首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >A Method to Estimate Cadaveric Femur Cortical Strains During Fracture Testing Using Digital Image Correlation
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A Method to Estimate Cadaveric Femur Cortical Strains During Fracture Testing Using Digital Image Correlation

机译:利用数字图像相关性评估骨折测试过程中的尸体股骨皮质应变的方法

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摘要

This protocol describes the method using digital image correlation to estimate cortical strain from high speed video images of the cadaveric femoral surface obtained from mechanical testing. This optical method requires a texture of many contrasting fiduciary marks on a solid white background for accurate tracking of surface deformation as loading is applied to the specimen. Immediately prior to testing, the surface of interest in the camera view is painted with a water-based white primer and allowed to dry for several minutes. Then, a black paint is speckled carefully over the white background with special consideration for the even size and shape of the droplets. Illumination is carefully designed and set such that there is optimal contrast of these marks while minimizing reflections through the use of filters. Images were obtained through high speed video capture at up to 12,000 frames/s. The key images prior to and including the fracture event are extracted and deformations are estimated between successive frames in carefully sized interrogation windows over a specified region of interest. These deformations are then used to compute surface strain temporally during the fracture test. The strain data is very useful for identifying fracture initiation within the femur, and for eventual validation of proximal femur fracture strength models derived from Quantitative Computed Tomography-based Finite Element Analysis (QCT/FEA).
机译:该协议描述了一种方法,该方法使用数字图像相关性从机械测试获得的尸体股骨表面的高速视频图像中估计皮质应变。这种光学方法要求在纯白色背景上具有许多对比基准标记的纹理,以便在将载荷施加到样本时精确跟踪表面变形。在即将进行测试之前,在摄像机视图中使用水基白色底漆对感兴趣的表面进行涂漆,并使其干燥几分钟。然后,特别注意液滴的大小和形状,特别注意在白色背景上打上黑色涂料。照明经过精心设计和设置,以使这些标记具有最佳对比度,同时通过使用滤光片将反射降至最低。通过高速视频捕获以高达12,000帧/秒的速度获得图像。提取破裂事件之前和包括破裂事件的关键图像,并在指定的感兴趣区域上的尺寸合适的询问窗口中的连续帧之间估计变形。然后将这些变形用于在断裂测试期间临时计算表面应变。应变数据对于识别股骨内的骨折起始以及最终验证基于基于定量CT的有限元分析(QCT / FEA)的股骨近端骨折强度模型非常有用。

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