首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >An Anatomically Detailed Arterial Network Model for One-Dimensional Computational Hemodynamics
【24h】

An Anatomically Detailed Arterial Network Model for One-Dimensional Computational Hemodynamics

机译:一维计算血流动力学的解剖学详细的动脉网络模型

获取原文
获取原文并翻译 | 示例

摘要

Simulation platforms are increasingly becoming complementary tools for cutting-edge cardiovascular research. The interplay among structural properties of the arterial wall, morphometry, anatomy, wave propagation phenomena, and ultimately, cardiovascular diseases continues to be poorly understood. Accurate models are powerful tools to shed light on these open problems. We developed an anatomically detailed computational model of the arterial vasculature to conduct 1-D blood flow simulations to serve as simulation infrastructure to aid cardiovascular research. An average arterial vasculature of a man was outlined in 3-D space to serve as geometrical substrate for the mathematical model. The architecture of this model comprises almost every arterial vessel acknowledged in the medical/anatomical literature, with a resolution down to the luminal area of perforator arteries. Over 2000 arterial vessels compose the model. Anatomical, physiological, and mechanical considerations were employed for the set up of model parameters and to determine criteria for blood flow distribution. Computational fluid dynamics was used to simulate blood flow and wave propagation phenomena in such arterial network. A sensitivity analysis was developed to unveil the contributions of model parameters to the conformation of the pressure waveforms. In addition, parameters were modified to target model to a patient-specific scenario. On the light of the knowledge domain, we conclude that the present model features excellent descriptive and predictive capabilities in both patient-generic and patient-specific cases, presenting a new step toward integrating an unprecedented anatomical description, morphometric, and simulations data to help in understanding complex arterial blood flow phenomena and related cardiovascular diseases.
机译:模拟平台越来越成为尖端心血管研究的补充工具。动脉壁的结构特性,形态,解剖结构,波传播现象以及最终心血管疾病之间的相互作用仍然知之甚少。准确的模型是揭示这些未解决问题的有力工具。我们开发了解剖学上详细的动脉血管计算模型,以进行一维血流模拟,以作为辅助心血管研究的模拟基础设施。在3-D空间中概述了一个人的平均动脉血管,以作为数学模型的几何基础。该模型的结构几乎包括医学/解剖学文献中公认的每条动脉血管,分辨率低至穿支动脉腔面积。该模型由2000多个动脉血管组成。解剖,生理和机械方面的考虑被用于建立模型参数并确定血流分布的标准。计算流体动力学被用来模拟这种动脉网络中的血流和波传播现象。进行了灵敏度分析,以揭示模型参数对压力波形构型的贡献。此外,还修改了参数以针对特定于患者的情况选择模型。根据知识领域,我们得出结论,本模型在患者通用和特定患者情况下均具有出色的描述和预测能力,为整合前所未有的解剖描述,形态计量和模拟数据提供了新的步骤,以帮助了解复杂的动脉血流现象和相关的心血管疾病。

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