Department of Physiology, Faculty of Physical Culture, Gorzow Wielkopolski, Poland
Bibliografia
[1] Aagaarg P., Simonsen E.B., Andersen J.L., Magnusson P., Dyhre-Poulsen P., Increased rate of force development and neural drive of human skeletal muscle following resistance training, Journal of Applied Physiology, 2002, 93: 1318-1326.
[2] Adamson M., MacQuaide N., Helgerud J., Hoff J., Kemi O.J., Unilateral arm strength training improves contralateral peak force and rate of force development, European Journal of Applied Physiology, 2008, 103: 553-559.
[3] Belavy D.L., Miokovic T., Armbrecht G., Richardson C.A., Rittweger J., Felsenberg D., Differential atrophy of the lower-limb musculature during prolonged bed-rest, European Journal of Applied Physiology, 2009, 107: 489-499.
[4] Berg H.E., Eiken O., Miklavcic L., Mekjavic I.B., Hip, thigh and calf muscle atrophy and bone loss after 5-week bedrest inactivity, European Journal of Applied Physiology, 2007, 99: 283-289.
[5] Booth F.W., Weeden S.H., Tseng B.S., Effect of aging on human skeletal muscle and motor function, Medicine & Science in Sports & Exercise, 1994, 26: 556-560.
[6] Duchateau J., Hainaut K., Isometric or dynamic training: differential effects on mechanical properties of a human muscle, Journal of Applied Physiology, 1984, 56: 296-301.
[7] Häkkinen K., Kraemer W.J., Newton R.U., Alen M., Changes in electromyographic activity, muscle fibre and force production characteristics during heavy resistance/power strength training in middle-aged and older men and women, Acta Physiologica Scandinavica, 2001, 171: 1, 51-62.
[8] Haskell W.L., Montoye H.J., Orenstein D., Physical activity and exercise to achieve health-related physical fitness components, Public Health Reports, 1985, 100: 202-212. Mariusz Naczk, Łukasz Jaworski, Wioletta Brzenczek-Owczarzak, Jarosław Arlet, Zdzisław Adach
[9] Kaciuba-Uściłko H., Nazar K., Fizjologiczne następstwa bezczynności ruchowej i długotrwałego pozostawania w pozycji leżącej (Physiological consequences of physical inactivity and prolonged stay in a lying position), (in:) Górski et al. (ed.), Fizjologiczne podstawy wysiłku fizycznego (Physiological bases of exercise), PZWL Warszawa, 2006.
[10] Kamen G., Aging, resistance training, and motor unit discharge behavior, Canadian Journal of Applied Physiology, 2005, 30: 341-351.
[11] MacDougall J.D., Elder G.C.B., Sale D.G., Moroz J.R., Sutton J.R., Effects of strength training and immobilization on human muscle fibers, European Journal of Applied Physiology, 1980, 43: 25-34.
[12] Mathiowetz V., Kashman N., Volland G., Weber K., Dowe M., Rogers S., Grip and pinch strength: normative data for adults, Archives of Physical Medicine and Rehabilitation, 1985, 66: 69-72.
[13] Melnyk J. A., Rogers M.A., Hurley B.F., Effects of strength training and detraining on regional muscle in young and older men and women, European Journal of Applied Physiology, 2009, 105: 929-938.
[14] Miokovic T., Armbrecht G., Felsenberg D., Belavy D.L., Differential atrophy of the postero- lateral hip musculature during prolonged bed rest and the influence of exercise countermeasures, Journal of Applied Physiology, 2011, 110: 926-934.
[15] Olek R.A., Dieta jako czynnik determinujący możliwości wysiłkowe pływaków (Diet as a factor of swimmers' endurance abilities), Sport Wyczy¬nowy, 2005, 11-12: 16-21.
[16] Pérez-Moreno F., Cámara-Sánchez M., Tremblay JF., Riera-Rubio V.J., Gil-Paisán L., Lucia A., Benefits of exercise training in Spanish prison inmates, International Journal Sports Medicine, 2007 28: 1046-1052.
[17] Potier T.G., Alexander C.M., Seynnes O.R., Effects of eccentric strength training on biceps femoris muscle architecture and knee joint range of movement, European Journal of Applied Physiology, 2009, 105: 939-944.
[18] Toji H., Kaneko M., Effect of multiple-load training on the force-velocity relationship, Journal of Strength & Conditioning Research, 2004, 18: 792-795.