首页> 外文会议>ASME international mechanical engineering congress and exposition >Validations of Virtual Animal Model for Investigation of Shock/Blast Wave TBI
【24h】

Validations of Virtual Animal Model for Investigation of Shock/Blast Wave TBI

机译:震动/爆发波TBI调查虚拟动物模型的验证

获取原文

摘要

Complementary to animal testing and analysis of clinical data, a validated anatomy and physiology based mathematical models can provide capabilities for a better understanding of blast wave brain injury mechanisms, animal-human injury scaling, assessing and improving protective armor. We developed the 3D "virtual" animal models for multi-scale computational simulations of blast induced injury. A multi-scale modeling tool, CoBi, has been adopted for the analysis of blast wave primary TBI mechanisms and coupled biomechanics events. The shock wave over a rat in a shock tube was modeled by the CFD method. The primary biomechanics FEM study uses anatomic based animal geometry with a high resolution brain model. The virtual rat model has been validated against recently collected data from shock tube tests on rodents, including pressure time history in the free-stream and inside the rat brain. The model has been used to conduct parametric simulations to study the effect of animal placement location in the shock tube, and different loading orientations on the rat response. We also compared the rat brain biomechanical response between simulations of a free-to-move and a protected or constrained rat under the same shock tube loading to identify the role of body protection and head movement and on the rat TBI. The implications of these results suggest that virtual animal model could be used to predict the biomechanical response in the blast TBI event, and help design the protection against the blast TBI.
机译:对临床数据的动物测试和分析互补,验证的解剖学和生理学的数学模型可以提供更好地理解爆发波脑损伤机制,动物人伤扩大,评估和改善保护盔甲的能力。我们开发了用于多尺度计算模拟的爆炸诱导伤害的3D“虚拟”动物模型。已经采用了一种多尺度建模工具,COBI用于分析爆炸波段TBI机制和耦合生物力学事件。在冲击管中的大鼠上的冲击波被CFD方法建模。主要生物力学FEM研究采用高分辨率脑模型的基于原基的动物几何形状。虚拟大鼠模型已经针对来自啮齿动物的冲击管测试的最近收集的数据验证,包括自由流的压力时间历史和大鼠大脑。该模型已被用于进行参数模拟以研究动物放置位置在震动管中的影响,以及对大鼠反应的不同负载方向。我们还将大鼠脑生物力学响应与在同样的冲击管载荷下的自由移动和受保护或受约束的大鼠的模拟之间进行了比较,以确定身体保护和头部运动和大鼠TBI的作用。这些结果的含义表明,虚拟动物模型可用于预测爆炸TBI事件中的生物力学响应,并帮助设计对爆炸TBI的保护。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号