Background: In the United States (US), an estimated 300,000 sports-related concussions occur annually. Among individuals 15 to 24 years of age, sports are second only to motor vehicle crashes as the leading cause of concussions.

Purpose: To investigate the epidemiology of concussions in high school athletes by comparing rates and patterns of concussion among 20 sports.

Study Design: Descriptive epidemiology study.

Methods: Using an Internet-based data collection tool, RIO, certified athletic trainers from a large, nationally disperse sample of US high schools reported athlete exposure and injury data for 20 sports during the 2008-2010 academic years.

Results: During the study period, 1936 concussions were reported during 7,780,064 athlete-exposures (AEs) for an overall injury rate of 2.5 per 10,000 AEs. The injury rate was higher in competition (6.4) than practice (1.1) (rate ratio [RR], 5.7; 95% confidence interval [CI], 5.2-6.3). The majority of concussions resulted from participation in football (47.1%, n = 912), followed by girls’ soccer (8.2%, n = 159), boys’ wrestling (5.8%, n = 112), and girls’ basketball (5.5%, n = 107). Football had the highest concussion rate (6.4), followed by boys’ ice hockey (5.4) and boys’ lacrosse (4.0). Concussions represented a greater proportion of total injuries among boys’ ice hockey (22.2%) than all other sports studied (13.0%) (injury proportion ratio [IPR], 1.7; 95% CI, 1.4-2.1; P < .01). In gender-comparable sports, girls had a higher concussion rate (1.7) than boys (1.0) (RR, 1.7; 95% CI, 1.4-2.0). The most common mechanisms of injury were player-player contact (70.3%) and player–playing surface contact (17.2%). In more than 40% of athletes in sports other than girls’ swimming and girls’ track, concussion symptoms resolved in 3 days or less. Athletes most commonly returned to play in 1 to 3 weeks (55.3%), with 22.8% returning in less than 1 week and 2.0% returning in less than 1 day.

Conclusion: Although interest in sports-related concussions is usually focused on full-contact sports like football and ice hockey, concussions occur across a wide variety of high school sports. Concussion rates vary by sport, gender, and type of exposure. An understanding of concussion rates, patterns of injury, and risk factors can drive targeted preventive measures and help reduce the risk for concussion among high school athletes in all sports.

