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A comparison of stereology, structural rigidity and a novel 3D failure surface analysis method in the assessment of torsional strength and stiffness in a mouse tibia fracture model

机译:在评估小鼠胫骨骨折模型的抗扭强度和刚度时,采用立体学,结构刚度和新颖的3D失效表面分析方法进行比较

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In attempting to develop non-invasive image based measures for the determination of the biomechanical integrity of healing fractures, traditional μCT based measurements have been limited. This study presents the development and evaluation of a tool for assessment of fracture callus mechanical properties through determination of the geometric characteristics of the fracture callus, specifically along the surface of failure identified during destructive mechanical testing. Fractures were created in tibias of ten male mice and subjected to μCT imaging and biomechanical torsion testing. Failure surface analysis, along with previously described image based measures was calculated using the μCT image data, and correlated with mechanical strength and stiffness. Three-dimensional measures along the surface of failure, specifically the surface area and torsional rigidity of bone, were shown to be significantly correlating with mechanical strength and stiffness. It was also shown that surface area of bone along the failure surface exhibits stronger correlations with both strength and stiffness than measures of average and minimum torsional rigidity of the entire callus. Failure surfaces observed in this study were generally oriented at 45° to the long axis of the bone, and were not contained exclusively within the callus. This work represents a proof of concept study, and shows the potential utility of failure surface analysis in the assessment of fracture callus stability.
机译:在尝试开发基于非侵入性图像的方法来确定愈合性骨折的生物力学完整性时,传统的基于μCT的测量方法受到了限制。这项研究提出了一种开发和评估工具,该工具可通过确定骨折call的几何特征,特别是沿着破坏性机械测试中确定的失效表面,来评估骨折call的机械性能。在十只雄性小鼠的胫骨中产生骨折,并进行μCT成像和生物力学扭转测试。使用μCT图像数据计算出失效表面分析以及先前描述的基于图像的度量,并与机械强度和刚度相关。沿破坏表面的三维测量,特别是骨骼的表面积和抗扭刚度,与机械强度和刚度显着相关。还表明,与整个愈伤组织的平均和最小扭转刚度的测量值相比,沿着破坏面的骨骼表面积与强度和刚度之间显示出更强的相关性。在这项研究中观察到的破裂面通常与骨头的长轴成45°方向,并且不完全包含在愈伤组织中。这项工作代表了概念研究的证明,并显示了破坏面分析在评估骨call稳定性方面的潜在用途。

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