AbstractCells carrying cilia on their surface show many striking features: alignment of cilia in an array, two-phase asymmetric beating for each cilium, and existence of metachronal coordination with a constant phase difference between two adjacent cilia. We give simple theoretical arguments based on hydrodynamic coupling and an internal mechanism of the cilium derived from the behavior of a collection of molecular motors to account qualitatively for these cooperative features. Hydrodynamic interactions can lead to the alignment of an array of cilia. We study the effect of a transverse external flow and obtain a two-phase asymmetrical beating, faster along the flow and slower against the flow, proceeding around an average curved position. W...
Motile cilia are slender, hair-like cellular appendages that spontaneously oscillate under the actio...
This article investigates the formation of spontaneous coordination in a row of flexible 2D flaps (a...
Coordinated nonreciprocal dynamics in biological cilia is essential to many living systems, where th...
AbstractCells carrying cilia on their surface show many striking features: alignment of cilia in an ...
Cells or bacteria carrying cilia on their surface show many striking features : alignment of cilia i...
Fluid flow generated by a ciliated epithelium is a fascinating evidence of collective behaviour in n...
Motile cilia are hair-like cell appendages that actively bend themselves, thus driving the surroundi...
Cilia are hair-like organelles, present in arrays that collectively beat to generate flow. Given the...
Motile cilia can produce net fluid flows at low Reynolds number because of their asymmetric motion a...
The generation of metachronal waves of beating cilia is a complex mechanism when reproduced in labor...
AbstractThis paper presents a simple and reasonable method for generating a phenomenological model o...
Abstract The coordinated beating of motile cilia is responsible for ovum transport in the oviduct, t...
We use a three-dimensional computational model to study the fluid transport and mixing due to the be...
Motile cilia are widespread across the animal and plant kingdoms, displaying complex collective dyna...
Cilia and flagella are hair-like appendages of eukaryotic cells. They are actively bending structure...
Motile cilia are slender, hair-like cellular appendages that spontaneously oscillate under the actio...
This article investigates the formation of spontaneous coordination in a row of flexible 2D flaps (a...
Coordinated nonreciprocal dynamics in biological cilia is essential to many living systems, where th...
AbstractCells carrying cilia on their surface show many striking features: alignment of cilia in an ...
Cells or bacteria carrying cilia on their surface show many striking features : alignment of cilia i...
Fluid flow generated by a ciliated epithelium is a fascinating evidence of collective behaviour in n...
Motile cilia are hair-like cell appendages that actively bend themselves, thus driving the surroundi...
Cilia are hair-like organelles, present in arrays that collectively beat to generate flow. Given the...
Motile cilia can produce net fluid flows at low Reynolds number because of their asymmetric motion a...
The generation of metachronal waves of beating cilia is a complex mechanism when reproduced in labor...
AbstractThis paper presents a simple and reasonable method for generating a phenomenological model o...
Abstract The coordinated beating of motile cilia is responsible for ovum transport in the oviduct, t...
We use a three-dimensional computational model to study the fluid transport and mixing due to the be...
Motile cilia are widespread across the animal and plant kingdoms, displaying complex collective dyna...
Cilia and flagella are hair-like appendages of eukaryotic cells. They are actively bending structure...
Motile cilia are slender, hair-like cellular appendages that spontaneously oscillate under the actio...
This article investigates the formation of spontaneous coordination in a row of flexible 2D flaps (a...
Coordinated nonreciprocal dynamics in biological cilia is essential to many living systems, where th...