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Publications by Xiaogai Li

Peer reviewed

Articles

[3]
N. Lindgren et al., "Development of personalizable female and male pedestrian SAFER human body models," Traffic Injury Prevention, vol. 25, no. 2, pp. 182-193, 2024.
[5]
M. J. Henningsen et al., "Subject-specific finite element head models for skull fracture evaluation—a new tool in forensic pathology," International journal of legal medicine, vol. 138, no. 4, pp. 1447-1458, 2024.
[7]
X. Li et al., "Personalization of human body models and beyond via image registration," Frontiers in Bioengineering and Biotechnology, vol. 11, 2023.
[8]
N. Lindgren et al., "Prediction of skull fractures in blunt force head traumas using finite element head models," Biomechanics and Modeling in Mechanobiology, vol. 23, no. 1, pp. 207-225, 2023.
[10]
Y. Peng et al., "Evaluation of parental education using biomechanical visualization to increase child restraint use in China," Accident Analysis and Prevention, vol. 169, pp. 106633, 2022.
[11]
Z. Zhou et al., "Fiber orientation downsampling compromises the computation of white matter tract-related deformation," Journal of The Mechanical Behavior of Biomedical Materials, vol. 132, 2022.
[12]
Z. Zhou et al., "The Presence of the Temporal Horn Exacerbates the Vulnerability of Hippocampus During Head Impacts," Frontiers in Bioengineering and Biotechnology, vol. 10, 2022.
[13]
Z. Zheng et al., "A Novel Neuromuscular Head-Neck Model and Its Application on Impact Analysis," IEEE transactions on neural systems and rehabilitation engineering, vol. 29, pp. 1394-1402, 2021.
[16]
T. Wand, S. Kleiven and X. Li, "Influence of Anisotropic White Matter on Electroosmotic Flow Induced by Direct Current : Anisotropic WM Affects EOF Distribution," Frontiers in Bioengineering and Biotechnology, vol. 9, no. 689020, pp. 1-11, 2021.
[17]
W. Darragh et al., "Mechanical Properties of the Cranial Meninges: A Systematic Review," Journal of Neurotrauma, vol. 38, no. 13, pp. 1748-1761, 2021.
[21]
Z. Zhou et al., "Toward a Comprehensive Delineation of White Matter Tract-Related Deformation," Journal of Neurotrauma, vol. 38, no. 23, pp. 3260-3278, 2021.
[22]
Z. Zhou et al., "White matter tract-oriented deformation is dependent on real-time axonal fiber orientation," Journal of Neurotrauma, vol. 38, pp. 1730-1745, 2021.
[24]
H. Wang et al., "Porous fusion cage design via integrated global-local topology optimization and biomechanical analysis of performance," Journal of The Mechanical Behavior of Biomedical Materials, vol. 112, 2020.
[25]
Z. Zhou, X. Li and S. Kleiven, "Biomechanics of acute subdural hematoma in the elderly : A fluid-structure interaction study," Journal of Neurotrauma, vol. 36, no. 13, pp. 2099-2108, 2019.
[26]
Z. Zhou et al., "Brain Strain from Motion of Sparse Markers," Stapp Car Crash Journal, vol. 63, 2019.
[27]
M. Fahlstedt, S. Kleiven and X. Li, "Current Playground Surface Test Standards Underestimate Brain Injury Risk for Children," Journal of Biomechanics, 2019.
[28]
X. Li, H. Sandler and S. Kleiven, "Infant skull fractures : Accident or abuse?: Evidences from biomechanical analysis using finite element head models," Forensic Science International, vol. 294, pp. 173-182, 2019.
[29]
Z. Zhou, X. Li and S. Kleiven, "Fluid–structure interaction simulation of the brain–skull interface for acute subdural haematoma prediction," Biomechanics and Modeling in Mechanobiology, vol. 18, no. 1, pp. 155-173, 2018.
[30]
X. Li and S. Kleiven, "Improved safety standards are needed to better protect younger children at playgrounds," Scientific Reports, vol. 8, no. 1, 2018.
[31]
C. Giordano, X. Li and S. Kleiven, "Performances of the PIPER scalable child human body model in accident reconstruction," PLOS ONE, vol. 12, no. 11, 2017.
[32]
X. Li, H. Sandler and S. Kleiven, "The importance of nonlinear tissue modelling in finite element simulations of infant head impacts," Biomechanics and Modeling in Mechanobiology, vol. 16, no. 3, pp. 823-840, 2017.
[33]
J. Ho et al., "The peculiar properties of the faix and tentorium in brain injury biomechanics," Journal of Biomechanics, vol. 60, pp. 243-247, 2017.
[34]
X. Li, X.-L. Gao and S. Kleiven, "Behind helmet blunt trauma induced by ballistic impact : a computational model," International Journal of Impact Engineering, vol. 91, pp. 56-67, 2016.
[35]
X. Li and H. von Holst, "Finite element modeling of decompressive craniectomy (DC) and its clinical validation," Advances in Biomedical Sciences and Engineering, vol. 2, no. 1, pp. 1-9, 2015.
[37]
Y. Q. Li, X. Li and X. -. Gao, "Modeling of advanced combat helmet under ballistic impact," Journal of applied mechanics, vol. 82, no. 11, 2015.
[40]
X. Li, H. von Holst and S. Kleiven, "Influences of brain tissue poroelastic constants on intracranial pressure (ICP) during constant-rate infusion," Computer Methods in Biomechanics and Biomedical Engineering, vol. 16, no. 12, pp. 1330-1343, 2013.
[44]
X. Li, H. von Holst and S. Kleiven, "Decompressive craniotomy causes significant strain increase in axonal fiber tracts," Journal of clinical neuroscience, vol. 20, no. 4, pp. 509-513, 2012.
[45]
H. von Holst, X. Li and S. Kleiven, "Increased strain levels and water content in brain tissue after decompressive craniotomy," Acta Neurochirurgica, vol. 154, no. 9, pp. 1583-1593, 2012.
[46]
X. Li, H. von Holst and S. Kleiven, "Influence of gravity for optimal head positions in the treatment of head injury patients," Acta Neurochirurgica, vol. 153, no. 10, pp. 2057-2064, 2011.

