884
Views
30
CrossRef citations to date
0
Altmetric
Articles

Development of a geometrically accurate and adaptable finite element head model for impact simulation: the Naval Research Laboratory–Simpleware Head Model

, , , , , & show all
Pages 101-113 | Received 25 Mar 2014, Accepted 29 Nov 2014, Published online: 07 Jan 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Dhananjay Radhakrishnan Subramaniam, Liran Oren, J. Paul Willging & Ephraim J. Gutmark. (2021) Evaluating the biomechanical characteristics of cuffed-tracheostomy tubes using finite element analysis. Computer Methods in Biomechanics and Biomedical Engineering 24:14, pages 1595-1605.
Read now
Rinat Friedman, Ayelet Haimy, Yoram Epstein & Amit Gefen. (2019) Evaluation of helmet and goggle designs by modeling non-penetrating projectile impacts. Computer Methods in Biomechanics and Biomedical Engineering 22:3, pages 229-242.
Read now
Zhihua Cai, Yun Xia, Zheng Bao & Haojie Mao. (2019) Creating a human head finite element model using a multi-block approach for predicting skull response and brain pressure. Computer Methods in Biomechanics and Biomedical Engineering 22:2, pages 169-179.
Read now

Articles from other publishers (27)

Andrew Patchen, Stephen Young, Logan Goodbred, Stephen Puplampu, Vivek Chawla & Dayakar Penumadu. (2023) Lower Carbon Footprint Concrete Using Recycled Carbon Fiber for Targeted Strength and Insulation. Materials 16:15, pages 5451.
Crossref
Andrew Patchen, Stephen Young & Dayakar Penumadu. (2022) An Investigation of Mechanical Properties of Recycled Carbon Fiber Reinforced Ultra-High-Performance Concrete. Materials 16:1, pages 314.
Crossref
Xingqiao Deng, Zhifei Du, Huiling Feng, Shisong Wang, Heng Luo & Yucheng Liu. (2022) Investigation on the Modeling and Reconstruction of Head Injury Accident Using ABAQUS/Explicit. Bioengineering 9:12, pages 723.
Crossref
Yongqiang Li, Hualin Fan & Xin-Lin Gao. (2022) Ballistic helmets: Recent advances in materials, protection mechanisms, performance, and head injury mitigation. Composites Part B: Engineering 238, pages 109890.
Crossref
Dhananjay Radhakrishnan Subramaniam, Ginu Unnikrishnan, Aravind Sundaramurthy, Jose E. Rubio, Vivek Bhaskar Kote & Jaques Reifman. (2021) Cerebral Vasculature Influences Blast-Induced Biomechanical Responses of Human Brain Tissue. Frontiers in Bioengineering and Biotechnology 9.
Crossref
E. Kohtanen, M. Mazzotti, M. Ruzzene & A. Erturk. (2021) Vibration-based elastic parameter identification of the diploë and cortical tables in dry cranial bones. Journal of the Mechanical Behavior of Biomedical Materials 123, pages 104747.
Crossref
Tusit Weerasooriya & Stephen Alexander. (2021) Mechanism and microstructure based concept to predict skull fracture using a hybrid-experimental-modeling-computational approach. Journal of the Mechanical Behavior of Biomedical Materials 121, pages 104599.
Crossref
X. Gary Tan, Venkata Siva Sai Sujith Sajja, Maria M. D’Souza, Raj K. Gupta, Joseph B. Long, Ajay K. Singh & Amit Bagchi. (2021) A Methodology to Compare Biomechanical Simulations With Clinical Brain Imaging Analysis Utilizing Two Blunt Impact Cases. Frontiers in Bioengineering and Biotechnology 9.
Crossref
Dhananjay Radhakrishnan Subramaniam, Ginu Unnikrishnan, Aravind Sundaramurthy, Jose E. Rubio, Vivek Bhaskar Kote & Jaques Reifman. (2021) The importance of modeling the human cerebral vasculature in blunt trauma. BioMedical Engineering OnLine 20:1.
Crossref
Zhihua Cai, Xingyuan Huang, Yun Xia, Guibing Li & Zhuangqing Fan. (2020) Study on Behind Helmet Blunt Trauma Caused by High-Speed Bullet. Applied Bionics and Biomechanics 2020, pages 1-12.
Crossref
