이심성 수축에 따른 혈중 피로 유발 요인들의 변화 형태가 운동 후 근육 손상의 지연 현상에 미치는 영향

논문상세정보

' 이심성 수축에 따른 혈중 피로 유발 요인들의 변화 형태가 운동 후 근육 손상의 지연 현상에 미치는 영향' 의 참고문헌

  • exercise and its influence on resting energy metabolism in man
    515-525 [1989]
  • The effect of severe eccentric exercise-induced muscle damage on plasma elastase glutamine and zinc concentrations
    543-546 [1998]
  • The biomechanics of running American Society of Sports Medicine
    - [1991]
  • Sublethal muscle fibre injuries after high-tension anaerobic exercise
    360-368 [1988]
  • Structural and mechanical basis of exercise induced muscle injury
    521-530 [1992]
  • Skeletal transients during heel and toe strike running and effectiveness of some materials in their attenuation
    159-165 [1988]
  • Shock accelerations and attenuation in downhill and level running
    15-20 [2000]
  • Shock absorption during running and walking
    shin 295-299 [1988]
  • Selective recruitment of high-threshold human motor units during voluntary isotonic lengthening of active muscles
    451-471 [1989]
  • Role of amino acids and ammonia in mechanism of fatigue
    - [1991]
  • Percent decline in peak torque production during repeated concentric and eccentric contractions of the quadriceps femoral muscle
    309-314 [1989]
  • Oxygen uptake during submaximal running in highly trained men and women
    130-132 [1982]
  • Oxygen delivery does not limit peak running speed during incremental downhill running to exhaustion
    493-496 [1992]
  • Oxford textbook of Sports Medicine
    - [1998]
  • Muscle metabolism during exercise with concentric and eccentric contractions
    792-795 [1972]
  • Lactate production under fully aerobic conditions the lactate shuttle during rest and exercise
    2924-2929 [1986]
  • Injury to skeletal muscle fibers during contractions conditions of occurrence and prevention
    911-921 [1993]
  • Influence of previous concentric exercise on eccentric exercise-induced muscle damage
    saka 477-483 [1997]
  • Function of the quadriceps femoral muscle under maximal concentric and eccentric contraction
    159-174 [1980]
  • Force and EMG signal patterns during repeated bouts of concentric or eccentric muscle actions
    263-271 [1990]
  • Force and EMG power spectrum during eccentric and concentric actions
    1757-1762 [2000]
  • Force and EMG power spectrum during and after eccentric and concentric fatigue
    293-300 [2000]
  • Footstrike is the major cause of hemolysis during running
    38-42 [2002]
  • Fatigue-induced changes in decline running
    207-212 [2001]
  • Fatigue effects on muscle excitability
    409-414 [1996]
  • Effects of electrical stimulation on eccentric and concentric torque-velocity relationships during knee extension in man
    17-22 [1990]
  • Effect of rigor and cycling cross-bridge on the structure of troponin C and the Ca2+ affinity of the Ca2+ specific regulatory sites in skinned rabbit psoas fibers
    13627-13635 [1987]
  • Effect of pH on contraction of rabbit fast and slow skeletal muscle fibers
    935-946 [1988]
  • Effect of exhausting stretch- shortening cycle exercise on the time course of mechanical behaviour in the drop jump possible role of muscle damage
    160-167 [1999]
  • Effect of eccentric and concentric contraction on tension and electrical activity of human muscle
    ergo mics 417-434 [1972]
  • Delayed onset muscle soreness following repeated bouts of downing running
    710-715 [1985]
  • Changes of intracellular milieu with fatigue or hypoxia depress contraction of skinned rabbit skeletal and cardiac muscle
    155-180 [1989]