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首页> 外文期刊>The Journal of Experimental Biology >Cardiac-like behavior of an insect flight muscle
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Cardiac-like behavior of an insect flight muscle

机译:昆虫飞行肌肉的心脏样行为

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The synchronous wing depressor muscles of the hawkmoth Manduca sexta undergo large amplitude motions at lengths that lie entirely on the ascending region of their twitch length-tension curve. Moreover, these muscles bear a striking functional resemblance to mammalian cardiac muscle in both the shape of their length-tension curve and in their working length range. Although operation on the ascending region of the twitch length-tension curve sacrifices maximal force, it does permit the generation of larger forces at greater strains. In the case of cardiac muscle, this mechanical behavior is critical for accommodating the increasing stresses associated with greater ventricular filling. Similar characteristics in moth flight muscle suggest an analogous regulatory mechanism for skeletal muscles performing repetitive oscillatory work; the strong length dependence of force over their working length range should give the wing depressors the capacity to generate larger forces as wing stroke amplitude increases. These results support the notion that the length-tension relationship of muscle can be tuned to function in locomotor muscles.
机译:鹰蛾天蛾的同步机翼压抑肌肉经历大幅度的运动,其长度完全位于其抽搐长度-张力曲线的上升区域。此外,这些肌肉在其长度-张力曲线的形状和工作长度范围内都与哺乳动物的心肌具有惊人的功能相似性。尽管在抽动长度-张力曲线的上升区域上的操作会牺牲最大的力,但它确实允许在更大的应变下产生更大的力。对于心肌而言,这种机械行为对于适应与更大心室充盈有关的不断增加的压力至关重要。飞蛾飞行肌肉的相似特征表明骨骼肌执行重复的振荡工作的类似调节机制。力在其工作长度范围内强烈的长度依赖性应使机翼降压器有能力随着机翼冲程幅度的增加而产生更大的力。这些结果支持这样的观点,即肌肉的长度-张力关系可以调整为在运动性肌肉中起作用。

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