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Journal Abstract Search


741 related items for PubMed ID: 23777957

  • 1. Further potentiation of dynamic muscle strength after resistance training.
    Miyamoto N, Wakahara T, Ema R, Kawakami Y.
    Med Sci Sports Exerc; 2013 Jul; 45(7):1323-30. PubMed ID: 23777957
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  • 2. Potentiation of maximal voluntary concentric torque in human quadriceps femoris.
    Miyamoto N, Kanehisa H, Kawakami Y.
    Med Sci Sports Exerc; 2012 Sep; 44(9):1738-46. PubMed ID: 22460473
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  • 3. Muscle fatigue during repetitive voluntary contractions: a comparison between children with cerebral palsy, typically developing children and young healthy adults.
    Eken MM, Dallmeijer AJ, Houdijk H, Doorenbosch CA.
    Gait Posture; 2013 Sep; 38(4):962-7. PubMed ID: 23810336
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  • 4. Effect of postactivation potentiation on the maximal voluntary isokinetic concentric torque in humans.
    Miyamoto N, Kanehisa H, Fukunaga T, Kawakami Y.
    J Strength Cond Res; 2011 Jan; 25(1):186-92. PubMed ID: 20093966
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  • 5. Plyometric training improves voluntary activation and strength during isometric, concentric and eccentric contractions.
    Behrens M, Mau-Moeller A, Mueller K, Heise S, Gube M, Beuster N, Herlyn PK, Fischer DC, Bruhn S.
    J Sci Med Sport; 2016 Feb; 19(2):170-6. PubMed ID: 25766509
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  • 6. Neuromuscular fatigue to power loading using a weight-stack device fitted with or without additional rubber band resistance.
    Peltonen H, Walker S, Häkkinen K, Avela J.
    J Strength Cond Res; 2014 Jul; 28(7):1802-11. PubMed ID: 24345972
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  • 7. Strength training at high versus low external resistance in older adults: effects on muscle volume, muscle strength, and force-velocity characteristics.
    Van Roie E, Delecluse C, Coudyzer W, Boonen S, Bautmans I.
    Exp Gerontol; 2013 Nov; 48(11):1351-61. PubMed ID: 23999311
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  • 8. Strength athletes are capable to produce greater muscle activation and neural fatigue during high-intensity resistance exercise than nonathletes.
    Ahtiainen JP, Häkkinen K.
    J Strength Cond Res; 2009 Jul; 23(4):1129-34. PubMed ID: 19528869
    [Abstract] [Full Text] [Related]

  • 9. Possibility of intrinsic muscle contractile properties in force summation and postactivation potentiation as indices of maximal muscle strength and muscle fatigue.
    Ohta Y, Takahashi K, Matsubayashi T.
    Muscle Nerve; 2013 Jun; 47(6):894-902. PubMed ID: 23512264
    [Abstract] [Full Text] [Related]

  • 10. Relative torque contribution of vastus medialis muscle at different knee angles.
    de Ruiter CJ, Hoddenbach JG, Huurnink A, de Haan A.
    Acta Physiol (Oxf); 2008 Nov; 194(3):223-37. PubMed ID: 18691348
    [Abstract] [Full Text] [Related]

  • 11. Estimation of critical torque using intermittent isometric maximal voluntary contractions of the quadriceps in humans.
    Burnley M.
    J Appl Physiol (1985); 2009 Mar; 106(3):975-83. PubMed ID: 19150854
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  • 12. Time course of neuromuscular adaptations to knee extensor eccentric training.
    Baroni BM, Rodrigues R, Franke RA, Geremia JM, Rassier DE, Vaz MA.
    Int J Sports Med; 2013 Oct; 34(10):904-11. PubMed ID: 23526592
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  • 14. Angle-specific hamstring-to-quadriceps ratio: a comparison of football players and recreationally active males.
    Evangelidis PE, Pain MT, Folland J.
    J Sports Sci; 2015 Oct; 33(3):309-19. PubMed ID: 25073098
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  • 15. Linearity and reliability of the mechanomyographic amplitude versus dynamic torque relationships for the superficial quadriceps femoris muscles.
    Stock MS, Beck TW, Defreitas JM, Dillon MA.
    Muscle Nerve; 2010 Mar; 41(3):342-9. PubMed ID: 19813206
    [Abstract] [Full Text] [Related]

  • 16. The effects of dynamic stretching on the passive properties of the muscle-tendon unit.
    Herda TJ, Herda ND, Costa PB, Walter-Herda AA, Valdez AM, Cramer JT.
    J Sports Sci; 2013 Mar; 31(5):479-87. PubMed ID: 23113555
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