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  2. Cilium - Wikipedia

    en.wikipedia.org/wiki/Cilium

    Mammals also have motile cilia or secondary cilia that are usually present on a cell's surface in large numbers (multiciliate), and beat in coordinated metachronal waves. [40] Multiciliated cells are found lining the respiratory tract where they function in mucociliary clearance sweeping mucus containing debris away from the lungs . [ 13 ]

  3. Mucociliary clearance - Wikipedia

    en.wikipedia.org/wiki/Mucociliary_clearance

    Cilia movement in a metachronal wave. The coordinated movement of the cilia on all the cells is carried out in a fashion that is not clear. This produces wave-like motions that in the trachea, move at a speed of between 6 and 20 mm per minute. [2] The wave produced is a metachronal wave that moves the mucus. [5]

  4. Protist locomotion - Wikipedia

    en.wikipedia.org/wiki/Protist_locomotion

    Cilia performs powerful forward strokes with a stiffened flagellum followed by relatively slow recovery movement with a relaxed flagellum In contrast to flagellates, propulsion of ciliates derives from the motion of a layer of densely-packed and collectively-moving cilia, which are short hair-like flagella covering their bodies.

  5. Ciliogenesis - Wikipedia

    en.wikipedia.org/wiki/Ciliogenesis

    Cilia Structure. Primary cilia are found to be formed when a cell exits the cell cycle. [2] Cilia consist of four main compartments: the basal body at the base, the transition zone, the axenome which is an arrangement of nine doublet microtubules and considered to be the core of the cilium, and the ciliary membrane. [2]

  6. Dynein - Wikipedia

    en.wikipedia.org/wiki/Dynein

    Dyneins are a family of cytoskeletal motor proteins (though they are actually protein complexes) that move along microtubules in cells. They convert the chemical energy stored in ATP to mechanical work. Dynein transports various cellular cargos, provides forces and displacements important in mitosis, and drives the beat of eukaryotic cilia and ...

  7. Intraflagellar transport - Wikipedia

    en.wikipedia.org/wiki/Intraflagellar_transport

    Intraflagellar transport in the cilia of the nematode C. elegans. Intraflagellar transport (IFT) is a bidirectional motility along axoneme microtubules that is essential for the formation (ciliogenesis) and maintenance of most eukaryotic cilia and flagella. [1]

  8. Ciliate - Wikipedia

    en.wikipedia.org/wiki/Ciliate

    Cilia occur in all members of the group (although the peculiar Suctoria only have them for part of their life cycle) and are variously used in swimming, crawling, attachment, feeding, and sensation. Ciliates are an important group of protists , common almost anywhere there is water—in lakes, ponds, oceans, rivers, and soils, including anoxic ...

  9. File:Eukaryotic cilium diagram en.svg - Wikipedia

    en.wikipedia.org/wiki/File:Eukaryotic_cilium...

    A cilium (plural cilia) is an organelle found in eukaryotic cells. Cilia are slender protuberances typically extending some 5–10 micrometers outwards from the cell body. There are two types of cilia: motile cilia, which constantly beat directionally, and non-motile—or primary—cilia, which typically serve as sensory organelles