Yi Qiao, Feng Xiaoyu, Zhang Chunmei, Wang Xiumei, Wu Xiaoshan, Wang Jingsong, Cui Fuzhai, Wang Songlin
Beijing Key Laboratory of Tooth Regeneration and Function Reconstruction, Capital Medical University School of Stomatology, Beijing, P. R. China.
State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing, P. R. China.
Connect Tissue Res. 2021 Jul;62(4):402-410. doi: 10.1080/03008207.2020.1758684. Epub 2020 Apr 30.
: Even though differences between deciduous and permanent dentin have been widely studied, their dynamic mechanical behavior has never been compared. The objective of the present study was to quantify the differences between deciduous and permanent dentin under cyclic mechanical loading, which is similar to masticatory stress.: Deciduous and permanent teeth, respectively from children (9 ~ 12 years old) and young people (18 ~ 25 years old), were wet-sectioned perpendicular to the longitudinal axis and the central specimens of coronal dentin were evaluated by nanoscopic dynamic mechanical analysis (nanoDMA).: The average storage, loss, and complex moduli, as well as the hardness of deciduous dentin were significantly (p < 0.05) lower than those of permanent dentin. Moreover, the tan δ value of permanent dentin was significantly (p < 0.05) lower than that of deciduous dentin across the loading frequency range, indicating that viscoelastic behavior and loss of elastic energy were significantly reduced in the stiffer permanent dentin. All the nanoDMA responses showed a significant influence of the dynamic loading frequency (p < 0.05): Both deciduous and permanent dentin showed reduced viscoelasticty with increased loading frequencies.: Compared with deciduous dentin, permanent dentin exhibits higher stiffness with reduced energy loss during deformation, and therefore superior mechanical characteristics for the mastication process.
尽管乳牙和恒牙牙本质之间的差异已得到广泛研究,但它们的动态力学行为从未被比较过。本研究的目的是量化在循环机械加载下乳牙和恒牙牙本质之间的差异,这种加载类似于咀嚼应力。
分别取自儿童(9至12岁)和年轻人(18至25岁)的乳牙和恒牙,垂直于纵轴进行湿切片,并通过纳米级动态力学分析(nanoDMA)评估冠部牙本质的中央标本。
乳牙牙本质的平均储能模量、损耗模量、复数模量以及硬度均显著低于恒牙牙本质(p < 0.05)。此外,在整个加载频率范围内,恒牙牙本质的损耗因子(tan δ)值显著低于乳牙牙本质(p < 0.05),这表明在更硬的恒牙牙本质中,粘弹性行为和弹性能量损失显著降低。所有nanoDMA响应均显示动态加载频率有显著影响(p < 0.05):乳牙和恒牙牙本质的粘弹性均随加载频率增加而降低。
与乳牙牙本质相比,恒牙牙本质在变形过程中表现出更高的刚度和更低的能量损失,因此在咀嚼过程中具有更好的力学特性。