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Beyond the functional matrix hypothesis: A network null model of human skull growth for the formation of bone articulations

机译:超越功能矩阵假说:用于骨骼连接形成的人类头骨生长的网络无效模型

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Craniofacial sutures and synchondroses form the boundaries among bones in the human skull, providing functional, developmental and evolutionary information. Bone articulations in the skull arise due to interactions between genetic regulatory mechanisms and epigenetic factors such as functional matrices (soft tissues and cranial cavities), which mediate bone growth. These matrices are largely acknowledged for their influence on shaping the bones of the skull; however, it is not fully understood to what extent functional matrices mediate the formation of bone articulations. Aiming to identify whether or not functional matrices are key developmental factors guiding the formation of bone articulations, we have built a network null model of the skull that simulates unconstrained bone growth. This null model predicts bone articulations that arise due to a process of bone growth that is uniform in rate, direction and timing. By comparing predicted articulations with the actual bone articulations of the human skull, we have identified which boundaries specifically need the presence of functional matrices for their formation. We show that functional matrices are necessary to connect facial bones, whereas an unconstrained bone growth is sufficient to connect non-facial bones. This finding challenges the role of the brain in the formation of boundaries between bones in the braincase without neglecting its effect on skull shape. Ultimately, our null model suggests where to look for modified developmental mechanisms promoting changes in bone growth patterns that could affect the development and evolution of the head skeleton.
机译:颅面缝合线和软骨接合处形成了人类头骨中骨骼之间的边界,从而提供了功能,发育和进化方面的信息。由于遗传调控机制与表观遗传因素(例如功能性基质(软组织和颅腔))之间的相互作用而引起了头骨中的骨骼关节,而功能性基质(骨骼组织和软组织)介导了骨骼的生长。这些矩阵因其对头骨形状的影响而广为人知。然而,尚不完全了解功能性基质在多大程度上介导了骨关节的形成。为了确定功能矩阵是否是指导骨关节形成的关键发展因素,我们建立了头骨的网络无效模型,该模型可模拟不受约束的骨骼生长。该无效模型预测由于速率,方向和时间一致的骨骼生长过程而产生的骨骼关节。通过将预测的关节与人类头骨的实际骨骼关节进行比较,我们已经确定了哪些边界特别需要功能矩阵的形成。我们显示功能矩阵是连接面部骨骼所必需的,而不受约束的骨骼生长足以连接非面部骨骼。这一发现挑战了大脑在大脑箱中骨骼之间边界形成中的作用,而没有忽略其对头骨形状的影响。最终,我们的无效模型会建议在哪里寻找能够促进骨骼生长方式变化的改良发育机制,这种变化会影响头部骨骼的发育和进化。

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