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一种新型个性化同质有限元模型,用于预测松质骨螺钉的拔出强度。

A novel personalized homogenous finite element model to predict the pull-out strength of cancellous bone screws.

机构信息

Department of Mechanical Engineering, Sharif University of Technology, Tehran, 11155-9567, Iran.

Department of Material and Production, Aalborg University, Aalborg, Denmark.

出版信息

J Orthop Surg Res. 2024 Nov 7;19(1):732. doi: 10.1186/s13018-024-05169-x.

Abstract

BACKGROUND

Orthopedic surgeries often involve the insertion of bone screws for various fixation systems. The risk of postoperative screw loosening is usually assessed through experimental or finite element (FE) evaluations of the screw pull-out strength. FE simulations are based on either personalized complex but accurate heterogeneous modeling or non-personalized simple but relatively less accurate homogeneous modeling. This study aimed to develop and validate a novel personalized computed tomography (CT)-based homogeneous FE simulation approach to predict the pull-out force of cancellous bone screws.

METHODS

Twenty FE simulations of L1-L5 vertebral screw pull-out tests were conducted, i.e., 10 heterogeneous and 10 homogenous models. Screws were inserted into the lower-middle region of vertebrae. In our novel homogeneous model, the region around approximately twice the diameter of the screw was used as a bone material reference volume. Subsequently, the overall material property of this region was homogeneously attributed to the entire vertebra, and pull-out simulations were conducted.

RESULTS

The mean error of the predicted pull-out forces by our novel homogenous simulations was ~ 7.9% with respect to our heterogeneous model. When solely the cancellous bone was involved during the pull-out process (i.e., for L1, L2, and L3 vertebral bodies whose cortical bone in the inferior region is thin), the novel homogenous model yielded small mean error of < 6.0%. This error, however, increased to ~ 11% when the screw got involved to the cortical bone (for L4 and L5 vertebrae whose cortical bone in the inferior region is thick).

CONCLUSION

The proposed personalized CT-based homogenous model was highly accurate in estimating the pull-out force especially when only the cancellous bone was involved with the screw.

摘要

背景

骨科手术常涉及各种固定系统的骨螺钉植入。术后螺钉松动的风险通常通过螺钉拔出强度的实验或有限元(FE)评估来评估。FE 模拟基于个性化的复杂但准确的非均匀建模或非个性化的简单但相对精度较低的均匀建模。本研究旨在开发和验证一种新的基于个性化计算机断层扫描(CT)的均匀 FE 模拟方法,以预测松质骨螺钉的拔出力。

方法

进行了 20 次 L1-L5 椎骨螺钉拔出试验的 FE 模拟,即 10 个非均匀模型和 10 个均匀模型。螺钉插入椎骨中下区域。在我们的新均匀模型中,使用大约两倍螺钉直径的区域作为骨材料参考体积。随后,将该区域的整体材料特性均匀地分配给整个椎体,并进行拔出模拟。

结果

我们的新均匀模拟预测的拔出力的平均误差约为我们的非均匀模型的 7.9%。当拔出过程中仅涉及松质骨时(即对于 L1、L2 和 L3 椎体,其下区域的皮质骨较薄),新的均匀模型产生的小平均误差<6.0%。然而,当螺钉涉及皮质骨时(对于 L4 和 L5 椎体,其下区域的皮质骨较厚),该误差增加到约 11%。

结论

提出的基于个性化 CT 的均匀模型在估计拔出力时非常准确,尤其是当仅松质骨与螺钉接触时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8d4/11542241/27316a29d9a9/13018_2024_5169_Fig1_HTML.jpg

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