Page 112 - JSOM Spring 2025
P. 112
35. Abt JP, Sell TC, Lovalekar MT, et al. Injury epidemiology of U.S. Conference on Physiological and Physical Employment Stan-
Army Special Operations Forces. Mil Med. 2014;179(10):1106– dards; 2012; Canberra. p. 24
1112. doi:10.7205/MILMED-D-14-00078 54. Evans R, Reynolds K, Creedon J, Murphy M. Incidence of acute
36. Teyhen DS, Shaffer SW, Butler RJ, et al. What risk factors are injury related to fitness testing of U.S. Army personnel. Mil Med.
associated with musculoskeletal injury in us Army Rangers? A 2005;170(12):1005–1011. doi:10.7205/milmed.170.12.1005
prospective prognostic study. Clin Orthop Relat Res. 2015;473 55. Popovich RM, Gardner JW, Potter R, Knapik JJ, Jones BH. Ef-
(9):2948–2958. doi:10.1007/s11999-015-4342-6 fect of rest from running on overuse injuries in Army basic train-
37. Lovalekar M, Abt JP, Sell TC, Wood DE, Lephart SM. Descriptive ing. Am J Prev Med. 2000;18(3 Suppl):147–155. doi:10.1016/
epidemiology of musculoskeletal injuries in Naval Special War- s0749-3797(99)00167-1
fare Sea, Air, and Land Operators. Mil Med. 2016;181(1):64–69. 56. Goodall RL, Pope RP, Coyle JA, Neumayer R. Balance and agil-
doi:10.7205/MILMED-D-14-00655 ity training does not always decrease lower limb injury risks: a
38. Lovalekar M, Abt JP, Sell TC, Lephart SM, Pletcher E, Beals K. cluster-randomised controlled trial. Int J Inj Contr Saf Promot.
Accuracy of recall of musculoskeletal injuries in elite military per- 2013;20(3):271–281. doi:10.1080/17457300.2012.717085
sonnel: a cross-sectional study. BMJ Open. 2017;7(12):e017434. 57. Schram B, Pope R, Orr R. Injuries in Australian Army full-
doi:10.1136/bmjopen-2017-017434 time and part-time personnel undertaking basic training. BMC
39. Heebner NR, Abt JP, Lovalekar M, et al. Physical and performance Musculoskelet Disord. 2019;20(1):6. doi:10.1186/s12891-018
characteristics related to unintentional musculoskeletal injury in -2390-2
Special Forces Operators: a prospective analysis. J Athl Train. 58. Orr R, Simas V, Canetti E, Schram B. A Profile of injuries sus-
2017;52(12):1153–1160. doi:10.4085/1062-6050-52.12.22 tained by firefighters: a critical review. Int J Environ Res Public
40. Lovalekar M, Perlsweig KA, Keenan KA, et al. Epidemiology of Health. 2019;16(20):3931. doi:10.3390/ijerph16203931
musculoskeletal injuries sustained by Naval Special Forces Oper- 59. Orr RM, Pope R, Coyle J, Johnston V. Occupational loads carried
ators and students. J Sci Med Sport. 2017;20 Suppl 4:S51–S56. by Australian soldiers on military operations. J Health Saf Envi-
doi:10.1016/j.jsams.2017.09.003 ron. 2015;31(1):451–467.
41. Teyhen DS, Goffar SL, Shaffer SW, et al. Incidence of musculo- 60. Canetti EFD, Gayton S, Schram B, Pope R, Orr RM. Psychological,
skeletal injury in US Army unit types: a prospective cohort study. physical, and heat stress indicators prior to and after a 15-min-
J Orthop Sports Phys Ther. 2018;48(10):749–757. doi:10.2519/ ute structural firefighting task. Biology (Basel). 2022;11(1):104.
jospt.2018.7979 doi:10.3390/biology11010104
42. Lovalekar M, Johnson CD, Eagle S, et al. Epidemiology of mus- 61. Baran K, Dulla LJ, Orr RM, Dawes JJ, Pope R. Duty loads carried
culoskeletal injuries among US Air Force Special Tactics Opera- by the Los Angeles Sheriff’s Department Deputies. Journal of Aus-
tors: an economic cost perspective. BMJ Open Sport Exerc Med. tralian Strength and Conditioning. 2018;26(5): 34–38.
2018;4(1):e000471. doi:10.1136/bmjsem-2018-000471 62. Orr R, Pope R, Lopes TJA, et al. Soldier load carriage, injuries, re-
43. Lovalekar M, Keenan KA, Bird M, Cruz DE, Beals K, Nindl BC. habilitation and physical conditioning: an international approach.
