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Comparison of Strain Rosettes and Digital Image Correlation for Measuring Vertebral Body Strain

机译:测量椎体应变的应变花环与数字图像相关性的比较

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摘要

Strain gages are commonly used to measure bone strain, but only provide strain at a single location. Digital image correlation (DIC) is an optical technique that provides the displacement, and therefore strain, over an entire region of interest on the bone surface. This study compares vertebral body strains measured using strain gages and DIC. The anterior surfaces of 15 cadaveric porcine vertebrae were prepared with a strain rosette and a speckled paint pattern for DIC. The vertebrae were loaded in compression with a materials testing machine, and two high-resolution cameras were used to image the anterior surface of the bones. The mean noise levels for the strain rosette and DIC were 1 le and 24 le, respectively. Bland-Altman analysis was used to compare strain from the DIC and rosette (excluding 44% of trials with some evidence of strain rosette failure or debonding); the mean difference +/- 2 standard deviations (SDs) was - 108 mu epsilon +/- 702 mu epsilon for the minimum (compressive) principal strain and - 53 mu epsilon +/- 332 mu epsilon for the maximum (tensile) principal strain. Although the DIC has higher noise, it avoids the relatively high risk we observed of strain gage debonding. These results can be used to develop guidelines for selecting a method to measure strain on bone.
机译:应变计通常用于测量骨应变,但仅在单个位置提供应变。数字图像相关性(DIC)是一种光学技术,可在骨骼表面上的整个感兴趣区域上提供位移并因此提供应变。这项研究比较了使用应变计和DIC测量的椎体应变。用应变玫瑰花结和DIC的斑点油漆图案制备15具尸体猪椎骨的前表面。用材料测试机压缩椎骨,并使用两个高分辨率相机对骨骼的前表面成像。菌株玫瑰花结和DIC的平均噪音水平分别为1 le和24 le。使用Bland-Altman分析来比较DIC和玫瑰花结的菌株(不包括44%的试验,其中有些证据表明玫瑰花结失效或脱胶);平均差+/- 2标准偏差(SD)为-最小(压缩)主应变为-108με+/- 702με,最大(拉伸)主应变为-53με+/- 332με 。尽管DIC具有较高的噪声,但它避免了我们观察到的应变计脱胶的相对较高的风险。这些结果可用于制定指导方针,以选择测量骨骼应变的方法。

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