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  2. Myofibril - Wikipedia

    en.wikipedia.org/wiki/Myofibril

    Skeletal muscle, with myofibrils labeled at upper right. A myofibril (also known as a muscle fibril or sarcostyle) [1] is a basic rod-like organelle of a muscle cell. [2] Skeletal muscles are composed of long, tubular cells known as muscle fibers, and these cells contain many chains of myofibrils. [3] Each myofibril has a diameter of 1–2 ...

  3. Isotopic labeling - Wikipedia

    en.wikipedia.org/wiki/Isotopic_labeling

    Isotopic labeling. Isotopic labeling (or isotopic labelling) is a technique used to track the passage of an isotope (an atom with a detectable variation in neutron count) through chemical reaction, metabolic pathway, or a biological cell. [1] The reactant is 'labeled' by replacing one or more specific atoms with their isotopes.

  4. Electronic properties of graphene - Wikipedia

    en.wikipedia.org/wiki/Electronic_properties_of...

    Electronic properties of graphene. Sigma and pi bonds in graphene. Sigma bonds result from an overlap of sp 2 hybrid orbitals, whereas pi bonds emerge from tunneling between the protruding p z orbitals. For clarity, only one p z orbital is shown with its three nearest neighbors. Graphene is a semimetal whose conduction and valence bands meet at ...

  5. Sarcomere - Wikipedia

    en.wikipedia.org/wiki/Sarcomere

    A sarcomere is defined as the segment between two neighbouring Z-lines (or Z-discs). In electron micrographs of cross-striated muscle, the Z-line (from the German "zwischen" meaning between) appears in between the I-bands as a dark line that anchors the actin myofilaments. Surrounding the Z-line is the region of the I-band (for isotropic ).

  6. Electronic band structure - Wikipedia

    en.wikipedia.org/wiki/Electronic_band_structure

    At the actual diamond crystal cell size denoted by a, two bands are formed, separated by a 5.5 eV band gap. Animation of band formation and how electrons fill them in a metal and an insulator. The formation of electronic bands and band gaps can be illustrated with two complementary models for electrons in solids.

  7. Myofilament - Wikipedia

    en.wikipedia.org/wiki/Myofilament

    Myofilament. Myofilaments are the three protein filaments of myofibrils in muscle cells. The main proteins involved are myosin, actin, and titin. Myosin and actin are the contractile proteins and titin is an elastic protein. The myofilaments act together in muscle contraction, and in order of size are a thick one of mostly myosin, a thin one of ...

  8. Fluorescence recovery after photobleaching - Wikipedia

    en.wikipedia.org/wiki/Fluorescence_recovery...

    Fluorescence recovery after photobleaching (FRAP) is a method for determining the kinetics of diffusion through tissue or cells. It is capable of quantifying the two-dimensional lateral diffusion of a molecularly thin film containing fluorescently labeled probes, or to examine single cells. This technique is very useful in biological studies of ...

  9. Immortal DNA strand hypothesis - Wikipedia

    en.wikipedia.org/wiki/Immortal_DNA_strand_hypothesis

    The immortal DNA strand hypothesis was proposed in 1975 by John Cairns as a mechanism for adult stem cells to minimize mutations in their genomes. [1] This hypothesis proposes that instead of segregating their DNA during mitosis in a random manner, adult stem cells divide their DNA asymmetrically, and retain a distinct template set of DNA ...