1. Adirim, TA, Cheng, TL. Overview of injuries in the young athlete. Sports Med. 2003;33(1):75-81.
Google Scholar | Crossref | Medline | ISI
2. Bailes, JE . Sports-related concussion: what do we know in 2009. A neurosurgeon’s perspective. J Int Neuropsychol Soc. 2009;15(4):509-511.
Google Scholar | Crossref | Medline
3. Barnes, BC, Cooper, L, Kirkendall, DT, McDermott, TP, Jordan, BD, Garrett, WE Concussion history in elite male and female soccer players. Am J Sports Med. 1998;26(3):433-438.
Google Scholar | SAGE Journals | ISI
4. Broshek, DK, Kaushik, T, Freeman, JR, Erlanger, D, Webbe, F, Barth, JT. Sex differences in outcome following sports-related concussion. J Neurosurg. 2005;102(5):856-863.
Google Scholar | Crossref | Medline | ISI
5. Buzzini, SR, Guskiewicz, KM. Sport-related concussion in the young athlete. Curr Opin Pediatr. 2006;18(4):376-382.
Google Scholar | Crossref | Medline | ISI
6. Covassin, T, Swanik, CB, Sachs, ML. Sex differences and the incidence of concussions among collegiate athletes. J Athl Train. 2003;38(3):238-244.
Google Scholar | Medline | ISI
7. Dick, RW . Is there a gender difference in concussion incidence and outcomes? Br J Sports Med. 2009;43(Suppl 1):i46-i50.
Google Scholar | Crossref | Medline | ISI
8. Field, M, Collins, MW, Lovell, MR, Maroon, J. Does age play a role in recovery from sports-related concussion? A comparison of high school and collegiate athletes. J Pediatr. 2003;142(5):546-553.
Google Scholar | Crossref | Medline | ISI
9. Frommer, LJ, Gurka, KK, Cross, KM, Ingersoll, CD, Comstock, RD, Saliba, SA. Sex differences in concussion symptoms of high school athletes. J Athl Train. 2011;46(1):76-84.
Google Scholar | Crossref | Medline | ISI
10. Gessel, LM, Fields, SK, Collins, CL, Dick, RW, Comstock, RD. Concussions among United States high school and collegiate athletes. J Athl Train. 2007;42(4):495-503.
Google Scholar | Medline | ISI
11. Guskiewicz, KM, Bruce, SL, Cantu, RC. National Athletic Trainers’ Association Position Statement: management of sport-related concussion. J Athl Train. 2004;39(3):280-297.
Google Scholar | Medline | ISI
12. Guskiewicz, KM, Weaver, NL, Padua, DA, Garrett, WE Epidemiology of concussion in collegiate and high school football players. Am J Sports Med. 2000;28(5):643-650.
Google Scholar | SAGE Journals | ISI
13. Kelly, JP, Nichols, JS, Filley, CM, Lillehei, KO, Rubinstein, D, Kleinschmidt-DeMasters, BK. Concussion in sports: guidelines for the prevention of catastrophic outcome. JAMA. 1991;266(20):2867-2869.
Google Scholar | Crossref | Medline | ISI
14. Mansell, J, Tierney, RT, Sitler, MR, Swanik, KA, Stearne, D. Resistance training and head-neck segment dynamic stabilization in male and female collegiate soccer players. J Athl Train. 2005;40(4):310-319.
Google Scholar | Medline | ISI
15. McClincy, MP, Lovell, MR, Pardini, J, Collins, MW, Spore, MK. Recovery from sports concussion in high school and collegiate athletes. Brain Inj. 2006;20(1):33-39.
Google Scholar | Crossref | Medline | ISI
16. McCrory, P, Meeuwisse, W, Johnston, K. Consensus statement on concussion in sport: the Third International Conference on Concussion in Sport held in Zurich, November 2008. Phys Sportsmed. 2009;37(2):141-159.
Google Scholar | Crossref | Medline | ISI
17. Meehan, WP, Bachur, RG. Sport-related concussion. Pediatrics. 2009;123(1):114-123.
Google Scholar | Crossref | Medline | ISI
18. Moser, RS, Iverson, GL, Echemendia, RJ. Neuropsychological evaluation in the diagnosis and management of sports-related concussion. Arch Clin Neuropsychol. 2007;22(8):909-916.
Google Scholar | Crossref | Medline | ISI
19. National Federation of State High School Associations . 2009-10 high school athletics participation survey. Available at: http://www.nfhs.org/content.aspx?id=3282/Uploads/2009_10NFHSparticipationsurvey.pdf. Accessed February 27, 2011.
Google Scholar
20. Nonfatal traumatic brain injuries from sports and recreation activities: United States, 2001-2005. MMWR Morb Mortal Wkly Rep. 2007;56(29):733-737.
Google Scholar | Medline
21. Patel, DR, Greydanus, DE. Neurologic considerations for adolescent athletes. Adolesc Med. 2002;13(3):569-578.
Google Scholar | Medline
22. Patel, DR, Shivdasani, V, Baker, RJ. Management of sport-related concussion in young athletes. Sports Med. 2005;35(8):671-684.
Google Scholar | Crossref | Medline | ISI
23. Powell, JW, Barber-Foss, KD. Traumatic brain injury in high school athletes. JAMA. 1999;282(10):958-963.
Google Scholar | Crossref | Medline | ISI
24. Practice parameter: the management of concussion in sports (summary statement). Report of the Quality Standards Subcommittee. Neurology. 1997;48(3):581-585.
Google Scholar | Crossref | Medline | ISI
25. Rechel, JA, Yard, EE, Comstock, RD. An epidemiologic comparison of high school sports injuries sustained in practice and competition. J Athl Train. 2008;43(2):197-204.
Google Scholar | Crossref | Medline | ISI
26. Schulz, MR, Marshall, SW, Mueller, FO. Incidence and risk factors for concussion in high school athletes, North Carolina, 1996-1999. Am J Epidemiol. 2004;160(10):937-944.
Google Scholar | Crossref | Medline | ISI
27. US Census Bureau . Census regions of the United States. Available at: http://www.census.gov/const/regionmap.pdf. Accessed December 10, 2010.
Google Scholar
28. Yard, EE, Comstock, RD. Compliance with return to play guidelines following concussion in US high school athletes, 2005-2008. Brain Inj. 2009;23(11):888-898.
Google Scholar | Crossref | Medline
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