Wu Bin, Li Na, Liu Mao, Cheng Ke, Jiang Di, Yi Yang, Ma Songyun, Yan Bin, Lu Yi
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). 2023 Oct 6;16(19):6582. doi: 10.3390/ma16196582.
Periodontal ligament (PDL) is mainly composed of collagen fiber bundles, and the content of collagen fiber is an important factor affecting the mechanical properties of PDL. Based on this, the purpose of this study is to explore the effect of the PDL collagen fiber content on its viscoelastic mechanical behavior. Transverse and longitudinal samples of different regions of PDL were obtained from the human maxilla. The fiber content at different regions of human PDL was quantitatively measured using image processing software, and a new viscoelastic constitutive model was constructed based on the fiber content. The nano-indentation experiment was carried out with a loading rate of 0.5 mN·s, a peak load of 3 mN, and a holding time of 200 s, and the model parameters were obtained through the experiment data. The results showed that with the increase of fiber content, the deformation resistance of PDL also increased, and compared with the neck and middle region, the compressive strain in the apical region of PDL was the largest. The range of reduced elastic modulus of human PDL was calculated to be 0.39~5.08 MPa. The results of the experimental data and the viscoelastic constitutive model fit well, indicating that the model can well describe the viscoelastic behavior of human PDL.
牙周韧带(PDL)主要由胶原纤维束组成,胶原纤维的含量是影响PDL力学性能的重要因素。基于此,本研究的目的是探讨PDL胶原纤维含量对其粘弹性力学行为的影响。从人类上颌骨获取PDL不同区域的横向和纵向样本。使用图像处理软件定量测量人类PDL不同区域的纤维含量,并基于纤维含量构建了一种新的粘弹性本构模型。以0.5 mN·s的加载速率、3 mN的峰值载荷和200 s的保持时间进行纳米压痕实验,并通过实验数据获得模型参数。结果表明,随着纤维含量的增加,PDL的抗变形能力也增强,并且与颈部和中部区域相比,PDL根尖区域的压缩应变最大。计算得出人类PDL的折合弹性模量范围为0.39~5.08 MPa。实验数据与粘弹性本构模型的结果拟合良好,表明该模型能够很好地描述人类PDL的粘弹性行为。