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Structure and function of the median finfold in larval teleosts

机译:幼虫硬骨鱼中位鳍的结构和功能

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摘要

This paper offers a structural and mechanical analysis of the median finfold in larval teleosts. The median finfold is strengthened by bundles of collagen fibres, known as actinotrichia. We demonstrate that these structures contribute to increase the mass of backward accelerated water during swimming. The amount, dimensions, orientation and growth of actinotrichia were measured at various locations along the finfold in several developmental stages of common carp (Cyprinus carpio) and zebrafish (Danio rerio). Actinotrichia morphology, using light microscopy (e. g. diameter, orientation) and electron microscopy (which revealed their anchoring at proximal and distal ends), correlated with expected lateral forces exerted on the water during swimming. An analytical model is proposed that predicts the extent of camber from the oblique arrangement of the actinotrichia and curvature of the body. Camber of the finfold during swimming was measured from high-speed video recordings and used to evaluate the model predictions. Based on structural requirements for swimming and strain limits for collagen, the model also predicts optimal orientations of actinotrichia. Experimental data confirm the predictions of the model.
机译:本文提供了幼虫硬骨鱼中鳍的结构和力学分析。中性鳍部被称为放线菌病的胶原纤维束加强。我们证明了这些结构有助于增加游泳过程中向后加速水的质量。在普通鲤鱼(Cyprinus carpio)和斑马鱼(Danio rerio)的几个发育阶段中,沿着鳍片的各个位置测量放线放线菌的数量,大小,方向和生长。使用光显微镜(例如直径,方向)和电子显微镜(显示其在近端和远端的锚定)的放线菌形态与游泳期间施加在水上的预期侧向力相关。提出了一种分析模型,该模型从放线菌的倾斜排列和身体的弯曲度预测外倾的程度。从高速视频记录中测量了游泳过程中鳍状部的弯曲度,并将其用于评估模型预测。基于游泳的结构要求和胶原蛋白的应变极限,该模型还预测放线菌的最佳方向。实验数据证实了模型的预测。

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