Kaiser Markéta, Zikmund Tomáš, Vora Siddharth, Metscher Brian, Adameyko Igor, Richman Joy M, Kaiser Jozef
Central European Institute of Technology, Brno University of Technology, Brno, Czech Republic.
The Life Sciences Institute, The University of British Columbia, Vancouver, Canada.
Sci Data. 2024 Jun 13;11(1):626. doi: 10.1038/s41597-024-03455-1.
The chondrocranium provides the key initial support for the fetal brain, jaws and cranial sensory organs in all vertebrates. The patterns of shaping and growth of the chondrocranium set up species-specific development of the entire craniofacial complex. The 3D development of chondrocranium have been studied primarily in animal model organisms, such as mice or zebrafish. In comparison, very little is known about the full 3D human chondrocranium, except from drawings made by anatomists many decades ago. The knowledge of human-specific aspects of chondrocranial development are essential for understanding congenital craniofacial defects and human evolution. Here advanced microCT scanning was used that includes contrast enhancement to generate the first 3D atlas of the human fetal chondrocranium during the middle trimester (13 to 19 weeks). In addition, since cartilage and bone are both visible with the techniques used, the endochondral ossification of cranial base was mapped since this region is so critical for brain and jaw growth. The human 3D models are published as a scientific resource for human development.
软骨颅为所有脊椎动物的胎儿大脑、颌骨和颅部感觉器官提供关键的初始支撑。软骨颅的塑形和生长模式决定了整个颅面复合体的物种特异性发育。软骨颅的三维发育主要在动物模型生物体中进行研究,如小鼠或斑马鱼。相比之下,除了几十年前解剖学家绘制的图纸外,对于完整的三维人类软骨颅知之甚少。了解软骨颅发育的人类特异性方面对于理解先天性颅面缺陷和人类进化至关重要。在此,使用了先进的显微CT扫描技术,包括对比增强,以生成妊娠中期(13至19周)人类胎儿软骨颅的首个三维图谱。此外,由于所使用的技术能够同时显示软骨和骨骼,因此绘制了颅底软骨内成骨图谱,因为该区域对大脑和颌骨生长至关重要。这些人类三维模型作为人类发育的科学资源予以发表。