TY - JOUR
T1 - Stretch-induced enhancement of mechanical power output in human multijoint exercise with countermovement
AU - Takarada, Yudai
AU - Hirano, Yuichi
AU - Ishige, Yusuke
AU - Ishii, Naokata
PY - 1997/11
Y1 - 1997/11
N2 - The relation between the eccentric force developed during a countermovement and the mechanical power output was studied in squatting exercises under nominally isotonic lead (50% of 1-repetition maximum). The subjects (n = 5) performed squatting exercises with a countermovement at varied deceleration rates before lifting the lead. The ground reaction force and video images were recorded to obtain the power output of the body. Net muscle moments acting at hip, knee, and ankle joints were calculated from video recordings by using inverse dynamics. When an intense deceleration was taken at the end of downward movement, large eccentric force was developed, and the mechanical power subsequently produced during the lifting movement was consistently larger than that produced without the countermovement. Both maximal and mean power outputs during concentric actions increased initially with the eccentric force, whereas they began to decline when the eccentric force exceeded ~1.4 times the sum of load and body weight. Video-image analysis showed that this characteristic relation was predominantly determined by the torque around the knee joint. Electromyographic analyses showed no consistent increase in time-averaged integrated electromyograph from vastus lateralis with the power output, suggesting that the enhancement of power output is primarily caused by the prestretch-induced improvement of an intrinsic force-generating capability of the agonist muscle.
AB - The relation between the eccentric force developed during a countermovement and the mechanical power output was studied in squatting exercises under nominally isotonic lead (50% of 1-repetition maximum). The subjects (n = 5) performed squatting exercises with a countermovement at varied deceleration rates before lifting the lead. The ground reaction force and video images were recorded to obtain the power output of the body. Net muscle moments acting at hip, knee, and ankle joints were calculated from video recordings by using inverse dynamics. When an intense deceleration was taken at the end of downward movement, large eccentric force was developed, and the mechanical power subsequently produced during the lifting movement was consistently larger than that produced without the countermovement. Both maximal and mean power outputs during concentric actions increased initially with the eccentric force, whereas they began to decline when the eccentric force exceeded ~1.4 times the sum of load and body weight. Video-image analysis showed that this characteristic relation was predominantly determined by the torque around the knee joint. Electromyographic analyses showed no consistent increase in time-averaged integrated electromyograph from vastus lateralis with the power output, suggesting that the enhancement of power output is primarily caused by the prestretch-induced improvement of an intrinsic force-generating capability of the agonist muscle.
KW - Cross-bridge mechanism
KW - Eccentric contraction
KW - Knee extensor muscles
KW - Prestretch
KW - Squatting exercise
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U2 - 10.1152/jappl.1997.83.5.1749
DO - 10.1152/jappl.1997.83.5.1749
M3 - Article
C2 - 9375347
AN - SCOPUS:0030707539
SN - 8750-7587
VL - 83
SP - 1749
EP - 1755
JO - Journal of Applied Physiology
JF - Journal of Applied Physiology
IS - 5
ER -