Electromechanical and morphological observations on single muscle fibers in developing dystrophic mouse. 1978

T Oba, and R Kanie, and N Watari, and K Hotta

UI MeSH Term Description Entries
D008564 Membrane Potentials The voltage differences across a membrane. For cellular membranes they are computed by subtracting the voltage measured outside the membrane from the voltage measured inside the membrane. They result from differences of inside versus outside concentration of potassium, sodium, chloride, and other ions across cells' or ORGANELLES membranes. For excitable cells, the resting membrane potentials range between -30 and -100 millivolts. Physical, chemical, or electrical stimuli can make a membrane potential more negative (hyperpolarization), or less negative (depolarization). Resting Potentials,Transmembrane Potentials,Delta Psi,Resting Membrane Potential,Transmembrane Electrical Potential Difference,Transmembrane Potential Difference,Difference, Transmembrane Potential,Differences, Transmembrane Potential,Membrane Potential,Membrane Potential, Resting,Membrane Potentials, Resting,Potential Difference, Transmembrane,Potential Differences, Transmembrane,Potential, Membrane,Potential, Resting,Potential, Transmembrane,Potentials, Membrane,Potentials, Resting,Potentials, Transmembrane,Resting Membrane Potentials,Resting Potential,Transmembrane Potential,Transmembrane Potential Differences
D009132 Muscles Contractile tissue that produces movement in animals. Muscle Tissue,Muscle,Muscle Tissues,Tissue, Muscle,Tissues, Muscle
D009137 Muscular Dystrophy, Animal MUSCULAR DYSTROPHY that occurs in VERTEBRATE animals. Animal Muscular Dystrophies,Animal Muscular Dystrophy,Dystrophies, Animal Muscular,Dystrophy, Animal Muscular,Muscular Dystrophies, Animal
D009210 Myofibrils The long cylindrical contractile organelles of STRIATED MUSCLE cells composed of ACTIN FILAMENTS; MYOSIN filaments; and other proteins organized in arrays of repeating units called SARCOMERES . Myofilaments,Myofibril,Myofilament
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus
D024510 Muscle Development Developmental events leading to the formation of adult muscular system, which includes differentiation of the various types of muscle cell precursors, migration of myoblasts, activation of myogenesis and development of muscle anchorage. Myofibrillogenesis,Myogenesis,Muscular Development,Development, Muscle,Development, Muscular

Related Publications

T Oba, and R Kanie, and N Watari, and K Hotta
January 1993, Molecular and chemical neuropathology,
T Oba, and R Kanie, and N Watari, and K Hotta
December 1976, The Journal of general physiology,
T Oba, and R Kanie, and N Watari, and K Hotta
May 1971, The American journal of physiology,
T Oba, and R Kanie, and N Watari, and K Hotta
February 1998, Muscle & nerve,
T Oba, and R Kanie, and N Watari, and K Hotta
November 1999, Developmental dynamics : an official publication of the American Association of Anatomists,
T Oba, and R Kanie, and N Watari, and K Hotta
January 1983, Muscle & nerve,
T Oba, and R Kanie, and N Watari, and K Hotta
October 1983, Experimental neurology,
T Oba, and R Kanie, and N Watari, and K Hotta
May 1980, British medical bulletin,
T Oba, and R Kanie, and N Watari, and K Hotta
August 1957, Science (New York, N.Y.),
T Oba, and R Kanie, and N Watari, and K Hotta
February 1994, Laboratory animal science,
Copied contents to your clipboard!