Epidemiology of musculoskeletal injuries among Naval Special Int J Environ Res Public Health. 2021;18(8):4010. doi:10.3390/
Warfare personnel. J Spec Oper Med. 2023;23(1):38–44. doi: ijerph18084010
10.55460/RIJY-4EK5 63. Orr RM, Pope R. Gender differences in load carriage injuries of
44. Hughes CD, Weinrauch PC. Military static line parachute injuries Australian Army Soldiers. BMC Musculoskelet Disord. 2016;17
in an Australian commando battalion. ANZ J Surg. 2008;78(10): (1):488. doi:10.1186/s12891-016-1340-0
848–852. doi:10.1111/j.1445-2197.2008.04581.x 64. Knapik J, Montain SJ, McGraw S, Grier T, Ely M, Jones BH.
45. Larsen B, Aisbett B, Silk A. The Injury profile of an Australian Stress fracture risk factors in basic combat training. Int J Sports
specialist policing unit. Int J Environ Res Public Health. 2016; Med. 2012;33(11):940–946. doi:10.1055/s-0032-1311583
13(4):370. doi:10.3390/ijerph13040370 65. Schram B, Pope R, Norman A, Orr R. A Detailed analysis of seri-
46. Hayhurst D, Warner M, Stokes M, Fallowfield J. Musculoskeletal ous personal injuries suffered by full time and part time soldiers
injury in military specialists: a 2-year retrospective study. BMJ of the Australian Army. Mil Med. 2020;185(3–4):e364–e369.
Mil Health. 2022:e002165. doi:10.1136/military-2022-002165 doi:10.1093/milmed/usz370
47. Thabouillot O, Roffi R, Bertho K, et al. Medical causes of tempo- 66. Bullock SH, Jones BH, Gilchrist J, Marshall SW. Prevention of
rary or definitive leaves from a French counterterrorist unit pre- physical training-related injuries recommendations for the mil-
internship. J R Army Med Corps. 2017;163(2):132–134. doi:10. itary and other active populations based on expedited system-
1136/jramc-2016-000644 atic reviews. Am J Prev Med. 2010;38(1 Suppl):S156–S181. doi:
48. Molloy JM, Pendergrass TL, Lee IE, Chervak MC, Hauret KG, 10.1016/j.amepre.2009.10.023
Rhon DI. Musculoskeletal injuries and United States Army read- 67. Rudzki SJ. Injuries in Australian Army recruits. Part I: decreased
iness part I: overview of injuries and their strategic impact. Mil incidence and severity of injury seen with reduced running dis-
Med. 2020;185(9-10):e1461–e1471. doi:10.1093/milmed/usaa027 tance. Mil Med. 1997;162(7):472–476.
49. Lyons K, Radburn C, Orr R, Pope R. A profile of injuries sus- 68. Knapik JJ, Rieger W, Palkoska F, Van Camp S, Darakjy S. United
tained by law enforcement officers: a critical review. Int J Environ States Army physical readiness training: rationale and evalu-
Res Public Health. 2017;14(2):142. doi:10.3390/ijerph14020142 ation of the physical training doctrine. J Strength Cond Res.
50. Pope R, Orr R. Incidence rates for work health and safety inci- 2009;23(4):1353–1362. doi:10.1519/JSC.0b013e318194df72
dents and injuries in Australian Army reserve vs full time soldiers, 69. Trank TV, Ryman DH, Minagawa RY, Trone DW, Shaffer RA.
and a comparison of reporting systems. J Mil Veterans Health. Running mileage, movement mileage, and fitness in male U.S.
2017;25(2):16–25. Navy recruits. Med Sci Sports Exerc. 2001;33(6):1033–1038.
51. Jones BH, Cowan DN, Tomlinson JP, Robinson JR, Polly DW, doi:10.1097/00005768-200106000-00024
Frykman PN. Epidemiology of injuries associated with physical 70. Wills JA, Saxby DJ, Glassbrook DJ, Doyle TLA. Load-carriage
training among young men in the Army. Med Sci Sports Exerc. conditioning elicits task-specific physical and psychophysical
1993;25(2):197–203. improvements in males. J Strength Cond Res. 2019;33(9):2338–
52. Orr RM, Caust EL, Hinton B, Pope R. Selecting the best of the 2343. doi:10.1519/JSC.0000000000003243
best: associations between anthropometric and fitness assessment 71. Pearce RM. Applying lessons learned from the United States
results and success in police specialist selection. Int J Exerc Sci. Special Operations Command’s Human Performance program
2018;11(4):785–796. to the United States Air Force Comprehensive Airman Fitness.
53. Meigh N, Steele M, Orr RM. Metabolic fitness as a predictor of Air Command and Staff College, Air University; 2016:41. Ac-
injury risk in conditioned military trainees undertaking an ardu- cessed December 28, 2024. https://apps.dtic.mil/sti/citations/
ous field training exercise. In: Proceedings of the 1st Australian AD1041193
110 | JSOM Volume 25, Edition 1 / Spring 2025

