Clift S E, Fisher J, Watson C J
School of Mechanical Engineering, University of Bath.
Proc Inst Mech Eng H. 1992;206(4):233-41. doi: 10.1243/PIME_PROC_1992_206_295_02.
The long-term clinical performance of a dental implant is dependent upon the preservation of good quality bone surrounding the implant and a sound interface between the bone and the biomaterial. Good quality bone is itself dependent upon the appropriate level of bone remodelling necessary to maintain the bone density and the avoidance of bone microfracture and failure. Both processes are governed by the stress and strain distribution in the bone. In this study, a dental implant which had the same geometry as the Branemark system, but with a bioactive surface coating added to produce a direct bond to the bone, was analysed. A finite element stress and strain analysis has been carried out for a range of bone density distributions under axial and lateral loading. The predictions indicated that there was no evidence of strain shielding around the neck of the implant. With lateral loading, high values of von Mises stresses (18 M Pa) were predicted around the neck of the implant. A reduction in the elastic modulus of the bone around the neck of the implant by a factor of 16 only produced a twofold reduction in the peak stress. This resulted in stress levels capable of inducing fatigue failure in this much weaker bone. This analysis has demonstrated that it is extremely important to have good quality dense bone around the neck of the implant to withstand the predicted peak stresses of between 9 and 18 M Pa. Failure to achieve this after implantation and subsequent healing may result in local fatigue failure and resorption at the neck upon resumption of physiological loading.
牙种植体的长期临床性能取决于种植体周围优质骨组织的保留以及骨与生物材料之间良好的界面。优质骨组织本身又依赖于维持骨密度所需的适当骨重塑水平,以及避免骨微骨折和骨失效。这两个过程都受骨内应力和应变分布的支配。在本研究中,分析了一种与Branemark系统具有相同几何形状,但添加了生物活性表面涂层以与骨形成直接结合的牙种植体。针对轴向和侧向加载下一系列骨密度分布进行了有限元应力和应变分析。预测结果表明,在种植体颈部周围没有应变屏蔽的迹象。在侧向加载时,预计种植体颈部周围的冯·米塞斯应力值较高(18兆帕)。种植体颈部周围骨的弹性模量降低16倍,仅使峰值应力降低两倍。这导致应力水平足以在这种脆弱得多的骨中引发疲劳失效。该分析表明,在种植体颈部周围拥有优质致密骨以承受预计的9至18兆帕峰值应力极为重要。植入后及后续愈合过程中若无法实现这一点,在恢复生理负荷时,可能会导致颈部局部疲劳失效和吸收。