Mousa Mohammed, Husein Adam, El-Anwar Mohamed, Yusoff Norwahida, Alhelay Hussein, Alazhari Badi, Alsharari Fadhel, Alzarea Bader, Sghaireen Mohammed, Abdullah Johari Yap
Prosthetic Dental Sciences, College of Dentistry, Jouf University, Sakaka, Saudia Arabia.
School of Dental Sciences, Universiti Sains Malaysia, Kubang Kerian, Kelantan, Malaysia.
PLoS One. 2025 May 9;20(5):e0321710. doi: 10.1371/journal.pone.0321710. eCollection 2025.
This study aimed to evaluate support (the resistance to tissue-ward movement) and strain distribution in unilateral obturators with four designs using Digital Image Correlation (DIC) and Finite Element Analysis (FEA). Twelve epoxy-resin models were prepared to receive removable obturators that have four designs, including acrylic resin-based obturators (ARO), linear (LDO), tripodal (TDO), and a newly modified one termed fully tripodal design obturator (FTDO) were used for DIC. The models were installed in a DIC set to receive a vertical load of 150N. The strain on the dentate and defect sides was evaluated using DIC software. Mathematically, four finite element models were prepared to receive vertical and lateral loads of 100N on two points. The support and strain were assessed using the ANSYS workbench. Using DIC, the ARO demonstrated the highest strain values on the defect area and as an entire prosthesis, followed by the LDO on the defect side. Using FEA, the TDO produced the highest strain value with anterior (oblique) and posterior loads. LDO produced the lowest support and highest strain on the anterior teeth compared to TDO and FTDO. ARO resulted in the highest total strain, while the TDO produced the lowest. Both TDO and FTDO were comparable in terms of strains and support.
本研究旨在使用数字图像相关技术(DIC)和有限元分析(FEA)评估四种设计的单侧闭孔器的支持力(对组织向移动的阻力)和应变分布。制备了12个环氧树脂模型,用于安装具有四种设计的可摘闭孔器,包括丙烯酸树脂基闭孔器(ARO)、线性(LDO)、三脚架式(TDO),以及一种新改良的全三脚架式设计闭孔器(FTDO),用于DIC研究。将模型安装在DIC装置中,施加150N的垂直载荷。使用DIC软件评估齿侧和缺损侧的应变。在数学上,制备了四个有限元模型,在两点上施加100N的垂直和侧向载荷。使用ANSYS工作台评估支持力和应变。使用DIC技术,ARO在缺损区域和整个假体上显示出最高的应变值,其次是缺损侧的LDO。使用FEA技术,TDO在前部(斜向)和后部载荷作用下产生最高的应变值。与TDO和FTDO相比,LDO在前牙上产生的支持力最低,应变最高。ARO导致的总应变最高,而TDO产生的最低。TDO和FTDO在应变和支持力方面相当。