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Multi-scale visual analysis of trauma injury

机译:创伤损伤的多尺度视觉分析

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摘要

We develop a multi-scale high-fidelity biomechanical and physiologically based modeling tools for trauma (ballistic/impact and blast) injury to brain, lung and spinal cord for resuscitation, treatment planning and design of personnel protection. Several approaches have been used to study blast and ballistic/ impact injuries. Dummy containing pressure sensors and synthetic phantoms of human organs have been used to study bomb blast and car crashes. Large animals like pigs also have been equipped with pressure sensors exposed to blast waves. But these methods do not provide anatomically and physiologically, full optimization of body protection design and require animal sacrifice. Anatomy and medical image-based high-fidelity computational modeling can be used to analyze injury mechanisms and to optimize the design of body protection. This paper presents novel approach of coupled computational fluid dynamics and computational structures dynamics to simulate fluid (air, cere-brospinal fluid)-solid (cranium, brain tissue) interaction during ballistic/blast impact. We propose a trauma injury simulation pipeline concept staring from anatomy and medical image-based high-fidelity 3D geometric modeling, extraction of tissue morphology, generation of computational grids, multi-scale biomechanical and physiological simulations, and data visualization.
机译:我们针对脑,肺和脊髓的创伤(弹道/撞击和爆炸)损伤开发了一种多尺度的高保真生物力学和生理学建模工具,用于复苏,治疗计划和人员保护设计。已经使用了几种方法来研究爆炸和弹道/撞击伤。装有压力传感器和人体器官合成模型的虚拟模型已用于研究炸弹爆炸和车祸。大型动物(如猪)也已经配备了暴露于爆炸波的压力传感器。但是这些方法不能从解剖学和生理上提供人体保护设计的全面优化,并且需要牺牲动物。基于解剖和医学图像的高保真计算模型可用于分析伤害机制并优化人体防护设计。本文提出了耦合计算流体动力学和计算结构动力学的新方法,以模拟弹道/爆炸冲击过程中流体(空气,脑脊髓液)-固体(颅骨,脑组织)的相互作用。我们提出了一种基于基于解剖和医学图像的高保真3D几何建模,组织形态学提取,计算网格生成,多尺度生物力学和生理学模拟以及数据可视化的创伤模拟仿真管道概念。

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