颅缝病
颅穹窿
颅骨
头盖骨
机械生物学
克劳松综合征
骨生长
顶骨
纤维接头
解剖
生物医学工程
生物
医学
生物化学
体外
内分泌学
作者
Arsalan Marghoub,Joseph Libby,Christian Babbs,Yiannis Ventikos,Michael J. Fagan,Mehran Moazen
标识
DOI:10.1103/physrevlett.122.048103
摘要
The newborn mammalian cranial vault consists of five flat bones that are joined together along their edges by soft fibrous tissues called sutures. Early fusion of these sutures leads to a medical condition known as craniosynostosis. The mechanobiology of normal and craniosynostotic skull growth is not well understood. In a series of previous studies, we characterized and modeled radial expansion of normal and craniosynostotic (Crouzon) mice. Here, we describe a new modeling algorithm to simulate bone formation at the sutures in normal and craniosynostotic mice. Our results demonstrate that our modeling approach is capable of predicting the observed ex vivo pattern of bone formation at the sutures in the aforementioned mice. The same approach can be used to model different calvarial reconstruction in children with craniosynostosis to assist in the management of this complex condition.
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