Research Progress and Forensic Application of Human Vascular Finite Element Modeling and Biomechanics

The finite element method (FEM) is a mathematical method for obtaining approximate solutions to a wide variety of engineering problems. With the development of computer technology, it is gradually applied to the study of biomechanics of human body. The application of the combination of FEM and biome...

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Main Author: Yong ZENG, Dong-hua ZOU, Ying FAN, Qing XU, Lu-yang TAO, Yi-jiu CHEN, Zheng-dong LI
Format: Article
Language:zho
Published: Editorial Office of Journal of Forensic Medicine 2023-10-01
Series:Fayixue Zazhi
Subjects:
Online Access:http://www.fyxzz.cn/fileup/1004-5619/PDF/2021.411103.pdf
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author Yong ZENG, Dong-hua ZOU, Ying FAN, Qing XU, Lu-yang TAO, Yi-jiu CHEN, Zheng-dong LI
author_facet Yong ZENG, Dong-hua ZOU, Ying FAN, Qing XU, Lu-yang TAO, Yi-jiu CHEN, Zheng-dong LI
author_sort Yong ZENG, Dong-hua ZOU, Ying FAN, Qing XU, Lu-yang TAO, Yi-jiu CHEN, Zheng-dong LI
collection DOAJ
description The finite element method (FEM) is a mathematical method for obtaining approximate solutions to a wide variety of engineering problems. With the development of computer technology, it is gradually applied to the study of biomechanics of human body. The application of the combination of FEM and biomechanics in exploring the relationship between vascular injury and disease, and pathological mechanisms will be a technological innovation for traditional forensic medicine. This paper reviews the construction and development of human vascular FEM modeling, and its research progress on the vascular biomechanics. This paper also looks to the application prospects of FEM modeling in forensic pathology.
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spelling doaj.art-5b2a75fd79b54c25931b7fc6ac55b1ae2024-01-24T02:19:30ZzhoEditorial Office of Journal of Forensic MedicineFayixue Zazhi1004-56192023-10-0139547147710.12116/j.issn.1004-5619.2021.411103Research Progress and Forensic Application of Human Vascular Finite Element Modeling and BiomechanicsYong ZENG, Dong-hua ZOU, Ying FAN, Qing XU, Lu-yang TAO, Yi-jiu CHEN, Zheng-dong LI01.Department of Forensic Science, School of Biology of Basic Medicine and Sciences, Suzhou Medicine College of Soochow University, Suzhou 215000, Jiangsu Province, China;2.Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Science, Ministry of Justice, Shanghai 200063, China;3.School of Forensic Medicine, Guizhou Medical University, Guiyang 550004, China;4.College of Mechanical Engineering, University of Shanghai for Science and Technology, Shanghai 200063, ChinaThe finite element method (FEM) is a mathematical method for obtaining approximate solutions to a wide variety of engineering problems. With the development of computer technology, it is gradually applied to the study of biomechanics of human body. The application of the combination of FEM and biomechanics in exploring the relationship between vascular injury and disease, and pathological mechanisms will be a technological innovation for traditional forensic medicine. This paper reviews the construction and development of human vascular FEM modeling, and its research progress on the vascular biomechanics. This paper also looks to the application prospects of FEM modeling in forensic pathology.http://www.fyxzz.cn/fileup/1004-5619/PDF/2021.411103.pdf|forensic pathology|biomechanics|finite element method|vascular|review
spellingShingle Yong ZENG, Dong-hua ZOU, Ying FAN, Qing XU, Lu-yang TAO, Yi-jiu CHEN, Zheng-dong LI
Research Progress and Forensic Application of Human Vascular Finite Element Modeling and Biomechanics
Fayixue Zazhi
|forensic pathology|biomechanics|finite element method|vascular|review
title Research Progress and Forensic Application of Human Vascular Finite Element Modeling and Biomechanics
title_full Research Progress and Forensic Application of Human Vascular Finite Element Modeling and Biomechanics
title_fullStr Research Progress and Forensic Application of Human Vascular Finite Element Modeling and Biomechanics
title_full_unstemmed Research Progress and Forensic Application of Human Vascular Finite Element Modeling and Biomechanics
title_short Research Progress and Forensic Application of Human Vascular Finite Element Modeling and Biomechanics
title_sort research progress and forensic application of human vascular finite element modeling and biomechanics
topic |forensic pathology|biomechanics|finite element method|vascular|review
url http://www.fyxzz.cn/fileup/1004-5619/PDF/2021.411103.pdf
work_keys_str_mv AT yongzengdonghuazouyingfanqingxuluyangtaoyijiuchenzhengdongli researchprogressandforensicapplicationofhumanvascularfiniteelementmodelingandbiomechanics