Page 111 - Journal of Special Operations Medicine - Spring 2016
P. 111
7. Lussiana T, Fabre N, Hebert K, et al. Effect of slope and foot- 28. Bennell K, Crossley K, Jayarajan J, et al. Ground reaction
wear on running economy and kinematics. Scand J Med Sci forces and bone parameters in females with tibial stress frac-
Sports. 2013;23:e246–e253. ture. