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首页> 外文期刊>Journal of Morphology >Variation in flexural stiffness of the lepidotrichia within and among the soft fins of yellow perch under different preservation techniques
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Variation in flexural stiffness of the lepidotrichia within and among the soft fins of yellow perch under different preservation techniques

机译:不同保存技术下黄鲈鱼内部和柔软翅片中的抗弯刚度的变化

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摘要

Abstract Although the ray‐finned fishes are named for their bony, segmented lepidotrichia (fin rays), we are only beginning to understand the morphological and functional diversity of this key vertebrate structure. Fin rays support the fin web, and their material properties help define the function of the entire fin. Many earlier studies of fin ray morphology and function have focused on isolated rays, or on rays from only one or two fins. At the same time, relatively little is known about how different preservation techniques affect the material properties of many vertebrate structures, including fin rays. Here, we use three‐point bending tests to examine intra‐ and inter‐fin variation in the flexural stiffness of fin rays from yellow perch, Perca flavescens . We sampled fin rays from individuals that were assigned to one of three preservation treatments: fresh, frozen, and preserved with formalin. The flexural stiffness of the fin rays varied within and among fins. Pelvic‐fin rays were the stiffest, and pectoral fin rays the least stiff. The fin rays of the dorsal, anal, and caudal fins all had similar stiffness values, which were intermediate relative to those from the paired fins. The flexural stiffness of the fin rays was higher in rays that were at the leading edge of the fin. This variation in flexural stiffness was associated with variation in joint density and the relative length of the unsegmented proximal base of the fin rays. There was no significant difference in flexural stiffness between fresh and frozen specimens. In specimens preserved with formalin, there is a small but significant effect on stiffness in smaller fin rays.
机译:摘要虽然光线翅片鱼被命名为他们的骨,细分的Lepidotrichia(Fin Rays),但我们只是开始了解这一关键脊椎动物结构的形态和功能多样性。 Fin Rays支持Fin Web,其材料属性有助于定义整个鳍片的功能。对Fin Ray形态学和功能的许多早期研究专注于隔离光线,或仅在一两种鳍片上的光线上。同时,关于不同的保存技术如何影响许多脊椎动物结构的材料特性,相对较少,包括鳍射线。在这里,我们使用三点弯曲试验来检查来自黄色鲈鱼,PerCA Flavescens的鳍射线弯曲刚度的鳍片间变化。我们从分配给三种保存治疗之一的个体的鳍射线:新鲜,冷冻,并与福尔马林保存。鳍射线的弯曲刚度在翅片内和翅片中变化。骨盆鳍射线是最硬的,胸鳍最少僵硬。背部,肛门和尾鳍的鳍片均具有相似的刚度值,其相对于来自成对鳍片的渗透值。鳍射线的弯曲刚度在鳍片的前缘处的射线较高。弯曲刚度的这种变化与接合密度的变化和鳍射线的未分段近端基部的相对长度有关。新鲜和冷冻标本之间的弯曲刚度没有显着差异。在用福尔马林保存的标本中,对较小鳍射线中的刚度存在小而显着的影响。

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