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Optimal designs of mollusk shells from bivalves to snails

机译:从双壳类到蜗牛的软体动物壳的优化设计

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摘要

Bivalve, ammonite and snail shells are described by a small number of geometrical parameters. Raup noted that the vast majority of theoretically possible shell forms do not occur in nature. The constraint factors that regulate the biased distribution of natural form have long since been an open problem in evolution. The problem of whether natural shell form is a result of optimization remains unsolved despite previous attempts. Here we solve this problem by considering the scaling exponent of shell thickness as a morphological parameter. The scaling exponent has a drastic effect on the optimal design of shell shapes. The observed characteristic shapes of natural shells are explained in a unified manner as a result of optimal utilization of shell material resources, while isometric growth in thickness leads to impossibly tight coiling.
机译:双壳贝壳,am壳和蜗牛壳由少量几何参数描述。 Raup指出,绝大多数理论上可能的壳形式都不是自然界中存在的。长期以来,调节自然形式的有偏分布的约束因素一直是一个未解决的问题。尽管进行了先前的尝试,但是天然壳形式是否是优化的结果的问题仍未解决。在这里,我们通过考虑壳厚度的缩放指数作为形态学参数来解决这个问题。缩放指数对壳体形状的最佳设计有极大的影响。作为对壳材料资源的最佳利用的结果,以统一的方式解释了所观察到的天然壳的特征形状,而厚度的等距增长导致不可能的紧密盘绕。

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