Conference papers

[47]
Q. Huang et al., "A method for obtaining case-specific buck models based on vehicle side-view image for pedestrian collision simulations," in IRCOBI 2023 - Conference Proceedings, International Research Council on the Biomechanics of Injury, 2023, pp. 499-500.
[48]
Q. Yuan, S. Kleiven and X. Li, "Video-based Accurate Human Kinematics Estimation during High-Speed Impact," in IRCOBI 2023 - Conference Proceedings, International Research Council on the Biomechanics of Injury, 2023, pp. 631-632.
[50]
M. Fahlstedt, S. Kleiven and X. Li, "The Influence of the Body on Head Kinematics in Playground Falls for Different Age Groups," in Proceedings of International Research Council on Biomechanics of Injury (IRCOBI) Conference, 2018.
[51]
P. Beillas et al., "Development and performance of the PIPER scalable child human body models," in 14th International Conference on the Protection of Children in Cars, 2016.
[54]
X. Li et al., "Three Dimensional Poroelastic Simulation of Brain Edema : Initial Studies on Intracranial Pressure Using Comsol Multiphysics," in Proceedings of European Comsol Conference, Milan, Italy, October 7 - 9, 2009.

Non-peer reviewed

Articles

[55]
T. Wang, S. Kleiven and X. Li, "Electroosmosis Based Novel Treatment Approach for Cerebral Edema," IEEE Transactions on Biomedical Engineering, vol. 68, no. 9, pp. 2645-2653, 2021.
[56]
Z. Zhou, X. Li and S. Kleiven, "Biomechanics of periventricular injury," Journal of Neurotrauma, vol. 37, no. 8, pp. 1074-1090, 2019.

Theses

[57]
X. Li, "Finite Element and Neuroimaging Techniques toImprove Decision-Making in Clinical Neuroscience," Doctoral thesis Stockholm : KTH Royal Institute of Technology, Trita-STH : report, 2012:1, 2012.
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