Padded Helmet Shell Covers in American Football: A Comprehensive Laboratory Evaluation with Preliminary On-Field Findings
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Nicholas J. Cecchi | Ashlyn A. Callan | D. Camarillo | G. Grant | Yuzhe Liu | X. Zhan | E. Le Flao | Michael M. Zeineh | Landon P. Watson | Ramanand V. Vegesna | Collin Pang
[1] M. Espeland,et al. Characterizing Exposure to Head Acceleration Events in Youth Football Using an Instrumented Mouthpiece , 2022, Annals of Biomedical Engineering.
[2] M. Gilchrist,et al. Evaluation of two rotational helmet technologies to decrease peak rotational acceleration in cycling helmets , 2022, Scientific Reports.
[3] Eamon T. Campolettano,et al. Head Impact Exposure in Youth and Collegiate American Football , 2022, Annals of Biomedical Engineering.
[4] G. Siegmund,et al. The Effect of MIPS, Headform Condition, and Impact Orientation on Headform Kinematics Across a Range of Impact Speeds During Oblique Bicycle Helmet Impacts , 2022, Annals of Biomedical Engineering.
[5] N. Draper,et al. Potential of Soft-Shell Rugby Headgear to Mitigate Linear and Rotational Peak Accelerations , 2022, Annals of Biomedical Engineering.
[6] A. McIntosh,et al. The association of padded headgear with concussion and injury risk in junior Australian football: A prospective cohort study. , 2021, Journal of science and medicine in sport.
[7] G. Siegmund,et al. Head Impact Research Using Inertial Sensors in Sport: A Systematic Review of Methods, Demographics, and Factors Contributing to Exposure , 2021, Sports Medicine.
[8] Samuel J. Raymond,et al. Identifying Factors Associated with Head Impact Kinematics and Brain Strain in High School American Football via Instrumented Mouthguards , 2021, Annals of Biomedical Engineering.
[9] J. Crandall,et al. Laboratory Evaluation of Shell Add-On Products for American Football Helmets for Professional Linemen , 2021, Annals of Biomedical Engineering.
[10] Lee F. Gabler,et al. Development of a Low-Power Instrumented Mouthpiece for Directly Measuring Head Acceleration in American Football , 2021, Annals of Biomedical Engineering.
[11] B. Hagel,et al. Padded Headgear does not Reduce the Incidence of Match Concussions in Professional Men’s Rugby Union: A Case-control Study of 417 Cases , 2021, International Journal of Sports Medicine.
[12] Samuel J. Raymond,et al. Time Window of Head Impact Kinematics Measurement for Calculation of Brain Strain and Strain Rate in American Football , 2021, Annals of Biomedical Engineering.
[13] M. Bottlang,et al. Impact Performance Comparison of Advanced Snow Sport Helmets with Dedicated Rotation-Damping Systems , 2021, Annals of Biomedical Engineering.
[14] Samuel J. Raymond,et al. The relationship between brain injury criteria and brain strain across different types of head impacts can be different , 2020, Journal of the Royal Society Interface.
[15] August G. Domel,et al. A Computational Study of Liquid Shock Absorption for Prevention of Traumatic Brain Injury. , 2020, Journal of biomechanical engineering.
[16] Chiara Giordano,et al. A new open-access platform for measuring and sharing mTBI data , 2020, Scientific Reports.
[17] Barry S Myers,et al. Development and Evaluation of a Test Method for Assessing the Performance of American Football Helmets , 2020, Annals of Biomedical Engineering.
[18] J. Crandall,et al. Comparison of Laboratory and On-Field Performance of American Football Helmets , 2020, Annals of Biomedical Engineering.
[19] S. Tiernan,et al. Finite element simulation of head impacts in mixed martial arts , 2020, Computer methods in biomechanics and biomedical engineering.
[20] Eamon T. Campolettano,et al. Relating on-field youth football head impacts to pneumatic ram laboratory testing procedures , 2020, Proceedings of the Institution of Mechanical Engineers. Part P, Journal of sports engineering and technology.
[21] David B. Camarillo,et al. Validation and Comparison of Instrumented Mouthguards for Measuring Head Kinematics and Assessing Brain Deformation in Football Impacts , 2020, Annals of Biomedical Engineering.
[22] A. N. Annaidh,et al. Proposed injury thresholds for concussion in equestrian sports. , 2020, Journal of science and medicine in sport.
[23] A. N. Annaidh,et al. A parametric analysis of factors that determine head injury outcomes following equestrian fall accidents , 2019 .
[24] Derek C. Monroe,et al. Comparison of head impact attenuation capabilities between a standard American football helmet and novel protective equipment that couples a helmet and shoulder pads , 2019, Sports Engineering.
