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Journal Abstract Search


382 related items for PubMed ID: 5972122

  • 1. Voltage clamp experiments in skeletal muscle fibres.
    Adrian RH, Chandler WK, Hodgkin AL.
    J Physiol; 1966 Oct; 186(2):51P-52P. PubMed ID: 5972122
    [No Abstract] [Full Text] [Related]

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  • 6. [Voltage-clamp experiments on isolated skeletal muscle fibers using a technic combining microelectrodes with double sucrose gap].
    Isenberg G.
    Acta Biol Med Ger; 1971 Oct; 26(2):311-21. PubMed ID: 4946985
    [No Abstract] [Full Text] [Related]

  • 7. Effects of hypertonicity on resting and contracting frog skeletal muscles.
    Homsher E, Briggs FN, Wise RM.
    Am J Physiol; 1974 Apr; 226(4):855-63. PubMed ID: 4545047
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  • 9. Resistance to shortening at the I-filament length in frog muscle fibres.
    Simmons RM.
    J Physiol; 1971 Jan; 212(2):20P-22P. PubMed ID: 5548002
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  • 10. [Changes in frog muscle permeability to neutral substances under depolarization].
    Liberman EA, Tsofina LM.
    Biofizika; 1966 Jan; 11(5):832-9. PubMed ID: 5999835
    [No Abstract] [Full Text] [Related]

  • 11. Sarcomere length-tension-stiffness relations of single muscle fibres in solutions of different tonicity.
    Bagni MA, Cecchi G, Colomo F.
    Prog Clin Biol Res; 1989 Jan; 315():227-8. PubMed ID: 2798493
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  • 12. The effect of hypertonicity on the time course of the active state in single skeletal muscle fibres of the frog.
    Andersson KE.
    Acta Physiol Scand; 1973 Jun; 88(2):149-59. PubMed ID: 4543542
    [No Abstract] [Full Text] [Related]

  • 13. The pharmacology of batrachotoxin. IV. Interaction with tetrodotoxin on innervated and chronically denervated rat skeletal muscle.
    Albuquerque EX, Warnick JE.
    J Pharmacol Exp Ther; 1972 Mar; 180(3):683-97. PubMed ID: 5012787
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  • 14. [Study under constant current conditions of contractile responses of the fast skeletal muscular fiber in frogs].
    Caillé J, Garnier D.
    J Physiol (Paris); 1971 Mar; 63(6):180A-181A. PubMed ID: 5152213
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  • 15. Intracellular generated potentials during excitation-contraction coupling in muscle.
    Strickholm A.
    J Neurobiol; 1974 Mar; 5(2):161-87. PubMed ID: 4546146
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  • 16. Graded activation of myofibrils and the effect of diameter on tension development during contractures in isolated skeletal muscle fibres.
    Gonzalez-serratos H.
    J Physiol; 1975 Dec; 253(2):321-39. PubMed ID: 1082500
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  • 17. [Relations between polarization level and separate components of active potential in skeletal muscle fibers].
    Nakhodkina LG.
    Fiziol Zh SSSR Im I M Sechenova; 1969 May; 55(5):576-82. PubMed ID: 5359983
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  • 18. [Excitation-contraction coupling in the skeletal muscle].
    Natori R.
    Nihon Heikatsukin Gakkai Zasshi; 1969 Sep; 5(3):127-34. PubMed ID: 4948380
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  • 19. Simultaneous measurements of ionic currents, tension and optical properties of voltage clamped skeletal muscle fibres.
    Poledna J, Lacinová L.
    Gen Physiol Biophys; 1988 Feb; 7(1):17-28. PubMed ID: 2456248
    [Abstract] [Full Text] [Related]

  • 20. [Qualitative analysis by voltage-clamp of the membrane current of the skeletal muscle fiber].
    Rougier O, Vassort G, Ildefonse M.
    C R Acad Hebd Seances Acad Sci D; 1968 Apr 22; 266(17):1754-7. PubMed ID: 4968752
    [No Abstract] [Full Text] [Related]


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