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Visualization of tumor-influenced 3D lung dynamics

机译:可视化受肿瘤影响的3D肺动力学

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摘要

A framework for real-time visualization of a tumor-influenced lung dynamics is presented in this paper. This framework potentially allows clinical technicians to visualize in 3D the morphological changes of lungs under different breathing conditions. Consequently, this technique may provide a sensitive and accurate assessment tool for pre-operative and intra-operative clinical guidance. The proposed simulation method extends work previously developed for modeling and visualizing normal 3D lung dynamics. The model accounts for the changes in the regional lung functionality and the global motor response due to the presence of a tumor. For real-time deformation purposes, we use a Green's function (GF), a physically based approach that allows real-time multi-resolution modeling of the lung deformations. This function also allows an analytical estimation of the GF's deformation parameters from the 4D lung datasets at different level-of-details of the lung model. Once estimated, the subject-specific GF facilitates the simulation of tumor-influenced lung deformations subjected to any breathing condition modeled by a parametric Pressure-Volume (PV) relation.
机译:本文提出了一种实时可视化受肿瘤影响的肺动力学的框架。该框架可能使临床技术人员可以在3D中可视化不同呼吸条件下肺部的形态变化。因此,该技术可以为术前和术中临床指导提供灵敏而准确的评估工具。拟议的模拟方法扩展了先前为建模和可视化正常3D肺动力学而开发的工作。该模型说明了由于肿瘤的存在而导致的区域肺功能和整体运动反应的变化。出于实时变形的目的,我们使用格林函数(GF),这是一种基于物理的方法,可以对肺部变形进行实时多分辨率建模。此功能还允许从肺模型不同细节级别的4D肺数据集中分析GF的变形参数。一旦估计,特定于受试者的GF有助于模拟受参数化压力-体积(PV)关系建模的任何呼吸条件下受肿瘤影响的肺部变形。

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