Motile cilia are slender, hair-like cellular appendages that spontaneously oscillate under the action of internal molecular motors and are typically found in dense arrays. These active filaments coordinate their beating to generate metachronal waves that drive long-range fluid transport and locomotion. Until now, our understanding of their collective behavior largely comes from the study of minimal models that coarse grain the relevant biophysics and the hydrodynamics of slender structures. Here we build on a detailed biophysical model to elucidate the emergence of metachronal waves on millimeter scales from nanometer-scale motor activity inside individual cilia. Our study of a one-dimensional lattice of cilia in the presence of hydrodynami...
Cilia and flagella are hair-like appendages of eukaryotic cells. They are actively bending structure...
Abstract The coordinated beating of motile cilia is responsible for ovum transport in the oviduct, t...
Coordinated nonreciprocal dynamics in biological cilia is essential to many living systems, where th...
On surfaces with many motile cilia, beats of the individual cilia coordinate to form metachronal wav...
Motile cilia are hair-like cell appendages that actively bend themselves, thus driving the surroundi...
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...
Eukaryotic cilia and flagella are chemo-mechanical oscillators capable of generating long-range coor...
International audienceThe present work reports the emergence of metachronal waves in cilia arrays im...
Hair-like appendages called cilia on the surface of a microorganism such as Paramecium or Opalina be...
Abstract. The phenomenon of metachronal waves in cilia carpets has been well known for decades; thes...
Groups of eukaryotic cilia and flagella are capable of coordinating their beating over large scales,...
Groups of eukaryotic cilia and flagella are capable of coordinating their beating over large scales,...
Motile cilia are widespread across the animal and plant kingdoms, displaying complex collective dyna...
The phenomenon of metachronal waves in cilia carpets has been well known for decades; these waves ar...
Cilia and flagella are hair-like appendages of eukaryotic cells. They are actively bending structure...
Abstract The coordinated beating of motile cilia is responsible for ovum transport in the oviduct, t...
Coordinated nonreciprocal dynamics in biological cilia is essential to many living systems, where th...
On surfaces with many motile cilia, beats of the individual cilia coordinate to form metachronal wav...
Motile cilia are hair-like cell appendages that actively bend themselves, thus driving the surroundi...
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...
Eukaryotic cilia and flagella are chemo-mechanical oscillators capable of generating long-range coor...
International audienceThe present work reports the emergence of metachronal waves in cilia arrays im...
Hair-like appendages called cilia on the surface of a microorganism such as Paramecium or Opalina be...
Abstract. The phenomenon of metachronal waves in cilia carpets has been well known for decades; thes...
Groups of eukaryotic cilia and flagella are capable of coordinating their beating over large scales,...
Groups of eukaryotic cilia and flagella are capable of coordinating their beating over large scales,...
Motile cilia are widespread across the animal and plant kingdoms, displaying complex collective dyna...
The phenomenon of metachronal waves in cilia carpets has been well known for decades; these waves ar...
Cilia and flagella are hair-like appendages of eukaryotic cells. They are actively bending structure...
Abstract The coordinated beating of motile cilia is responsible for ovum transport in the oviduct, t...
Coordinated nonreciprocal dynamics in biological cilia is essential to many living systems, where th...