Topkaya Tolga, Solmaz Murat Yavuz
Batman University, Engineering and Architecture Faculty, Mechanical Engineering Department, Turkey.
Fırat University Engineering Faculty, Mechanical Engineering Department, Turkey.
J Biomech. 2015 Jul 16;48(10):2102-9. doi: 10.1016/j.jbiomech.2015.03.006. Epub 2015 Mar 20.
The present study evaluated the effects of ball anchor abutment attached to implants with a 4.30 mm diameter and 11 mm insert length on stress distribution in a patient without any remaining teeth in the lower jaw. In the study, the stress analysis was performed for five different configurations (2 with 4 implant-supported and 3 with 2 implant-supported) and three different loading types using ANSYS Workbench software. The stresses measured in the 4 implant-supported models were lower compared to the stresses measured in the 2 implant-supported models. The stresses on the implants intensified on the cervical region of the implants. When the effects of the loading sites on the stress were examined, the loading on the first molar tooth produced the highest stresses on the implants.
本研究评估了直径4.30毫米、植入长度11毫米的球锚基台附着于下颌无余留牙患者种植体上时对应力分布的影响。在该研究中,使用ANSYS Workbench软件对五种不同构型(2种为4种植体支持,3种为2种植体支持)和三种不同加载类型进行了应力分析。与2种植体支持模型中测得的应力相比,4种植体支持模型中测得的应力更低。种植体上的应力在种植体颈部区域增强。当检查加载部位对应力的影响时,第一磨牙处的加载在种植体上产生的应力最高。