华南理工大学学报(自然科学版) ›› 2021, Vol. 49 ›› Issue (1): 113-122,152.doi: 10.12141/j.issn.1000-565X.200213

所属专题: 2021年交通运输工程

• 交通运输工程 • 上一篇    下一篇

乘员胸部钝性冲击下主动脉瓣的动力学响应

童芳 兰凤崇 陈吉清 李雄   

  1. 华南理工大学 机械与汽车工程学院,广东 广州 510640
  • 收稿日期:2020-05-06 修回日期:2020-08-14 出版日期:2021-01-25 发布日期:2021-01-01
  • 通信作者: 陈吉清 ( 1966-) ,女,博士,教授,主要从事汽车轻量化、电动化车辆、生物力学研究。 E-mail:chjq@scut.edu.cn
  • 作者简介:童芳 ( 1992-) ,女,博士生,主要从事汽车结构安全、人体损伤生物力学研究。E-mail: tong_fang@126.com
  • 基金资助:

    国家自然科学基金资助项目 ( 51775193) ; 国家车辆事故深度调查体系资助项目 ( ZL-ZHGT-2020014)

Dynamic Response of Aortic Valve of Occupant to Blunt Thoracic Impact in Traffic Accident

TONG Fang LAN Fengchong CHEN Jiqing LI Xiong   

  1. School of Mechanical and Automotive Engineering,South China University of Technology,Guangzhou 510640,Guangdong,China
  • Received:2020-05-06 Revised:2020-08-14 Online:2021-01-25 Published:2021-01-01
  • Contact: 陈吉清 ( 1966-) ,女,博士,教授,主要从事汽车轻量化、电动化车辆、生物力学研究。 E-mail:chjq@scut.edu.cn
  • About author:童芳 ( 1992-) ,女,博士生,主要从事汽车结构安全、人体损伤生物力学研究。E-mail: tong_fang@126.com
  • Supported by:
    Supported by the National Natural Science Foundation of China ( 51775193) and the National Automobile Accident In-Depth Investigation System Funding Project ( ZL-ZHGT-2020014)

摘要:

在交通事故中,乘员及行人的胸部钝性冲击导致的主动脉瓣功能受损会引起充 血性心力衰竭或死亡。为了深入认识人在正常生理状态下不同胸部碰撞时刻对主动脉瓣 损伤产生的影响,引入光滑粒子动力学方法 ( SPH) 建立了血流 - 瓣膜的流固耦合 ( FSI) 模型,并通过人体正常生理状态下瓣膜的响应进行有效性验证。为保证具有生 命特征的边界条件,将活体动物碰撞试验的动态血压过程与人体正常生理血压联合加 载,对不同冲击时刻下主动脉瓣的生物动力学响应进行仿真分析。结果表明: 在不同的 冲击时刻 ( 心脏舒张期或收缩期) ,瓣膜会产生不同的应力应变场和开关速率; 瓣膜处 于开启状态 ( 如收缩中期) 时受到冲击损伤的几率较小,瓣膜处于关闭状态 ( 如舒张 中后期) 时更容易受到冲击损伤。

关键词: 生物力学, 主动脉瓣, 流固耦合, 冲击损伤

Abstract:

In traffic accidents,aortic valve dysfunction resulting from blunt thoracic impact of occupant and pedestrians can cause congestive heart failure or death. To investigate the effects of thoracic impact timing related to the cardiac cycle on aortic valve injury,a fluid-structure interaction ( FSI) model of aortic valve and blood was established based on smoothed particle dynamics ( SPH) method,and was validated by the valve movement under normal physiological conditions. To ensure the boundaries of the physiological properties,the dynamic blood pressure of animal tests and physiological pressure of human body were combined to load on the coupling model,and the biomechanical response of the aortic valve in different impact timing was simulated. The results show that different impact moments ( diastolic or systolic period) lead to different valve stress and strain fields,valve opening and closing rates. When the valve is open ( like the middle diastolic period) ,it is less likely to suffer from impact injury; when the valve is closed ( like the middle and late diastolic period) ,it is more vulnerable to injury.

Key words: biomechanics, aortic valve, fluid-structure interaction, impact injury

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