Anniwaer Annikaer, Yin Zhengrong, Zhu Jiakang, Jin Chunxiao, Muhetaer Aihemaiti, Huang Cui
State Key Laboratory of Oral & Maxillofacial Reconstruction and Regeneration, Key Laboratory of Oral Biomedicine Ministry of Education, Hubei Key Laboratory of Stomatology, School & Hospital of Stomatology, Wuhan University, Wuhan, PR China.
J Prosthodont Res. 2025 Apr 14;69(2):285-293. doi: 10.2186/jpr.JPR_D_24_00064. Epub 2024 Oct 1.
This study evaluated the effects of screw preload loss on three implant systems, both in silico and in vitro.
Three finite element analysis (FEA) models of implant restorations were created using bone-level (BL, 4.8×12 mm; BLX, 4.5×12 mm) and tissue-level (TL, 4.8×12 mm) implant systems. The screws in each group were subjected to preloads of 100 N and 200 N, with an additional 130 N load applied to the crown tops. An in vitro study of the principal strain was conducted using digital image correlation (DIC) under the same conditions as for the FEA models. The results were evaluated for von Mises stress, principal strain, and sensitivity index.
During loading, the highest stress levels were observed in the implants and screws. In the BL group, the screws experienced the highest von Mises stress at 466.04 MPa and 795.26 MPa in the 100 N and 200 N groups, respectively. The BLX group showed the highest von Mises stress at 439.33 MPa and 780.88 MPa in the implants in the 100 N and 200 N groups. Sensitivity analysis revealed that the screws and abutments in the TL group were significantly more affected by the preload changes.
The abutment in the TL group was particularly sensitive to preload changes compared with those in the BL and BLX groups. Variations in the preload significantly affect the stress distribution in implants and screws. Maintaining screw preload stability under loading is crucial in clinical practice to prevent mechanical failure.
本研究在计算机模拟和体外实验中评估了螺钉预紧力损失对三种种植系统的影响。
使用骨水平(BL,4.8×12 mm;BLX,4.5×12 mm)和软组织水平(TL,4.8×12 mm)种植系统创建了三个种植修复体的有限元分析(FEA)模型。每组螺钉分别施加100 N和200 N的预紧力,并在冠顶额外施加130 N的载荷。在与FEA模型相同的条件下,使用数字图像相关技术(DIC)对主应变进行体外研究。对结果进行了冯·米塞斯应力、主应变和灵敏度指数评估。
在加载过程中,种植体和螺钉中的应力水平最高。在BL组中,100 N组和200 N组的螺钉分别在466.04 MPa和795.26 MPa时承受最高的冯·米塞斯应力。BLX组在100 N组和200 N组的种植体中,分别在439.33 MPa和780.88 MPa时显示出最高的冯·米塞斯应力。敏感性分析表明,TL组中的螺钉和基台受预紧力变化的影响明显更大。
与BL组和BLX组相比,TL组中的基台对预紧力变化特别敏感。预紧力的变化显著影响种植体和螺钉中的应力分布。在临床实践中,保持加载过程中螺钉预紧力的稳定性对于防止机械故障至关重要。