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首页> 外文期刊>IEEE transactions on visualization and computer graphics >Physics-Based Subsurface Visualization of Human Tissue
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Physics-Based Subsurface Visualization of Human Tissue

机译:基于物理学的人体组织地下可视化

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摘要

In this paper, we present a framework for simulating light transport in three-dimensional tissue with inhomogeneous scattering properties. Our approach employs a computational model to simulate light scattering in tissue through the finite element solution of the diffusion equation. Although our model handles both visible and nonvisible wavelengths, we especially focus on the interaction of near infrared (NIR) light with tissue. Since most human tissue is permeable to NIR light, tools to noninvasively image tumors, blood vasculature, and monitor blood oxygenation levels are being constructed. We apply this model to a numerical phantom to visually reproduce the images generated by these real-world tools. Therefore, in addition to enabling inverse design of detector instruments, our computational tools produce physically-accurate visualizations of subsurface structures.
机译:在本文中,我们提出了一个用于模拟具有不均匀散射特性的三维组织中的光传输的框架。我们的方法采用计算模型,通过扩散方程的有限元解来模拟组织中的光散射。尽管我们的模型处理可见光和不可见光的波长,但我们特别关注近红外(NIR)光与组织的相互作用。由于大多数人体组织都可以透过NIR光,因此正在构建无创成像肿瘤,血管系统和监测血液氧合水平的工具。我们将此模型应用于数字体模,以可视方式重现这些实际工具生成的图像。因此,除了可以对探测器仪器进行逆向设计外,我们的计算工具还可以对地下结构进行物理精确的可视化处理。

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