Brain Strain from Motion of Sparse Markers.

Q2 Medicine Stapp car crash journal Pub Date : 2019-11-01 DOI:10.4271/2019-22-0001
Zhou Zhou, Xiaogai Li, Svein Kleiven, Warren N Hardy
{"title":"Brain Strain from Motion of Sparse Markers.","authors":"Zhou Zhou,&nbsp;Xiaogai Li,&nbsp;Svein Kleiven,&nbsp;Warren N Hardy","doi":"10.4271/2019-22-0001","DOIUrl":null,"url":null,"abstract":"<p><p>Brain strain secondary to head impact or inertial loading is closely associated with pathologic observations in the brain. The only experimental brain strain dataset under loadings close to traumatic levels was calculated by imposing the experimentally measured motion of markers embedded in the brain to an auxiliary model formed by triad elements (Hardy et al., 2007). However, fidelity of the calculated strain as well as the suitability of using triad elements for three-dimensional (3D) strain estimation remains to be verified. Therefore, this study proposes to use tetrahedron elements as a new approach to estimate the brain strain. Fidelity of this newly-proposed approach along with the previous triad-based approach is evaluated with the aid of three independently-developed finite element (FE) head models by numerically replicating the experimental impacts and strain estimation procedures. Strain in the preselected brain elements obtained from the whole head simulation exhibits good correlation with its tetra estimation and exceeds its triad estimation, indicating that the tetra approach more accurately estimates the strain in the preselected region. The newly calculated brain strain curves using tetra elements provide better approximations for the 3D experimental brain deformation and can be used for strain validation of FE models of human head.</p>","PeriodicalId":35289,"journal":{"name":"Stapp car crash journal","volume":null,"pages":null},"PeriodicalIF":0.0000,"publicationDate":"2019-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"33","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Stapp car crash journal","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.4271/2019-22-0001","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"Medicine","Score":null,"Total":0}
引用次数: 33

Abstract

Brain strain secondary to head impact or inertial loading is closely associated with pathologic observations in the brain. The only experimental brain strain dataset under loadings close to traumatic levels was calculated by imposing the experimentally measured motion of markers embedded in the brain to an auxiliary model formed by triad elements (Hardy et al., 2007). However, fidelity of the calculated strain as well as the suitability of using triad elements for three-dimensional (3D) strain estimation remains to be verified. Therefore, this study proposes to use tetrahedron elements as a new approach to estimate the brain strain. Fidelity of this newly-proposed approach along with the previous triad-based approach is evaluated with the aid of three independently-developed finite element (FE) head models by numerically replicating the experimental impacts and strain estimation procedures. Strain in the preselected brain elements obtained from the whole head simulation exhibits good correlation with its tetra estimation and exceeds its triad estimation, indicating that the tetra approach more accurately estimates the strain in the preselected region. The newly calculated brain strain curves using tetra elements provide better approximations for the 3D experimental brain deformation and can be used for strain validation of FE models of human head.

查看原文
分享 分享
微信好友 朋友圈 QQ好友 复制链接
本刊更多论文
稀疏标记运动引起的脑疲劳。
继发于头部撞击或惯性负荷的脑劳损与脑部病理观察密切相关。在接近创伤水平的负荷下,唯一的实验脑应变数据集是通过将实验测量的嵌入大脑的标记物的运动施加到由三元元素组成的辅助模型中来计算的(Hardy等,2007)。然而,计算应变的保真度以及使用三元元进行三维(3D)应变估计的适用性仍有待验证。因此,本研究提出将四面体元素作为评估脑应变的新方法。通过三种独立开发的有限元(FE)头部模型,通过数值模拟实验冲击和应变估计过程,评估了这种新提出的方法与先前基于三元组的方法的保真度。全头部仿真得到的预选脑单元应变与其四元估计值具有良好的相关性,且优于三元估计值,说明四元方法对预选区域应变的估计更为准确。新计算的四元脑应变曲线能较好地逼近三维脑变形实验,可用于人头有限元模型的应变验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
求助全文
约1分钟内获得全文 去求助
来源期刊
Stapp car crash journal
Stapp car crash journal Medicine-Medicine (all)
CiteScore
3.20
自引率
0.00%
发文量
0
期刊最新文献
Effect of A-Pillar Blind Spots on a Driver's Pedestrian Visibility during Vehicle Turns at an Intersection. Standardized Assessment of Gravity Settling Human Body Models for Virtual Testing. Machine-Learning-Accelerated Simulations for the Design of Airbag Constrained by Obstacles at Rest. Comparison of Adult Female and Male PMHS Pelvis and Lumbar Response to Underbody Blast. Investigation of THOR-AV 5F Biofidelity in Sled Test Conditions with A Semi-Rigid Seat.
×
引用
GB/T 7714-2015
复制
MLA
复制
APA
复制
导出至
BibTeX EndNote RefMan NoteFirst NoteExpress
×
×
提示
您的信息不完整,为了账户安全,请先补充。
现在去补充
×
提示
您因"违规操作"
具体请查看互助需知
我知道了
×
提示
现在去查看 取消
×
提示
确定
0
微信
客服QQ
Book学术公众号 扫码关注我们
反馈
×
意见反馈
请填写您的意见或建议
请填写您的手机或邮箱
已复制链接
已复制链接
快去分享给好友吧!
我知道了
×
扫码分享
扫码分享
Book学术官方微信
Book学术文献互助
Book学术文献互助群
群 号:481959085
Book学术
文献互助 智能选刊 最新文献 互助须知 联系我们:info@booksci.cn
Book学术提供免费学术资源搜索服务,方便国内外学者检索中英文文献。致力于提供最便捷和优质的服务体验。
Copyright © 2023 Book学术 All rights reserved.
ghs 京公网安备 11010802042870号 京ICP备2023020795号-1