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A hybrid surface-volume integral-equation method for analyzing scattering from voxel-based anatomical human models with smooth skin

机译:混合表面体积积分方程方法,用于分析皮肤光滑的基于体素的人体解剖模型的散射

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An increasing number of anatomically accurate voxel-based human models, developed from medical images, are becoming available for bioelectromagnetic analysis (J. W. Massey et al, Proc. 34 Annu. Mtg. Bioelectromagn. Soc, June 2012). Because the staircased boundaries in these models limit the accuracy of the numerical analysis, smooth surface-based human models are desired. Although it is relatively simple to extract one organ/tissue from a voxel model and obtain a smoothed surface model by applying a surface construction algorithm (W. Lorensen and H. Cline, Proc. SIGGRAPH, July 1987), the resulting independently processed surfaces are in general not compatible (e.g., they can intersect) and therefore cannot be easily combined to obtain a surface-based human model. Case studies with multilayer spherical head phantoms show that a significant portion of the error in voxel-based models occurs in the outermost layer. Thus, accuracy improvements can be achieved even if only the skin of the human model is smoothed. This, however, gives rise to a different compatibility issue — matching the unstructured, triangulated mesh of the skin to the underlying voxel mesh of the body. In this article, an integral-equation approach is used to circumvent this limitation and benefit from voxel-based models with improved skin.
机译:从医学图像开发的越来越多的基于解剖学的精确体素人体模型正可以用于生物电磁分析(J. W. Massey等人,Proc。34 Annu。Mtg。Bioelectromagn。Soc,2012年6月)。由于这些模型中的阶梯状边界限制了数值分析的准确性,因此需要基于表面的平滑人体模型。尽管从体素模型中提取一个器官/组织相对简单,并通过应用表面构造算法来获得平滑的表面模型(W. Lorensen和H.Cline,Proc。SIGGRAPH,1987年7月),但是得到的结果是独立处理的表面通常,它们不兼容(例如,它们可以相交),因此不能轻松地组合以获得基于表面的人体模型。多层球形头部模型的案例研究表明,在基于体素的模型中,很大一部分错误发生在最外层。因此,即使仅平滑人体模型的皮肤,也可以实现精度的提高。但是,这引起了一个不同的兼容性问题-使皮肤的非结构化三角网格与身体的基础体素网格匹配。在本文中,积分方程方法用于规避此限制,并受益于具有改进皮肤的基于体素的模型。

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