Oxygen uptake for negative work, stretching contractions by in situ dog skeletal muscle.

W. Stainsby
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引用次数: 15

Abstract

Oxygen uptake for negative work, stretching twitch contractions by in situ gastrocnemius-plantaris muscle was calculated from measurements of venous outflow and arterial and venous blood oxygen contents. Contractions were produced by valving air at high pressure into the pneumatic lever 10-50 ms before stimulation of the muscle. The loads produced were up to about 2.5 times isometric. Muscle length was always below optimal isometric length. Oxygen uptake for shortening contractions increased with increasing load up to isometric load. Oxygen uptake for stretching contractions decreased with increasing loads above isometric load. Velocity of shortening decreased with increasing loads up to isometric load whereas velocity of stretching increased with increasing loads above isometric. In shortening contractions external work done by the muscle was greatest at intermediate loads, but in stretching contractions the work done on the muscle increased with increasing loads. In stretching contractions the ratio of the energy equivalent of the work absorbed by the muscle reached 8.0 times the energy equivalent of the oxygen uptake. Since this ratio cannot exceed 1.0 for an engine, muscles must act as brakes during stretching contractions.
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负功摄氧量,拉伸收缩犬骨骼肌原位。
通过测量静脉流出量和动脉、静脉血含氧量,计算原位腓肠肌负功、拉伸抽搐收缩时的摄氧量。在刺激肌肉前10-50毫秒,通过将高压空气注入气动杆产生收缩。产生的载荷高达约2.5倍的等距。肌肉长度总是低于最佳等长长度。缩短收缩的摄氧量随着负荷的增加而增加,直至等长负荷。拉伸收缩的摄氧量随着负荷的增加而下降。在等距载荷以下,缩短速度随载荷的增加而减小,而在等距载荷以上,拉伸速度随载荷的增加而增大。在缩短收缩中,肌肉所做的外功在中等负荷下最大,但在拉伸收缩中,肌肉所做的功随着负荷的增加而增加。在拉伸收缩时,肌肉吸收的功的能量当量比达到摄氧量的能量当量的8.0倍。对于发动机来说,这个比率不能超过1.0,所以肌肉在拉伸收缩时必须起到刹车的作用。
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