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基于微 CT 的有限元分析在精确量化种植体周围骨应变中的应用:在大鼠胫骨中的验证。

Use of micro-CT-based finite element analysis to accurately quantify peri-implant bone strains: a validation in rat tibiae.

机构信息

Biomechanics Section, Department of Mechanical Engineering, K.U.Leuven, Celestijnenlaan 300C, 3001, Leuven, Belgium.

出版信息

Biomech Model Mechanobiol. 2012 May;11(5):743-50. doi: 10.1007/s10237-011-0347-6. Epub 2011 Sep 6.

Abstract

Although research has been addressed at investigating the effect of specific loading regimes on bone response around the implant, a precise quantitative understanding of the local mechanical response close to the implant site is still lacking. This study was aimed at validating micro-CT-based finite element (μFE) models to assess tissue strains after implant placement in a rat tibia. Small implants were inserted at the medio-proximal site of 8 rat tibiae. The limbs were subjected to axial compression loading; strain close to the implant was measured by means of strain gauges. Specimen-specific μFE models were created and analyzed. For each specimen, 4 different models were created corresponding to different representations of the bone-implant interface: bone and implant were assumed fully osseointegrated (A); a low stiffness interface zone was assumed with thickness of 40 μm (B), 80 μm (C), and 160 μm (D). In all cases, measured and computational strains correlated highly (R (2) = 0.95, 0.92, 0.93, and 0.95 in A, B, C, and D, respectively). The averaged calculated strains were 1.69, 1.34, and 1.15 times higher than the measured strains for A, B, and C, respectively, and lower than the experimental strains for D (factor = 0.91). In conclusion, we demonstrated that specimen-specific FE analyses provide accurate estimates of peri-implant bone strains in the rat tibia loading model. Further investigations of the bone-implant interface are needed to quantify implant osseointegration.

摘要

尽管研究已经针对特定的加载方案对植入物周围骨骼的反应进行了研究,但对于植入物部位附近的局部机械反应仍缺乏精确的定量理解。本研究旨在验证基于微计算机断层扫描的有限元(μFE)模型,以评估大鼠胫骨植入后的组织应变。将小植入物插入 8 只大鼠胫骨的中近端部位。肢体受到轴向压缩载荷;通过应变计测量靠近植入物的应变。创建了特定于标本的μFE 模型并进行了分析。对于每个标本,创建了 4 个不同的模型,对应于骨-植入物界面的不同表示:假设骨和植入物完全骨整合(A);假设存在低刚度界面区,厚度分别为 40 μm(B)、80 μm(C)和 160 μm(D)。在所有情况下,测量值和计算值之间的应变相关性都很高(A、B、C 和 D 中的 R(2)分别为 0.95、0.92、0.93 和 0.95)。平均计算应变分别比 A、B 和 C 的测量应变高 1.69、1.34 和 1.15 倍,比 D 的实验应变低(因子=0.91)。总之,我们证明了特定于标本的 FE 分析能够准确估计大鼠胫骨加载模型中植入物周围骨骼的应变。需要进一步研究骨-植入物界面以量化植入物的骨整合。

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