Various locomotion strategies employed by microorganisms are observed in complex biological environments. Spermatozoa assemble into bundles to improve their swimming efficiency compared to individual cells. However, the dynamic mechanisms for the formation of sperm bundles have not been fully characterized. In this study, we numerically and experimentally investigate the locomotion of spermatozoa during the transition from individual cells to bundles of two cells. Three consecutive dynamic behaviors are found across the course of the transition: hydrodynamic attraction/repulsion, alignment, and synchronization. The hydrodynamic attraction/repulsion depends on the relative orientation and distance between spermatozoa as well as their flagell...
In one of the first examples of how mechanics can inform axonemal mechanism, Machin's study in the 1...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
We investigate the role of hydrodynamics in the evolution of the morphology and the selection of kin...
Various locomotion strategies employed by microorganisms are observed in complex biological environm...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Mammalian spermatozoa motility is a subject of growing importance because of rising human infertilit...
Sperm motility and its collective motion is a subject still poorly investigated. We aim at studying ...
158 pagesFor successful fertilization in mammals, sperm must migrate through the female reproductive...
The journey of mammalian spermatozoa in nature is well-known to be reliant on their individual motil...
Sperm cooperation has evolved in a variety of taxa and is often considered a response to sperm compe...
Swimming cells and microorganisms are as diverse in their collective dynamics as they are in their i...
Successful sperm navigation is essential for sexual reproduction, yet we still understand relatively...
Swimming spermatozoa from diverse organisms often have very similar morphologies, yet different moti...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
In one of the first examples of how mechanics can inform axonemal mechanism, Machin's study in the 1...
In one of the first examples of how mechanics can inform axonemal mechanism, Machin's study in the 1...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
We investigate the role of hydrodynamics in the evolution of the morphology and the selection of kin...
Various locomotion strategies employed by microorganisms are observed in complex biological environm...
Sperm cells undergo complex interactions with external environments, such as a solid-boundary, fluid...
Mammalian spermatozoa motility is a subject of growing importance because of rising human infertilit...
Sperm motility and its collective motion is a subject still poorly investigated. We aim at studying ...
158 pagesFor successful fertilization in mammals, sperm must migrate through the female reproductive...
The journey of mammalian spermatozoa in nature is well-known to be reliant on their individual motil...
Sperm cooperation has evolved in a variety of taxa and is often considered a response to sperm compe...
Swimming cells and microorganisms are as diverse in their collective dynamics as they are in their i...
Successful sperm navigation is essential for sexual reproduction, yet we still understand relatively...
Swimming spermatozoa from diverse organisms often have very similar morphologies, yet different moti...
The propulsion mechanics driving the movement of living cells constitutes one of the most incredible...
In one of the first examples of how mechanics can inform axonemal mechanism, Machin's study in the 1...
In one of the first examples of how mechanics can inform axonemal mechanism, Machin's study in the 1...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
We investigate the role of hydrodynamics in the evolution of the morphology and the selection of kin...