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[胫骨平台下低密度区骨质量和体积对膝关节软骨及半月板影响的有限元分析]

[Finite element analysis of impact of bone mass and volume in low-density zone beneath tibial plateau on cartilage and meniscus in knee joint].

作者信息

Han Longfei, Hou Wenyuan, Lu Shun, Zeng Zijun, Lin Kun, Han Mingli, Luo Guifeng, Tian Long, Yang Fan, He Mincong, Wei Qiushi

机构信息

The Third Clinical Medical College of Guangzhou University of Chinese Medicine, Guangzhou Guangdong, 510405, P. R. China.

Guangdong Academy of Traditional Chinese Medicine Orthopedics and Traumatology, Guangzhou Guangdong, 510378, P. R. China.

出版信息

Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2025 Mar 15;39(3):296-306. doi: 10.7507/1002-1892.202412018.

Abstract

OBJECTIVE

To investigate the impact of bone mass and volume of low-density zones beneath the tibial plateau on the maximum von Mises stresses experienced by the cartilage and meniscus in the knee joint.

METHODS

The study included one healthy adult volunteer, from whom CT scans were obtained, and one patient diagnosed with knee osteoarthrisis (KOA), for whom X-ray films were acquired. A static model of the knee joint featuring a low-density zone was established based on a normal knee model. In the finite element analysis, axial loads of 1 000 N and 1 800 N were applied to the weight-bearing region of the upper surface of the femoral head for model validation and subsequent finite element studies, respectively. The maximum von Mises stresses in the femoral cartilage, as well as the medial and lateral tibial cartilage and menisci, were observed, and the stress percentage of the medial and lateral components were concurrently analyzed. Additionally, HE staining, as well as alkaline magenta staining, were performed on the pathological specimens of patients with KOA in various low-density regions.

RESULTS

The results of model validation indicated that the model was consistent with normal anatomical structures and correlated with previous calculations documented in the literature. Static analysis revealed that the maximum von Mises stress in the medial component of the normal knee was the lowest and increased with the advancement of the hypointensity zone. In contrast, the lateral component exhibited an opposing trend, with the maximum von Mises stress in the lateral component being the highest and decreasing as the hypointensity zone progressed. Additionally, the medial component experienced an increasing proportion of stress within the overall knee joint. HE staining demonstrated that the chondrocyte layer progressively deteriorated and may even disappear as the hypointensity zone expanded. Furthermore, alkaline magenta staining indicated that the severity of microfractures in the trabecular bone increased concurrently with the expansion of the hypointensity zone.

CONCLUSION

The presence of subtalar plateau low-density zone may aggravate joint degeneration. In clinical practice, it is necessary to pay attention to the changes in the subtalar plateau low-density zone and actively take effective measures to strengthen the bone status of the subtalar plateau low-density zone and restore the complete biomechanical function of the knee joint, in order to slow down or reverse the progression of osteoarthritis.

摘要

目的

探讨胫骨平台下方骨量及低密度区体积对膝关节软骨和半月板所承受最大冯·米塞斯应力的影响。

方法

本研究纳入一名健康成年志愿者(获取其CT扫描图像)和一名诊断为膝关节骨关节炎(KOA)的患者(获取其X线片)。基于正常膝关节模型建立了具有低密度区的膝关节静态模型。在有限元分析中,分别对股骨头表面负重区施加1000N和1800N的轴向载荷,用于模型验证及后续有限元研究。观察股骨软骨、胫内侧和外侧软骨及半月板中的最大冯·米塞斯应力,并同时分析内侧和外侧成分的应力百分比。此外,对KOA患者不同低密度区域的病理标本进行苏木精-伊红(HE)染色和碱性品红染色。

结果

模型验证结果表明该模型与正常解剖结构一致,且与文献中先前记载的计算结果相关。静态分析显示,正常膝关节内侧成分的最大冯·米塞斯应力最低,并随低密度区进展而增加。相比之下,外侧成分呈现相反趋势,外侧成分的最大冯·米塞斯应力最高,并随低密度区进展而降低。此外,内侧成分在整个膝关节应力中所占比例增加。HE染色显示,随着低密度区扩大,软骨细胞层逐渐退化甚至可能消失。此外,碱性品红染色表明,随着低密度区扩大,小梁骨微骨折的严重程度同时增加。

结论

距下平台低密度区的存在可能加重关节退变。在临床实践中,有必要关注距下平台低密度区的变化,并积极采取有效措施加强距下平台低密度区的骨质状况,恢复膝关节完整的生物力学功能,以减缓或逆转骨关节炎的进展。

相似文献

2
[Biomechanical study of knee joint based on coronal plane alignment of the knee].基于膝关节冠状面排列的膝关节生物力学研究
Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2024 Dec 15;38(12):1466-1473. doi: 10.7507/1002-1892.202408048.

本文引用的文献

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The metabolic characteristics and changes of chondrocytes and in osteoarthritis.软骨细胞在骨关节炎中的代谢特点及变化。
Front Endocrinol (Lausanne). 2024 May 24;15:1393550. doi: 10.3389/fendo.2024.1393550. eCollection 2024.

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