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Quantitative Assessment of Ulcers Volume Using 3D Surface Imaging

机译:使用3D表面成像的溃疡数量的定量评估

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Measuring changes in ulcer during treatment can indicate the effectiveness of a treatment regime. Identifying appropriate treatment regime will reduce healing time. Current methods for measuring wound size are subjective and require manual contact with the wound. With the availability of techniques which can provide accurate depth measurement and surface profile, computer programs that can construct solids out of the wounds and quantitatively compute volume are indispensable. The development of volume estimation algorithms from 3D skin surface images to monitor wounds progress throughout treatment is discussed. The performance of midpoint projection and convex hull approximation (Delaunay tetrahedralization) methods, for solid reconstruction and volume computation, is detailed. Results of calculating wound models volume indicate that convex hull reconstruction preceded by surface division outperforms midpoint projection in case of regular boundary models. The error ranged from (0-2.8%) for convex hull reconstruction, while midpoint projection error range was from (0-6.5%).
机译:测量治疗过程中溃疡的变化可以表明治疗方案的有效性。确定适当的治疗制度将减少愈合时间。目前测量伤口尺寸的方法是主观的,需要手动接触伤口。随着可以提供精确的深度测量和表面型材的技术的可用性,可以将固体从伤口构建固体和定量计算体积的计算机程序是必不可少的。讨论了从3D皮肤表面图像的体积估计算法的发展,以监测整个治疗过程中的伤口进展。详细说明了中点投影和凸壳近似(Delaunay四层叠层)方法的性能,是针对固体重建和计算的。计算伤口模型的结果表明,在常规边界模型的情况下,在表面分割前面的凸壳重建优于中点预测。凸壳重建的错误范围为(0-2.8%),而中点投影误差范围来自(0-6.5%)。

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