of variation in individual dynamics from one swimmer to another, the sperm exhibit either a st...
In one of the first examples of how mechanics can inform axonemal mechanism, Machin's study in the 1...
Sperm swimming at low Reynolds number have strong hydrodynamic interactions when their concentration...
Suspensions of the aerobic bacteria {\it Bacilus subtilis} develop patterns and flows from the inter...
An excerpt from the simulation of 1000 swimmers with fixed undulation frequencies starting from a po...
The simulation of 1000 swimmers with fixed undulation frequencies starting from a polar configuratio...
The simulation of 1000 swimmers with stochastically-varying undulation frequencies starting from a p...
A simulation of 500 swimmers (effective area fraction 1.59) with fully resolved hydrodynamics starti...
The simulation of 1000 swimmers with stochastically-varying undulation frequencies starting from an ...
Eukaryotic cell swimming is frequently actuated via the flagellum, which is a slender flexible appen...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Mammalian sperm cells manage locomotion by the movement of their flagella. Dynein motors inside the ...
Swimming spermatozoa from diverse organisms often have very similar morphologies, yet different moti...
This document contains supporting information regarding the simulation methods, multipole expansions...
Sperm motility and its collective motion is a subject still poorly investigated. We aim at studying ...
In one of the first examples of how mechanics can inform axonemal mechanism, Machin's study in the 1...
Sperm swimming at low Reynolds number have strong hydrodynamic interactions when their concentration...
Suspensions of the aerobic bacteria {\it Bacilus subtilis} develop patterns and flows from the inter...
An excerpt from the simulation of 1000 swimmers with fixed undulation frequencies starting from a po...
The simulation of 1000 swimmers with fixed undulation frequencies starting from a polar configuratio...
The simulation of 1000 swimmers with stochastically-varying undulation frequencies starting from a p...
A simulation of 500 swimmers (effective area fraction 1.59) with fully resolved hydrodynamics starti...
The simulation of 1000 swimmers with stochastically-varying undulation frequencies starting from an ...
Eukaryotic cell swimming is frequently actuated via the flagellum, which is a slender flexible appen...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Mammalian sperm cells manage locomotion by the movement of their flagella. Dynein motors inside the ...
Swimming spermatozoa from diverse organisms often have very similar morphologies, yet different moti...
This document contains supporting information regarding the simulation methods, multipole expansions...
Sperm motility and its collective motion is a subject still poorly investigated. We aim at studying ...
In one of the first examples of how mechanics can inform axonemal mechanism, Machin's study in the 1...
Sperm swimming at low Reynolds number have strong hydrodynamic interactions when their concentration...
Suspensions of the aerobic bacteria {\it Bacilus subtilis} develop patterns and flows from the inter...