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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Microstructural variation in conodont enamel is a functional adaptation
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Microstructural variation in conodont enamel is a functional adaptation

机译:牙釉质搪瓷的微观结构变化是一种功能适应性

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Recognition that conodonts were the earliest vertebrate group to experiment with skeletal biomineralization provides a window in which to study the origin and early evolution of this developmental system. It has been contended that the conodont skeleton comprised a classic suite of vertebrate hard tissues, while others suggest that conodont hard tissues represent divergent specializations within the early diversification of vertebrate hard tissues, supporting a view that the hard tissues of conodonts. particularly enamel, exhibit a range of microstructural variation beyond that seen in vertebrates. New evidence reveals that, although variable, conodont enamel microstructure is consistent between homologous portions of homologous dentitions, Although there is a correlation between morphology and microstructure, this belies a stronger correlation between the commonality of microstructure and dental function. The enamel of conodonts evolved in response to changes in dental function and differentiation of the microstructural layer into a number of enamel types and can be linked to dental occlusion, heterodonty, a permanent dentition, enamel thickness and, probably above all, the small size of the dental elements.
机译:牙形石是最早进行骨骼生物矿化试验的脊椎动物,这一认识为研究该发育系统的起源和早期进化提供了一个窗口。有人认为牙形石骨架包括一组经典的脊椎动物硬组织,而另一些人则认为牙形石硬组织代表了脊椎动物硬组织早期多样化内的不同专长,从而支持了牙形石硬组织的观点。特别是搪瓷,表现出超出脊椎动物的微观结构变化范围。新的证据表明,尽管牙列的同源部分之间的牙形牙釉质微观结构是可变的,尽管形态和微观结构之间存在相关性,但这掩盖了微观结构的共同性与牙齿功能之间更强的相关性。牙釉质的形成是根据牙齿功能的变化和微观结构层分化为多种牙釉质而演变而来的,可与牙合,异牙结石,恒牙列,牙釉质厚度以及最重要的是牙釉质的小尺寸有关。牙齿元素。

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