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  2. Cell mechanics - Wikipedia

    en.wikipedia.org/wiki/Cell_mechanics

    Cell mechanics is a sub-field of biophysics that focuses on the mechanical properties and behavior of living cells and how it relates to cell function. [1] It encompasses aspects of cell biophysics , biomechanics , soft matter physics and rheology , mechanobiology and cell biology .

  3. Template:Cell biology - Wikipedia

    en.wikipedia.org/wiki/Template:Cell_biology

    Download as PDF; Printable version; ... Diagram of a plant cell and its constituent organelles. --> ... An example of the template with all diagrams activated.

  4. Cytoskeleton - Wikipedia

    en.wikipedia.org/wiki/Cytoskeleton

    In 1903, Nikolai K. Koltsov proposed that the shape of cells was determined by a network of tubules that he termed the cytoskeleton. The concept of a protein mosaic that dynamically coordinated cytoplasmic biochemistry was proposed by Rudolph Peters in 1929 [12] while the term (cytosquelette, in French) was first introduced by French embryologist Paul Wintrebert in 1931.

  5. Cell biomechanics - Wikipedia

    en.wikipedia.org/wiki/Cell_Biomechanics

    Cells generate and maintain mechanical forces within their environment as a part of their physiology. Cell biomechanics deals with how mRNA, protein production, and gene expression is affected by said environment and with mechanical properties of isolated molecules or interaction of proteins that make up molecular motors. [1]

  6. Mechanobiology - Wikipedia

    en.wikipedia.org/wiki/Mechanobiology

    Mechanobiology is an emerging field of science at the interface of biology, engineering, chemistry and physics. It focuses on how physical forces and changes in the mechanical properties of cells and tissues contribute to development, cell differentiation, physiology, and disease.

  7. Biomechanics - Wikipedia

    en.wikipedia.org/wiki/Biomechanics

    Page of one of the first works of Biomechanics (De Motu Animalium of Giovanni Alfonso Borelli) in the 17th centuryBiomechanics is the study of the structure, function and motion of the mechanical aspects of biological systems, at any level from whole organisms to organs, cells and cell organelles, [1] using the methods of mechanics. [2]

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  9. Cellular automaton - Wikipedia

    en.wikipedia.org/wiki/Cellular_automaton

    For example, in a 1-dimensional cellular automaton like the examples below, the neighborhood of a cell x i t is {x i−1 t−1, x i t−1, x i+1 t−1}, where t is the time step (vertical), and i is the index (horizontal) in one generation.

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