Suppr超能文献

道路交通事故中残疾驾驶员损伤生物力学评估——一种数值方法

Injury Biomechanics Evaluation of a Driver with Disabilities during a Road Accident-A Numerical Approach.

作者信息

Sybilski Kamil, Fernandes Fábio A O, Ptak Mariusz, Alves de Sousa Ricardo J

机构信息

Institute of Mechanics and Computational Engineering, Faculty of Mechanical Engineering, Military University of Technology, gen. Sylwestra Kaliskiego 2, 00-908 Warsaw, Poland.

TEMA-Centre for Mechanical Technology and Automation, Department of Mechanical Engineering, University of Aveiro, Campus de Santiago, 3810-193 Aveiro, Portugal.

出版信息

Materials (Basel). 2022 Nov 10;15(22):7956. doi: 10.3390/ma15227956.

Abstract

Numerical methods are often a robust way to predict how external mechanical loads affect individual biological structures. Computational models of biological systems have been developed over the years, reaching high levels of detail, complexity, and precision. In this study, two cases were analysed, differing in the airbag operation; in the first, the airbag was normally activated, and in the second case, the airbag was disabled. We analysed a model of a disabled person without a left leg who steers a vehicle using a specialized knob on the steering wheel. In both cases, a head-on collision between a car moving at an initial speed of 50 km/h and a rigid obstacle was analysed. We concluded that the activated airbag for a person with disabilities reduces the effects of asymmetries in the positioning of the belts and body support points. Moreover, all the biomechanical parameters, analysed on the 50th percentile dummy, i.e., HIC, seat belt contact force and neck injury criterion (Nij) support the use of an airbag. The resulting accelerations, measured in the head of the dummy, were induced into a finite element head model (YEAHM) to kinematically drive the head and simulate both accidents, with and without the airbag. In the latter, the subsequent head injury prediction revealed a form of contrecoup injury, more specifically cerebral contusion based on the intracranial pressure levels that were achieved. Therefore, based on the in-depth investigation, a frontal airbag can significantly lower the possibility of injuries for disabled drivers, including cerebral contusions.

摘要

数值方法通常是预测外部机械负荷如何影响单个生物结构的可靠方法。多年来已开发出生物系统的计算模型,其细节、复杂性和精度都达到了很高的水平。在本研究中,分析了两种情况,它们在安全气囊操作方面有所不同;第一种情况是安全气囊正常启动,第二种情况是安全气囊禁用。我们分析了一个没有左腿的残疾人使用方向盘上的特殊旋钮驾驶车辆的模型。在这两种情况下,都分析了一辆以初始速度50公里/小时行驶的汽车与一个刚性障碍物之间的正面碰撞。我们得出结论,为残疾人启动的安全气囊可减少安全带和身体支撑点定位不对称的影响。此外,在第50百分位假人上分析的所有生物力学参数,即头部损伤指标(HIC)、安全带接触力和颈部损伤标准(Nij),都支持使用安全气囊。在假人头部测量得到的加速度被输入到一个有限元头部模型(YEAHM)中,以便从运动学角度驱动头部并模拟有无安全气囊的两种事故情况。在没有安全气囊的情况下,随后的头部损伤预测显示出一种对冲伤形式,更具体地说是基于所达到的颅内压水平的脑挫伤。因此,基于深入调查,正面安全气囊可显著降低残疾驾驶员受伤的可能性,包括脑挫伤。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验