Development of a Second-Order System for Rapid Estimation of Maximum Brain Strain
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[1] R. Aunger. Assess , 2020, Reset.
[2] Matthew B. Panzer,et al. Brain tissue strains vary with head impact location: A possible explanation for increased concussion risk in struck versus striking football players , 2019, Clinical biomechanics.
[3] Sylvia Schick,et al. Accident analysis to support the development of strategies for the prevention of brain injuries in car crashes. , 2018, Accident; analysis and prevention.
[4] Hessam Babaee,et al. Mechanistic Insights into Human Brain Impact Dynamics through Modal Analysis. , 2018, Physical review letters.
[5] Lee F. Gabler,et al. Development of a Metric for Predicting Brain Strain Responses Using Head Kinematics , 2018, Annals of Biomedical Engineering.
[6] Hamed Joodaki,et al. Development of a Single-Degree-of-Freedom Mechanical Model for Predicting Strain-Based Brain Injury Responses. , 2018, Journal of biomechanical engineering.
[7] AlshareefAhmed,et al. A Novel Method for Quantifying Human In Situ Whole Brain Deformation under Rotational Loading Using Sonomicrometry. , 2017 .
[8] Songbai Ji,et al. Injury prediction and vulnerability assessment using strain and susceptibility measures of the deep white matter , 2017, Biomechanics and modeling in mechanobiology.
[9] Likang Xu,et al. Traumatic Brain Injury–Related Emergency Department Visits, Hospitalizations, and Deaths — United States, 2007 and 2013 , 2017, Morbidity and mortality weekly report. Surveillance summaries.
[10] Matthew B. Panzer,et al. Assessment of Kinematic Brain Injury Metrics for Predicting Strain Responses in Diverse Automotive Impact Conditions , 2016, Annals of Biomedical Engineering.
[11] Matthew R Maltese,et al. White matter tract-oriented deformation predicts traumatic axonal brain injury and reveals rotational direction-specific vulnerabilities , 2015, Biomechanics and modeling in mechanobiology.
[12] David B. Camarillo,et al. Six Degree-of-Freedom Measurements of Human Mild Traumatic Brain Injury , 2015, Annals of Biomedical Engineering.
[13] Yukou Takahashi,et al. Investigation on an Injury Criterion Related to Traumatic Brain Injury Primarily Induced by Head Rotation , 2015 .
[14] Tae-Hyung Kim,et al. Evaluation of methods for the development of representative responses and corridors from biomechanical data using mechanical models , 2013 .
[15] M. Craig,et al. Development of brain injury criteria (BrIC). , 2013, Stapp car crash journal.
[16] King H. Yang,et al. Development of a finite element human head model partially validated with thirty five experimental cases. , 2013, Journal of biomechanical engineering.
[17] Margot Putukian,et al. American Medical Society for Sports Medicine position statement: concussion in sport , 2012, British Journal of Sports Medicine.
[18] Matthew B. Panzer,et al. Development of a Finite Element Model for Blast Brain Injury and the Effects of CSF Cavitation , 2012, Annals of Biomedical Engineering.
[19] Rémy Willinger,et al. The current state of the human head finite element modelling , 2009 .
[20] S. Kleiven. Predictors for traumatic brain injuries evaluated through accident reconstructions. , 2007, Stapp car crash journal.
[21] D. K. Cullen,et al. Strain rate-dependent induction of reactive astrogliosis and cell death in three-dimensional neuronal–astrocytic co-cultures , 2007, Brain Research.
[22] J. Langlois,et al. The Epidemiology and Impact of Traumatic Brain Injury: A Brief Overview , 2006, The Journal of head trauma rehabilitation.
[23] J A Newman,et al. A proposed new biomechanical head injury assessment function - the maximum power index. , 2000, Stapp car crash journal.
[24] Thomas A. Gennarelli,et al. Diffuse Axonal Injury: An Important Form of Traumatic Brain Damage , 1998 .
[25] F A Bandak,et al. On the mechanics of impact neurotrauma: a review and critical synthesis. , 1995, Journal of neurotrauma.
[26] R. Willinger,et al. Modal and temporal analysis of head mathematical models. , 1995, Journal of neurotrauma.
[27] R L Stalnaker,et al. Driving point impedance characteristics of the head. , 1971, Journal of biomechanics.
[28] J. Versace. A Review of the Severity Index , 1971 .
[29] C. W. Gadd. Use of a weighted-impulse criterion for estimating injury hazard , 1966 .
[30] A. Holbourn. MECHANICS OF HEAD INJURIES , 1943 .
[31] Jason Forman,et al. A Novel Method for Quantifying Human In Situ Whole Brain Deformation under Rotational Loading Using Sonomicrometry. , 2017, Journal of neurotrauma.
[32] Yukou Takahashi,et al. A study of injury criteria for brain injuries in traffic accidents , 2017 .
[33] H. Kimpara,et al. Mild Traumatic Brain Injury Predictors Based on Angular Accelerations During Impacts , 2011, Annals of Biomedical Engineering.
[34] Stephen A Ridella,et al. Kinematic Rotational Brain Injury Criterion (BRIC) , 2011 .
[35] King H. Yang,et al. Is head injury caused by linear or angular acceleration , 2003 .
[36] Gerry Leisman,et al. Biomechanics of head injury. , 1990, The International journal of neuroscience.
[37] A. P,et al. Mechanical Vibrations , 1948, Nature.