Li Chentian, Tan Rongwei, Guo Yuanjun, Li Songjian
a Department of Orthopedics , Zhujiang Hospital, Southern Medical University , Guangzhou , China.
b Department of Orthopedics and Traumatology , Li Ka Shing Faculty of Medicine, The University of Hong Kong , Hong Kong SAR , China.
Comput Methods Biomech Biomed Engin. 2018 Jan;21(1):83-90. doi: 10.1080/10255842.2018.1425404.
There is lack of further observations on the microstructure and material property of callus during bone defect healing and the relationships between callus properties and the mechanical strength.
Femur bone defect model was created in rabbits and harvested CT data to reconstruct finite element models at 1 and 2 months. Three types of assumed finite element models were compared to study the callus properties, which assumed the material elastic property as heterogeneous (R-model), homogenous (H-model) or did not change from 1 to 2 months (U-model).
The apparent elastic moduli increased at 2 months (from 355.58 ± 132.67 to 1139.30 ± 967.43 MPa) in R-models. But there was no significant difference in apparent elastic moduli between R-models (355.58 ± 132.67 and 1139.30 ± 967.43 MPa) and H-models (344.79 ± 138.73 and 1001.52 ± 692.12 MPa) in 1 and 2 months. A significant difference of apparent elastic moduli was found between the R-model (1139.30 ± 967.43 MPa) and U-model group (207.15 ± 64.60 MPa) in 2 months.
This study showed that the callus structure stability remodeled overtime to achieve a more effective structure, while the material quality of callus tissue is a very important factor for callus strength. At the meantime, this study showed an evidence that the material heterogeneity maybe not as important as it is in bone fracture model.
在骨缺损愈合过程中,对于骨痂的微观结构、材料特性以及骨痂特性与机械强度之间的关系,缺乏进一步的观察研究。
在兔身上建立股骨骨缺损模型,并采集CT数据,以在1个月和2个月时重建有限元模型。比较了三种假设的有限元模型,以研究骨痂特性,这三种模型分别假设材料弹性特性为非均质(R模型)、均质(H模型)或从1个月到2个月不变(U模型)。
R模型中,2个月时表观弹性模量增加(从355.58±132.67兆帕增加到1139.30±967.43兆帕)。但在1个月和2个月时,R模型(355.58±132.67和1139.30±967.43兆帕)和H模型(344.79±138.73和1001.52±692.12兆帕)的表观弹性模量无显著差异。在2个月时,R模型(1139.30±967.43兆帕)和U模型组(207.15±64.60兆帕)的表观弹性模量存在显著差异。
本研究表明,骨痂结构稳定性随时间重塑以实现更有效的结构,而骨痂组织的材料质量是影响骨痂强度的非常重要的因素。同时,本研究表明有证据显示材料非均质性可能不像在骨折模型中那么重要。