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Combining 3D optical imaging and dual energy absorptiometry to measure three compositional components

机译:结合3D光学成像和双能量吸收法测量三个成分

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摘要

We report on the design of the technique combining 3D optical imaging and dual-energy absorptiometry body scanning to estimate local body area compositions of three compartments. Dual-energy attenuation and body shape measures are used together to solve for the three compositional tissue thicknesses: water, lipid, and protein. We designed phantoms with tissue-like properties as our reference standards for calibration purposes. The calibration was created by fitting phantom values using non-linear regression of quadratic and truncated polynomials. Dual-energy measurements were performed on tissue-mimicking phantoms using a bone densitometer unit. The phantoms were made of materials shown to have similar x-ray attenuation properties of the biological compositional compartments. The components for the solid phantom were tested and their high energy/low energy attenuation ratios are in good correspondent to water, lipid, and protein for the densitometer x-ray region. The three-dimensional body shape was reconstructed from the depth maps generated by Microsoft Kinect for Windows. We used open-source Point Cloud Library and freeware software to produce dense point clouds. Accuracy and precision of compositional and thickness measures were calculated. The error contributions due to two modalities were estimated. The preliminary phantom composition and shape measurements are found to demonstrate the feasibility of the method proposed.
机译:我们报告结合3D光学成像和双能吸收仪人体扫描技术的技术设计,以估计三个车厢的局部人体成分。双重能量衰减和体形测量一起用于解决三种组成的组织厚度:水,脂质和蛋白质。我们将具有组织性质的体模设计为参考标准,以进行校准。通过使用二次和截断多项式的非线性回归拟合幻像值来创建校准。使用骨密度计单位在模仿组织的幻像上执行双能测量。人体模型由具有与生物成分隔室相似的X射线衰减特性的材料制成。测试了用于固体幻影的组件,它们的高能量/低能量衰减比与密度计X射线区域的水,脂质和蛋白质良好对应。从Microsoft Kinect for Windows生成的深度图重建了三维身体形状。我们使用开源点云库和免费软件来生成密集点云。计算了组成和厚度测量的精度和精确度。估计了由于两种方式造成的错误贡献。发现初步的幻像组成和形状测量证明了所提出方法的可行性。

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