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测量牙釉质厚度:地形图的形态学和功能相关性

Measuring Dental Enamel Thickness: Morphological and Functional Relevance of Topographic Mapping.

作者信息

Gaboutchian Armen V, Knyaz Vladimir A, Maschenko Evgeniy N, Dac Le Xuan, Maksimov Anatoly A, Emelyanov Anton V, Korost Dmitry V, Stepanov Nikita V

机构信息

Medical Institute, Peoples' Friendship University (RUDN), 117198 Moscow, Russia.

Phystech School of Applied Mathematics and Informatics, Moscow Institute of Physics and Technology (MIPT), 141701 Dolgoprudny, Russia.

出版信息

J Imaging. 2023 Jun 23;9(7):127. doi: 10.3390/jimaging9070127.

Abstract

The interest in the development of dental enamel thickness measurement techniques is connected to the importance of metric data in taxonomic assessments and evolutionary research as well as in other directions of dental studies. At the same time, advances in non-destructive imaging techniques and the application of scanning methods, such as micro-focus-computed X-ray tomography, has enabled researchers to study the internal morpho-histological layers of teeth with a greater degree of accuracy and detail. These tendencies have contributed to changes in established views in different areas of dental research, ranging from the interpretation of morphology to metric assessments. In fact, a significant amount of data have been obtained using traditional metric techniques, which now should be critically reassessed using current technologies and methodologies. Hence, we propose new approaches for measuring dental enamel thickness using palaeontological material from the territories of northern Vietnam by means of automated and manually operated techniques. We also discuss method improvements, taking into account their relevance for dental morphology and occlusion. As we have shown, our approaches demonstrate the potential to form closer links between the metric data and dental morphology and provide the possibility for objective and replicable studies on dental enamel thickness through the application of automated techniques. These features are likely to be effective in more profound taxonomic research and for the development of metric and analytical systems. Our technique provides scope for its targeted application in clinical methods, which could help to reveal functional changes in the masticatory system. However, this will likely require improvements in clinically applicable imaging techniques.

摘要

对牙釉质厚度测量技术发展的关注,与度量数据在分类学评估、进化研究以及牙科研究其他方向的重要性相关。与此同时,无损成像技术的进步以及扫描方法(如微焦点计算机X射线断层扫描)的应用,使研究人员能够更精确、更详细地研究牙齿的内部形态组织层。这些趋势促使牙科研究不同领域的既定观点发生了变化,从形态学解释到度量评估。事实上,已经使用传统度量技术获得了大量数据,现在应该使用当前技术和方法对这些数据进行批判性重新评估。因此,我们提出了利用越南北方地区古生物学材料,通过自动化和手动操作技术测量牙釉质厚度的新方法。我们还讨论了方法的改进,同时考虑到它们与牙齿形态学和咬合的相关性。正如我们所展示的,我们的方法显示了在度量数据和牙齿形态学之间建立更紧密联系的潜力,并通过应用自动化技术为牙釉质厚度的客观和可重复研究提供了可能性。这些特点可能在更深入的分类学研究以及度量和分析系统的开发中有效。我们的技术为其在临床方法中的靶向应用提供了空间,这可能有助于揭示咀嚼系统的功能变化。然而,这可能需要改进临床适用的成像技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe78/10381522/43e5859122b1/jimaging-09-00127-g001.jpg

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