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Maturation of the human foetal basioccipital: quantifying shape changes in second and third trimesters using elliptic Fourier analysis

机译:人胎儿Basioccipital的成熟:使用椭圆傅立叶分析定量形状的二次和第三三个三个球体变化

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摘要

During prenatal development, the brain is considered the best maturation criterion for the estimation of foetal physiological age, regardless of the conditions of pregnancy. Unfortunately, the brain lyses very quickly after death, but fortunately, the brain also has a major influence over osseous structures of the cranial base during development. Therefore, we considered the osseous structures of the cranial base potential indirect maturation indicators of foetal age. Because of its early formation and robustness, the basioccipital is a cranial base bone that is often used for studies in biological anthropology. Studies generally use conventional morphometry and bone size ratio to highlight morphological changes occurring during the foetal period and to create age estimation methods. These methods usually define thresholds beyond which the morphology of the basioccipital changes, but do not fully consider the form that might be valuable precisely to visualize its development or improve age estimation methods. Using geometric morphometric methods, the present study aims to analyse the development of the basioccipital during the second and third trimesters of foetal life by quantifying and visualizing shape changes in the inferior view. Basioccipital shapes are used as direct indicators of the maturation of the cranial base and as indirect indicators of the maturation of the brain and, by extension, the whole body. A sample of 221 anonymized computed tomographic (CT) scans of normal foetuses, ranging from 18 to 41 gestational weeks (GW), was used. Elliptic Fourier analysis (EFA) was used to quantify the basioccipital outline, and maturation stages were established to visualize shape changes with a principal component analysis. Our study allowed us precisely to quantify and continuously visualize shape changes occurring during prenatal life. Additionally, this study provides the first evidence of two distinct linear shape trajectories of the basioccipital. Foetuses aged between 18 and 26 GW have a rapid shape change with well‐individualized stages, whereas shape changes are less visible in the second trajectory (27–41 GW). Furthermore, intra‐stage shape variation is higher for the basioccipital at the beginning of the second and third trimesters than at the first trimester. By using geometric morphometric methods and EFA, this study shows that it was possible to go beyond classical methods. Indeed, the developed methodology enabled the first quantification of the overall shape changes of the basioccipital between gestational ages. The morphological shape changes throughout the foetal period can be useful for anthropological studies and provide new perspectives for immature age estimation methods.
机译:在产前发育过程中,无论怀孕条件如何,大脑都被认为是估计胎儿生理年龄的最佳成熟标准。不幸的是,死亡后脑裂解的脑效果很快,但幸运的是,大脑在开发过程中对颅底的骨质结构产生了重大影响。因此,我们认为胎儿年龄颅底潜在间接成熟指标的骨质结构。由于其早期形成和鲁棒性,Basioccipital是一种颅基骨,通常用于生物人类学的研究。研究通常使用常规形变和骨尺寸比以突出胎儿期间发生的形态学变化并产生年龄估计方法。这些方法通常定义超出哪个阈值,超出了Basioccipital变化的形态,但没有完全考虑可能是有价值的表格,以便可视化其发展或改善年龄估计方法。本研究采用几何形态学方法,目前的研究旨在通过量化和可视化左侧视图中的形状变化来分析胎儿寿命的第二和第三三个三个三个三个三个三个三个三个月的发展。 Basioccipital形状用作颅底成熟的直接指标,并作为大脑成熟的间接指标,并通过延伸,整个身体。使用221个匿名的计算断层摄影(CT)扫描的常规胎儿的样本,范围为18至41个妊娠周(GW)。椭圆傅立叶分析(EFA)用于量化Basioccipital轮廓,并建立成熟阶段以通过主要成分分析来可视化形状变化。我们的研究允许我们精确地量化和不断地在产前生活期间发生的形状变化。此外,本研究提供了基础癌的两个不同线性形状轨迹的第一证据。 18至26gW之间的胎儿具有良好个性化的阶段的快速变化,而形状变化在第二轨迹(27-41 GW)中不太可见。此外,在第二和第三三粒的开始时,阶段内的形状变化比在前三个月的开始时较高。通过使用几何形态学方法和EFA,本研究表明,可以超越古典方法。实际上,开发的方法使得首先量化了妊娠期之间Basioccipital的整体形状变化。整个胎儿期间的形态形状变化可用于人类学研究,并为不成熟的年龄估计方法提供新的视角。

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