首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Wall structure and material properties cause viscous damping of swimbladder sounds in the oyster toadfish Opsanus tau
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Wall structure and material properties cause viscous damping of swimbladder sounds in the oyster toadfish Opsanus tau

机译:壁的结构和材料特性会导致牡蛎蟾鱼Opsanus tau的泳囊声音的粘性阻尼

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摘要

Despite rapid damping, fish swimbladders have been modelled as underwater resonant bubbles. Recent data suggest that swimbladders of sound-producing fishes use a forced rather than a resonant response to produce sound. The reason for this discrepancy has not been formally addressed, and we demonstrate, for the first time, that the structure of the swimbladder wall will affect vibratory behaviour. Using the oyster toadfish Opsanus tau, we find regional differences in bladder thickness, directionality of collagen layers (anisotropic bladder wall structure), material properties that differ between circular and longitudinal directions (stress, strain and Young's modulus), high water content (80%) of the bladder wall and a 300-fold increase in the modulus of dried tissue. Therefore, the swimbladder wall is a viscoelastic structure that serves to damp vibrations and impart directionality, preventing the expression of resonance.
机译:尽管阻尼迅速,但鱼泳囊已被建模为水下共振气泡。最近的数据表明,发声鱼类的游泳者使用强迫而非共鸣来产生声音。这种差异的原因尚未得到正式解决,我们首次证明了泳囊壁的结构将影响振动行为。使用牡蛎蟾鱼Opsanus tau,我们发现了膀胱厚度,胶原蛋白层的方向性(各向异性的膀胱壁结构),圆形和纵向方向(应力,应变和杨氏模量)不同,高水含量(80%)之间的区域差异。 )膀胱壁,干燥组织的模量增加了300倍。因此,游泳囊壁是粘弹性结构,其用于衰减振动并赋予方向性,从而防止共振的表达。

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