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首页> 外文期刊>The Journal of Experimental Biology >TUNING IN TO FISH SWIMMING WAVES - BODY FORM, SWIMMING MODE AND MUSCLE FUNCTION [Review]
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TUNING IN TO FISH SWIMMING WAVES - BODY FORM, SWIMMING MODE AND MUSCLE FUNCTION [Review]

机译:调整鱼泳波-身体形态,泳姿和肌肉功能[评论]

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摘要

Most fish species swim with lateral body undulations running from head to tail, These waves run more slowly than the waves of muscle activation causing them, reflecting the effect of the interaction between the fish's body and the reactive forces from the water, The coupling between both waves depends on the lateral body shape and on the mechanical properties of the tail. During steady swimming, the length of each myotomal muscle fibre varies cyclically. The phase relationship between the strain (muscle length change) cycle and the active period (when force is generated) determines the work output of the muscle. The muscle power is converted to thrust either directly by the bending body or almost exclusively by the tail, depending upon the body shape of the species and the swimming kinematics. We have compared the kinematics and muscle activity patterns from seven species of fish with different body forms and swimming modes and propose a model which yields a consistent pattern, with at least three extremes. Subtle tuning of the phase relationship between muscle strain and activation cycles can lead to major changes in the way muscles function in different swimming modes. [References: 27]
机译:大多数鱼类在侧向从头到尾的身体波动中游动,这些波动的运行速度比引起它们的肌肉激活波的传播慢,反映了鱼的身体与水的反作用力之间相互作用的影响,两者之间的耦合波浪取决于侧身的形状和尾巴的机械性能。在稳定游泳过程中,每条心肌肌纤维的长度周期性变化。应变(肌肉长度变化)周期与活动周期(产生力时)之间的相位关系决定了肌肉的功输出。肌肉的力量直接由弯曲的身体转换成推力,或者几乎完全由尾巴转换成推力,具体取决于物种的身体形状和游泳运动学。我们比较了七种不同身体形态和游泳方式的鱼的运动学和肌肉活动模式,并提出了一个模型,该模型产生一致的模式,至少具有三个极端。肌肉劳损和激活周期之间的相位关系的微妙调整可导致肌肉在不同游泳模式下的运作方式发生重大变化。 [参考:27]

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