Zhou Guanjun, Zhang Xiaoli, Qie Hui, Li Chenxi, Lu Lin, Shan Lihua
Department of Orthodontics, The Second Hospital of Hebei Medical University.
Department of Orthodontics, The Three People's Hospital of Shijiazhuang.
Dent Mater J. 2018 Sep 30;37(5):851-857. doi: 10.4012/dmj.2017-359. Epub 2018 Sep 14.
To investigate the cause of mandibular implant loss, we evaluated the stress distribution in the bone under bite force when the miniimplant was near the root using three-dimensional finite element analysis. Our analysis involved four finite element models with different distances between the implant and adjacent tooth root and three loading conditions. With loading of the tooth only or both the tooth and implant, the peak stress within the bone around the implant neck, displacement, and stress surrounding the bone near the root increased as the distance between the implant and root decreased. However, with separate loading of the implant, the stress did not correlate with the distance between the implant and root. Application of bite force increases stress within bones surrounding mini-implants near the roots of adjacent teeth and may threaten implant stability, but simple orthodontic loading has little effect on the stress distribution at the mini-implant-bone interface.
为了研究下颌种植体脱落的原因,我们使用三维有限元分析评估了微型种植体靠近牙根时咬合力作用下骨内的应力分布。我们的分析涉及四个种植体与相邻牙根之间距离不同的有限元模型以及三种加载条件。仅对牙齿加载或对牙齿和种植体同时加载时,种植体颈部周围骨内的峰值应力、位移以及牙根附近骨周围的应力会随着种植体与牙根之间距离的减小而增加。然而,单独对种植体加载时,应力与种植体和牙根之间的距离无关。咬合力的施加会增加相邻牙齿牙根附近微型种植体周围骨内的应力,并可能威胁种植体稳定性,但单纯的正畸加载对微型种植体-骨界面处的应力分布影响不大。