...
首页> 外文期刊>Clinical oral implants research >Probabilistic analysis of peri-implant strain predictions as influenced by uncertainties in bone properties and occlusal forces.
【24h】

Probabilistic analysis of peri-implant strain predictions as influenced by uncertainties in bone properties and occlusal forces.

机译:受骨特性和咬合力不确定性影响的种植体周围应变预测的概率分析。

获取原文
获取原文并翻译 | 示例
           

摘要

OBJECTIVES: The purpose of this study was to examine the influence of variability in bone properties and loading on peri-implant crestal and cancellous bone strains using a probabilistic approach, in combination with finite element (FE) analysis. MATERIAL AND METHODS: Oblique occlusal loading was applied to a single endosseous implant embedded in a two-dimensional (2-D) FE model of a premolar section of a mandible. Perfect bonding was assumed at all interfaces. Five independent parameters (cortical bone thickness (T), cortical (ECORT) and cancellous (ECANC) bone Young's moduli, and vertical (FVERT) and horizontal (FHOR) occlusal forces) were assigned statistical distributions based on data in the literature. Two cancellous bone distribution models were examined, one with a lower mean and range (LM) and the second with a higher mean and range (HM) of cancellous bone Young's modulus values. Sets of randomly chosen values for the five parameters were selected from the distributions and FE analyses were performed for all randomly selected sets. RESULTS: In the LM model, 50% of the cases experienced hyper-physiologic peri-implant crestal strains in the region of commonly reported saucerization, compared with about 25% of the cases in the HM model. Relative probabilistic sensitivities (%) of bone strains to the independent input parameters (T, ECORT, ECANC, FVERT and FHOR) were as follows: 29, 11, 30, 13, and 17 for the LM model, and 17, 11, 35, 21, and 15 for the HM model, respectively. CONCLUSION: Probabilistic analyses of FE models suggest that up to twice as many cases in the LM distribution may be at risk of saucerization as compared with the HM distribution model. Although based on hypothetical distribution values and the limitations inherent to a 2-D analysis, this probabilistic study demonstrated that FE models are very sensitive to the often arbitrarily assigned values for cancellous bone Young's modulus, and also to values used for cortical bone thickness, when the cancellous bone modulus is low.
机译:目的:本研究的目的是结合概率分析和有限元分析,研究骨骼特性和负荷变化对种植体周围和松质骨应变的影响。材料和方法:斜向咬合载荷作用于嵌入在下颌前磨牙部分的二维(2-D)FE模型中的单个骨内植入物。在所有接口上都假定了完美的绑定。根据文献中的数据,分配了五个独立的参数(皮质骨厚度(T),皮质(ECORT)和松质(ECANC)骨杨氏模量以及垂直(FVERT)和水平(FHOR)咬合力)。研究了两种松质骨分布模型,一种具有较低的松质骨杨氏模量值的均值和范围(LM),另一种具有较高的均值和范围(HM)。从分布中选择五个参数的随机选择值的集合,并对所有随机选择的集合进行有限元分析。结果:在LM模型中,有50%的病例在通常报道的碟状化区域经历了超生理性的种植体周围组织应变,而在HM模型中约有25%。骨应变对独立输入参数(T,ECORT,ECANC,FVERT和FHOR)的相对概率敏感性(%)如下:LM模型为29、11、30、13和17,17、11、35 ,HM模型分别为21和15。结论:有限元模型的概率分析表明,与HM分布模型相比,LM分布中有多达两倍的病例可能面临碟形化风险。尽管基于假设的分布值和二维分析固有的局限性,但这项概率研究表明,有限元模型对于经常随意分配的松质骨杨氏模量值以及皮层骨厚度值非常敏感。松质骨模量低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号