Satoh Takuya, Maeda Yoshinobu, Komiyama Yataro
Division of Interdisciplinary Dentistry, Faculty of Dentistry, Osaka University, Osaka, Japan.
Int J Oral Maxillofac Implants. 2005 Jul-Aug;20(4):533-9.
Since natural dental arches usually form Monson or Spee occlusal curvatures among the posterior teeth, they tend to incline in mesial and lingual directions. The purpose of this study was to examine the biomechanical rationale for placing implants according to these curvatures in the mandibular posterior region.
A 3-dimensional finite element model was created in which 2 implants were placed in the mandibular molar area. Stress distribution in the bone around the implants was analyzed under different distal implant inclinations.
Stress in the cervical area of the mesial and distal implants and the surrounding bone was higher when the implants were placed parallel to each other compared to when the distal implant was placed with a mesial or mesiolingual inclination.
The slightly smaller effect of a mesiolingual inclination compared to a mesial inclination can be explained by the large cantilever on the buccal side of the superstructure.
Within the limitations of this study, it was suggested that there is a biomechanical rationale for placing implants in the posterior mandible area with a mesial inclination similar to that of natural teeth. It was also suggested that too much lingual inclination can put the implant at risk of overload.
由于天然牙弓通常在后牙区形成孟氏或司皮曲线,它们往往向近中及舌侧倾斜。本研究的目的是探讨在下颌后牙区根据这些曲线植入种植体的生物力学原理。
建立一个三维有限元模型,在下颌磨牙区植入2枚种植体。分析不同远中种植体倾斜度下种植体周围骨组织的应力分布。
与远中种植体向近中或近中舌侧倾斜相比,种植体相互平行放置时,近中及远中种植体颈部区域及其周围骨组织的应力更高。
与近中倾斜相比,近中舌侧倾斜的影响稍小,这可以通过上部结构颊侧的大悬臂来解释。
在本研究的局限性范围内,提示在下颌后牙区以与天然牙相似的近中倾斜角度植入种植体存在生物力学依据。还提示过多的舌侧倾斜会使种植体有过载风险。