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首页> 外文期刊>The Journal of Experimental Biology >The diversity of hydrostatic skeletons
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The diversity of hydrostatic skeletons

机译:静水骨架的多样性

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摘要

A remarkably diverse group of organisms rely on a hydrostatic skeleton for support, movement, muscular antagonism and the amplification of the force and displacement of muscle contraction. In hydrostatic skeletons, force is transmitted not through rigid skeletal elements but instead by internal pressure. Functioning of these systems depends on the fact that they are essentially constant in volume as they consist of relatively incompressible fluids and tissue. Contraction of muscle and the resulting decrease in one of the dimensions thus results in an increase in another dimension. By actively (with muscle) or passively (with connective tissue) controlling the various dimensions, a wide array of deformations, movements and changes in stiffness can be created. An amazing range of animals and animal structures rely on this form of skeletal support, including anemones and other polyps, the extremely diverse wormlike invertebrates, the tube feet of echinoderms, mammalian and turtle penises, the feet of burrowing bivalves and snails, and the legs of spiders. In addition, there are structures such as the arms and tentacles of cephalopods, the tongue of mammals and the trunk of the elephant that also rely on hydrostatic skeletal support but lack the fluid-filled cavities that characterize this skeletal type. Although we normally consider arthropods to rely on a rigid exoskeleton, a hydrostatic skeleton provides skeletal support immediately following molting and also during the larval stage for many insects. Thus, the majority of animals on earth rely on hydrostatic skeletons.
机译:种类繁多的生物体依靠静水骨架来支撑,运动,肌肉拮抗以及放大力和位移肌肉收缩。在静液压骨架中,力不是通过刚性骨架元件而是通过内部压力传递。这些系统的功能取决于以下事实:它们的体积基本恒定,因为它们由相对不可压缩的液体和组织组成。肌肉的收缩和由此导致的一个维度的减小因此导致另一维度的增大。通过主动(使用肌肉)或被动(使用结缔组织)控制各种尺寸,可以创建各种变形,运动和刚度变化。各种各样的动物和动物结构都依赖于这种形式的骨骼支撑,包括海葵和其他息肉,极其多样的蠕虫状无脊椎动物,棘皮动物的管脚,哺乳动物和乌龟的阴茎,挖洞的双壳类和蜗牛的脚以及腿蜘蛛。此外,还有诸如头足类的臂和触手,哺乳动物的舌头和大象的躯干之类的结构,它们也依赖于静水骨骼支撑,但缺少这种骨骼类型特征的充满液体的空腔。尽管我们通常认为节肢动物依赖于刚性外骨骼,但静水骨架在蜕皮后以及幼虫阶段为许多昆虫提供了骨骼支撑。因此,地球上的大多数动物都依靠静水骨架。

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