Wu Bin, Huang Chenfeng, Li Na, Lu Yi, Yi Yang, Yan Bin, Jiang Di
College of Mechanical and Electronic Engineering, Nanjing Forestry University, Nanjing 210037, China.
Department of Orthodontics, Affiliated Hospital of Stomatology, Nanjing Medical University, Nanjing 210029, China.
Materials (Basel). 2025 Feb 6;18(3):705. doi: 10.3390/ma18030705.
Collagen fibers of the Periodontal ligament (PDL) play a crucial role in determining its mechanical properties. Based on this premise, we investigated the effect of the volume fraction of human PDL collagen fibers on the hyperelastic mechanical behavior under transient loading. Samples were obtained from different root regions (neck, middle, and apex) of the PDL, prepared from fresh human anterior teeth. The collagen fibers volume fraction in various regions of the PDL was quantified by staining techniques combined with image processing software. The collagen fiber volume fractions were found to be 60.3% in the neck region, 63.1% in the middle region, and 52.0% in the apex region. A new hyperelastic constitutive model was constructed based on the volume fraction. A uniaxial tensile test was conducted on these samples, and the accuracy of the constitutive model was validated by fitting the test data. Also, relevant model parameters were derived. The results demonstrated that human PDL exhibited hyperelastic mechanical properties on the condition of transient loading. With an increase in the volume fraction of collagen fibers, the tensile resistance of the PDL was enhanced, demonstrating more significant hyperelastic mechanical properties. The hyperelastic constitutive model showed a good fit with the experimental results (R > 0.997), describing the hyperelastic mechanical properties of the human PDL effectively.
牙周韧带(PDL)的胶原纤维在决定其力学性能方面起着关键作用。基于这一前提,我们研究了人牙周韧带胶原纤维体积分数对瞬态加载下超弹性力学行为的影响。样本取自新鲜人上前牙制备的牙周韧带不同牙根区域(颈部、中部和根尖)。通过染色技术结合图像处理软件对牙周韧带不同区域的胶原纤维体积分数进行定量。结果发现,颈部区域的胶原纤维体积分数为60.3%,中部区域为63.1%,根尖区域为52.0%。基于体积分数构建了一个新的超弹性本构模型。对这些样本进行单轴拉伸试验,并通过拟合试验数据验证了本构模型的准确性。同时,推导了相关的模型参数。结果表明,人牙周韧带在瞬态加载条件下表现出超弹性力学性能。随着胶原纤维体积分数的增加,牙周韧带的拉伸阻力增强,表现出更显著的超弹性力学性能。超弹性本构模型与实验结果拟合良好(R>0.997),有效地描述了人牙周韧带的超弹性力学性能。