[25] Xin M Tu,et al. Post hoc power analysis: is it an informative and meaningful analysis? , 2019, General Psychiatry.
[26] Derek C. Monroe,et al. The Effectiveness of Protective Headgear in Attenuating Ball-to-Forehead Impacts in Water Polo , 2019, Front. Sports Act. Living.
[27] P. Cripton,et al. A review of impact testing methods for headgear in sports: Considerations for improved prevention of head injury through research and standards. , 2019, Journal of biomechanical engineering.
[28] S. Kliethermes,et al. Does soccer headgear reduce the incidence of sport-related concussion? A cluster, randomised controlled trial of adolescent athletes , 2019, British Journal of Sports Medicine.
[29] Sarah E. Goodale,et al. A football helmet prototype that reduces linear and rotational acceleration with the addition of an outer shell. , 2019, Journal of neurosurgery.
[30] Caroline Deck,et al. Evaluation of a novel bicycle helmet concept in oblique impact testing , 2019, Accident; analysis and prevention.
[31] Lee F. Gabler,et al. Development of a Second-Order System for Rapid Estimation of Maximum Brain Strain , 2018, Annals of Biomedical Engineering.
[32] Lynda Mainwaring,et al. Subconcussive head impacts in sport: A systematic review of the evidence. , 2018, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[33] Steven Rowson,et al. Varsity Football Helmet STAR Protocol , 2018 .
[34] V. Gupta,et al. Evaluation of novel temperature-stable viscoelastic polyurea foams as helmet liner materials , 2018 .
[35] Katherine M Breedlove,et al. The Ability of an Aftermarket Helmet Add-On Device to Reduce Impact-Force Accelerations During Drop Tests. , 2017, Journal of athletic training.
[36] R. Au,et al. Age of first exposure to American football and long-term neuropsychiatric and cognitive outcomes , 2017, Translational Psychiatry.
[37] Cathleen N. Brown,et al. The Influence of Heavier Football Helmet Faceguards on Head Impact Location and Severity , 2017, Clinical journal of sport medicine : official journal of the Canadian Academy of Sport Medicine.
[38] Rhoda Au,et al. Cumulative Head Impact Exposure Predicts Later-Life Depression, Apathy, Executive Dysfunction, and Cognitive Impairment in Former High School and College Football Players. , 2017, Journal of neurotrauma.
[39] Blaine Hoshizaki,et al. The Ability of American Football Helmets to Manage Linear Acceleration With Repeated High-Energy Impacts. , 2016, Journal of athletic training.
[40] David B. Camarillo,et al. Six Degree-of-Freedom Measurements of Human Mild Traumatic Brain Injury , 2015, Annals of Biomedical Engineering.
[41] A. McIntosh,et al. Boxing headguard performance in punch machine tests , 2015, British Journal of Sports Medicine.
[42] Joseph J Crisco,et al. Can helmet design reduce the risk of concussion in football? , 2014, Journal of neurosurgery.
[43] Stefan M. Duma,et al. The temperature inside football helmets during head impact: a five-year study of collegiate football games , 2013 .
[44] S. Duma,et al. Brain Injury Prediction: Assessing the Combined Probability of Concussion Using Linear and Rotational Head Acceleration , 2013, Annals of Biomedical Engineering.
[45] Albert Weckenmann,et al. Application of sensor tilting for enhanced measurement of microstructures , 2013 .
[46] Sarah K Fields,et al. Epidemiology of Concussions Among United States High School Athletes in 20 Sports , 2012, The American journal of sports medicine.
[47] Bethany J. Wilcox,et al. Head impact exposure in collegiate football players. , 2011, Journal of biomechanics.
[48] S. Kleiven. Predictors for traumatic brain injuries evaluated through accident reconstructions. , 2007, Stapp car crash journal.
[49] Grant L Iverson,et al. Examining Concussion Rates and Return to Play in High School Football Players Wearing Newer Helmet Technology: A Three-Year Prospective Cohort Study , 2006, Neurosurgery.
[50] S. Caswell,et al. Efficacy of Rugby Headgear in Attenuating Repetitive Linear Impact Forces. , 2003, Journal of athletic training.
[51] T Mäkelä,et al. [Mechanics of head injuries]. , 1965, Suomen laakarilehti. Finlands lakartidning.
[52] D. Viano,et al. Change in Size and Impact Performance of Football Helmets from the 1970s to 2010 , 2011, Annals of Biomedical Engineering.
[53] Thomas Blaine Hoshizaki,et al. A comparison between vinyl nitrile foam and new air chamber technology on attenuating impact energy for ice hockey helmets , 2008 .