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Bone Fusion in Normal and Pathological Development is Constrained by the Network Architecture of the Human Skull

机译:正常和病理发展中的骨融合受人类头骨的网络体系结构的约束

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摘要

Craniosynostosis, the premature fusion of cranial bones, affects the correct development of the skull producing morphological malformations in newborns. To assess the susceptibility of each craniofacial articulation to close prematurely, we used a network model of the skull to quantify the link reliability (an index based on stochastic block models and Bayesian inference) of each articulation. We show that, of the 93 human skull articulations at birth, the few articulations that are associated with non-syndromic craniosynostosis conditions have statistically significant lower reliability scores than the others. In a similar way, articulations that close during the normal postnatal development of the skull have also lower reliability scores than those articulations that persist through adult life. These results indicate a relationship between the architecture of the skull and the specific articulations that close during normal development as well as in pathological conditions. Our findings suggest that the topological arrangement of skull bones might act as a structural constraint, predisposing some articulations to closure, both in normal and pathological development, also affecting the long-term evolution of the skull.
机译:颅骨融合症是颅骨的过早融合,影响了头骨的正确发育,从而在新生儿中产生了形态畸形。为了评估每个颅面关节过早闭合的敏感性,我们使用了颅骨的网络模型来量化每个关节的链接可靠性(基于随机块模型和贝叶斯推断的指数)。我们显示,在出生时的93个人类颅骨关节中,与非综合征性颅脑前突病相关的少数关节具有统计学上显着低于其他关节的可靠性评分。以类似的方式,在正常的头骨出生后发育过程中闭合的关节比在成人生活中持续存在的关节具有较低的可靠性得分。这些结果表明头骨的结构和在正常发育以及病理状况下闭合的特定关节之间的关系。我们的发现表明,颅骨的拓扑结构可能会作为结构性约束,在正常和病理发展中容易导致某些关节闭合,也影响了颅骨的长期进化。

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