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颅缝线共同作用,将应变分布在爬行动物的颅骨中。

Cranial sutures work collectively to distribute strain throughout the reptile skull.

机构信息

Medical and Biological Engineering Research Group, School of Engineering, University of Hull, Hull HU6 7RX, UK.

出版信息

J R Soc Interface. 2013 Jun 26;10(86):20130442. doi: 10.1098/rsif.2013.0442. Print 2013 Sep 6.

Abstract

The skull is composed of many bones that come together at sutures. These sutures are important sites of growth, and as growth ceases some become fused while others remain patent. Their mechanical behaviour and how they interact with changing form and loadings to ensure balanced craniofacial development is still poorly understood. Early suture fusion often leads to disfiguring syndromes, thus is it imperative that we understand the function of sutures more clearly. By applying advanced engineering modelling techniques, we reveal for the first time that patent sutures generate a more widely distributed, high level of strain throughout the reptile skull. Without patent sutures, large regions of the skull are only subjected to infrequent low-level strains that could weaken the bone and result in abnormal development. Sutures are therefore not only sites of bone growth, but could also be essential for the modulation of strains necessary for normal growth and development in reptiles.

摘要

颅骨由许多骨骼组成,这些骨骼在缝合线处连接在一起。这些缝合线是生长的重要部位,随着生长的停止,一些缝合线融合,而另一些则保持开放。它们的力学行为以及它们如何与不断变化的形态和载荷相互作用,以确保颅面发育的平衡,目前仍知之甚少。早期的缝合线融合常常导致畸形综合征,因此我们必须更清楚地了解缝合线的功能。通过应用先进的工程建模技术,我们首次揭示了开放的缝合线在爬行动物颅骨中产生了更广泛分布的高水平应变。没有开放的缝合线,颅骨的大部分区域只能承受罕见的低水平应变,这可能会削弱骨骼并导致异常发育。因此,缝合线不仅是骨骼生长的部位,而且对于调节应变也很重要,这种应变对于爬行动物的正常生长和发育是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9cb/3730698/294bb163722e/rsif20130442-g1.jpg

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