X. Gary Tan, Maria M. D'Souza, Subhash Khushu, Raj K. Gupta, Virginia G. DeGiorgi, Ajay K. Singh & Amit Bagchi. (2020) Computational Modeling of Blunt Impact to Head and Correlation of Biomechanical Measures With Medical Images. Journal of Engineering and Science in Medical Diagnostics and Therapy 3:1.
Crossref
Ashkan Eslaminejad, Mohamad Hosseini-Farid, Mariusz Ziejewski & Ghodrat Karami. (2020) Constitutive Properties Determination of Human Cranium by an Experimental–Computational Modal Analysis. Journal of Vibration and Acoustics 142:1.
Crossref
Robert N. Saunders, X. Gary Tan, Siddiq M. Qidwai & Amit Bagchi. (2018) Towards Identification of Correspondence Rules to Relate Traumatic Brain Injury in Different Species. Annals of Biomedical Engineering 47:9, pages 2005-2018.
Crossref
Andrea Franceschini, Victor A. Paludetto Magri, Gianluca Mazzucco, Nicolò Spiezia & Carlo Janna. (2019) A robust adaptive algebraic multigrid linear solver for structural mechanics. Computer Methods in Applied Mechanics and Engineering 352, pages 389-416.
Crossref
John D. Finan. (2019) Biomechanical simulation of traumatic brain injury in the rat. Clinical Biomechanics 64, pages 114-121.
Crossref
Robert Saunders, X Gary Tan & Amit Bagchi. (2019) On the Development of Interspecies Traumatic Brain Injury Correspondence Rules. Military Medicine 184:Supplement_1, pages 181-194.
Crossref
Mirko Maldari, Karima Amara, Ismael Rattalino, Chadi Jabbour & Patricia Desgreys. (2018) Human Body Communication Channel Characterization for Leadless Cardiac Pacemakers. Human Body Communication Channel Characterization for Leadless Cardiac Pacemakers.
Víctor Sellés de Lucas, Hugo Dutel, Susan E. Evans, Flora Gröning, Alana C. Sharp, Peter J. Watson & Michael J. Fagan. (2018) An assessment of the role of the falx cerebri and tentorium cerebelli in the cranium of the cat ( Felis silvestris catus ) . Journal of The Royal Society Interface 15:147, pages 20180278.
Crossref
Patrick T. Brewick & Kirubel Teferra. (2018) Uncertainty quantification for constitutive model calibration of brain tissue. Journal of the Mechanical Behavior of Biomedical Materials 85, pages 237-255.
Crossref
J. Weickenmeier, M. Kurt, E. Ozkaya, R. de Rooij, T.C. Ovaert, R.L. Ehman, K. Butts Pauly & E. Kuhl. (2018) Brain stiffens post mortem. Journal of the Mechanical Behavior of Biomedical Materials 84, pages 88-98.
Crossref
Anil Kalra. 2018. Basic Finite Element Method as Applied to Injury Biomechanics. Basic Finite Element Method as Applied to Injury Biomechanics 389 415 .
J. Weickenmeier, P. Saez, C. A. M. Butler, P. G. Young, A. Goriely & E. Kuhl. 2018. Multiscale Soft Tissue Mechanics and Mechanobiology. Multiscale Soft Tissue Mechanics and Mechanobiology 197 212 .
J. Weickenmeier, P. Saez, C. A. M. Butler, P. G. Young, A. Goriely & E. Kuhl. (2016) Bulging Brains. Journal of Elasticity 129:1-2, pages 197-212.
Crossref
X. G. Tan, A. J. Przekwas & R. K. Gupta. (2017) Computational modeling of blast wave interaction with a human body and assessment of traumatic brain injury. Shock Waves 27:6, pages 889-904.
Crossref
Y.Q. Li, X.-L. Gao, S.E. Horner & J.Q. Zheng. (2017) Analytical models for the impact of a solid sphere on a fluid-filled spherical shell incorporating the stress wave propagation effect and their applications to blunt head impacts. International Journal of Mechanical Sciences 130, pages 586-595.
Crossref
Harsha T. Garimella & Reuben H. Kraft. (2016) Modeling the mechanics of axonal fiber tracts using the embedded finite element method. International Journal for Numerical Methods in Biomedical Engineering 33:5.
Crossref
J. Weickenmeier, C.A.M. Butler, P.G. Young, A. Goriely & E. Kuhl. (2017) The mechanics of decompressive craniectomy: Personalized simulations. Computer Methods in Applied Mechanics and Engineering 314, pages 180-195.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.