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Layered Growth and Crystallization in Calcareous Biominerals: Impact of Structural and Chemical Evidence on Two Major Concepts in Invertebrate Biomineralization Studies

机译:钙质生物矿物质中的分层生长和结晶:无脊椎动物生物矿化研究中两个主要概念的结构和化学证据的影响

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In several recent models of invertebrate skeletogenesis, Ca-carbonate crystallization occurs within a liquid-filled chamber. No explanation is given neither for the simultaneous occurrence of distinct polymorphs of Ca-carbonate within these liquid volumes, nor for the spatial arrangement of the mineral units which are always organized in species-specific structural sequences. Results of a series of physical characterizations applied to reference skeletal materials reveal the inadequacy of this liquid-filled chamber model to account for structural and chemical properties of the shell building units. Simultaneously, these data provide convergent pieces of evidence for a specific mode of crystallization developed throughout various invertebrate phyla, supporting the hypothesized “common strategy” based on a multi-scaled control exerted on formation of their calcareous hard parts.
机译:在无脊椎动物骨骼生成的几种最新模型中,碳酸钙的结晶发生在充满液体的室内。没有给出关于在这些液体体积中碳酸钙的独特多晶型物的同时发生的解释,也没有给出矿物单元的空间布置的解释,这些矿物单元总是以物种特定的结构顺序组织的。应用于参考骨骼材料的一系列物理表征的结果表明,这种充满液体的腔室模型不足以说明壳构建单元的结构和化学特性。同时,这些数据为遍布各种无脊椎动物门的特定结晶模式提供了收敛的证据,支持了基于对钙质硬质部分形成的多尺度控制的假想“共同策略”。

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