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A coupled reaction-diffusion-strain model predicts cranial vault formation in development and disease

机译:耦合反应 - 扩散菌株模型预测发展和疾病中的颅穹窿形成

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How cells utilize instructions provided by genes and integrate mechanical forces generated by tissue growth to produce morphology is a fundamental question of biology. Dermal bones of the vertebrate cranial vault are formed through the direct differentiation of mesenchymal cells on the neural surface into osteoblasts through intramembranous ossification. Here we join a self-organizing Turing mechanism, computational biomechanics, and experimental data to produce a 3D representative model of the growing cerebral surface, cranial vault bones, and sutures. We show how changes in single parameters regulating signaling during osteoblast differentiation and bone formation may explain cranial vault shape variation in craniofacial disorders. A key result is that toggling a parameter in our model results in closure of a cranial vault suture, an event that occurred during evolution of the cranial vault and that occurs in craniofacial disorders. Our approach provides an initial and important step toward integrating biomechanics into the genotype phenotype map to explain the production of variation in head morphology by developmental mechanisms.
机译:细胞如何利用基因提供的指令并整合由组织生长产生的机械力以产生形态是生物学的基本问题。脊椎动物颅壁的皮肤骨骼通过间充质细胞在神经表面上的直接分化形成通过膜状骨化成骨细胞。在这里,我们加入自组织图灵机制,计算生物力学和实验数据,以生产生长脑表面,颅穹窿骨骼和缝合线的3D代表性模型。我们展示了在成骨细胞分化和骨骼形成期间调节信号传导的单个参数的变化可以解释颅面疾病中的颅内穹窿形状变化。一个关键的结果是,在我们的模型中切换参数导致颅骨缝合轮廓的关闭,这是在颅骨拱顶的演变中发生的事件,并且发生在颅面障碍中。我们的方法提供了将生物力学集成到基因型表型图中的初始和重要步骤,以解释通过发育机制来制造头部形态的变化。

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