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Scan extract wrap compute—a 3D method to analyse morphological shape differences

机译:扫描提取包裹计算—一种分析形态学形状差异的3D方法

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摘要

Quantitative analysis of shape and form is critical in many biological disciplines, as context-dependent morphotypes reflect changes in gene expression and physiology, e.g., in comparisons of environment-dependent phenotypes, forward/reverse genetic assays or shape development during ontogenesis. 3D-shape rendering methods produce models with arbitrarily numbered, and therefore non-comparable, mesh points. However, this prevents direct comparisons. We introduce a workflow that allows the generation of comparable 3D models based on several specimens. Translocations between points of modelled morphotypes are plotted as heat maps and statistically tested. With this workflow, we are able to detect, model and investigate the significance of shape and form alterations in all spatial dimensions, demonstrated with different morphotypes of the pond-dwelling microcrustacean Daphnia. Furthermore, it allows the detection even of inconspicuous morphological features that can be exported to programs for subsequent analysis, e.g., streamline- or finite-element analysis.
机译:形状和形式的定量分析在许多生物学学科中都是至关重要的,因为上下文相关的形态型反映了基因表达和生理学的变化,例如,在环境依赖性表型的比较,正向/反向遗传测定或本体形成过程中的形状发展中。 3D形状渲染方法生成的模型具有任意编号的网格点,因此具有不可比较的网格点。但是,这阻止了直接比较。我们引入了一个工作流,该工作流允许基于多个样本生成可比较的3D模型。建模的形态型的点之间的易位被绘制为热图并进行统计测试。通过此工作流程,我们能够检测,建模和研究在所有空间维度上形状和形式变化的重要性,并通过池塘栖居的微甲壳类水蚤的不同形态型进行了证明。此外,它甚至可以检测出不明显的形态特征,这些形态特征可以导出到程序中进行后续分析,例如流线型或有限元分析。

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