Faculty of Dental Science, Kyushu University, Fukuoka, Japan.
Academic Society of Mathematical Medicine, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
Sci Rep. 2021 Apr 26;11(1):8995. doi: 10.1038/s41598-021-88255-y.
The median palatal suture serves as a growth center for the maxilla; inadequate growth at this site causes malocclusion and dental crowding. However, the pattern formation mechanism of palatal sutures is poorly understood compared with that of calvarial sutures such as the sagittal suture. In the present study, therefore, we compared the morphological characteristics of sagittal and palatal sutures in human bone specimens. We found that palatal suture width was narrower than sagittal suture width, and the interdigitation amplitude of the palatal suture was lower than that of the sagittal suture. These tendencies were also observed in the neonatal stage. However, such differences were not observed in other animals such as chimpanzees and mice. We also used a mathematical model to reproduce the differences between palatal and sagittal sutures. After an extensive parameter search, we found two conditions that could generate the difference in interdigitation amplitude and suture width: bone differentiation threshold [Formula: see text] and growth speed c. We discuss possible biological interpretations of the observed pattern difference and its cause.
中隔牙槽嵴为上颌骨的生长中心;该部位生长不足会导致错颌畸形和牙齿拥挤。然而,与矢状缝等颅骨缝相比,人们对腭缝的模式形成机制了解甚少。因此,在本研究中,我们比较了人类骨标本中矢状缝和腭缝的形态特征。我们发现,腭缝的宽度比矢状缝的宽度窄,腭缝的交错幅度低于矢状缝的交错幅度。在新生儿期也观察到了这种趋势。然而,在黑猩猩和老鼠等其他动物中并没有观察到这种差异。我们还使用了一个数学模型来重现腭缝和矢状缝之间的差异。经过广泛的参数搜索,我们发现了两种可以产生交错幅度和缝合宽度差异的条件:骨分化阈值[公式:见文本]和生长速度 c。我们讨论了观察到的模式差异及其原因的可能生物学解释。