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  2. Anisotropy - Wikipedia

    en.wikipedia.org/wiki/Anisotropy

    Anisotropy (/ ˌænaɪˈsɒtrəpi, ˌænɪ -/) is the structural property of non-uniformity in different directions, as opposed to isotropy. An anisotropic object or pattern has properties that differ according to direction of measurement. For example, many materials exhibit very different physical or mechanical properties when measured along ...

  3. Fractional anisotropy - Wikipedia

    en.wikipedia.org/wiki/Fractional_anisotropy

    Fractional anisotropy. Fractional anisotropy (FA) is a scalar value between zero and one that describes the degree of anisotropy of a diffusion process. A value of zero means that diffusion is isotropic, i.e. it is unrestricted (or equally restricted) in all directions. A value of one means that diffusion occurs only along one axis and is fully ...

  4. Isotropic bands - Wikipedia

    en.wikipedia.org/wiki/Isotropic_bands

    Isotropic bands. In physiology, isotropic bands (better known as I bands) are the lighter bands of skeletal muscle cells (a.k.a. muscle fibers). Isotropic bands contain only actin -containing thin filaments. [1] The thin filaments are placed between 2 myosin filaments and contain only the actin filaments of neighboring sarcomeres.

  5. Anisotropy energy - Wikipedia

    en.wikipedia.org/wiki/Anisotropy_energy

    Anisotropic energy is energy that is directionally specific. The word anisotropy means "directionally dependent", hence the definition. The most common form of anisotropic energy is magnetocrystalline anisotropy, which is commonly studied in ferromagnets. [1] In ferromagnets, there are islands or domains of atoms that are all coordinated in a ...

  6. Cell division orientation - Wikipedia

    en.wikipedia.org/wiki/Cell_division_orientation

    Implication for morphogenesis. Cell division orientation is one of the mechanisms that shapes tissue during development and morphogenesis. Along with cell shape changes, cell rearrangements, apoptosis and growth, oriented cell division modifies the geometry and topology of live tissue in order to create new organs and shape the organisms.

  7. Magnetic anisotropy - Wikipedia

    en.wikipedia.org/wiki/Magnetic_anisotropy

    Magnetic anisotropy. In condensed matter physics, magnetic anisotropy describes how an object's magnetic properties can be different depending on direction. In the simplest case, there is no preferential direction for an object's magnetic moment. It will respond to an applied magnetic field in the same way, regardless of which direction the ...

  8. Birefringence - Wikipedia

    en.wikipedia.org/wiki/Birefringence

    These optically anisotropic materials are described as birefringent or birefractive. The birefringence is often quantified as the maximum difference between refractive indices exhibited by the material. Crystals with non-cubic crystal structures are often birefringent, as are plastics under mechanical stress.

  9. Anisotropic Network Model - Wikipedia

    en.wikipedia.org/wiki/Anisotropic_Network_Model

    The Anisotropic Network Model (ANM) is a simple yet powerful tool made for normal mode analysis of proteins, which has been successfully applied for exploring the relation between function and dynamics for many proteins. It is essentially an Elastic Network Model for the Cα atoms with a step function for the dependence of the force constants ...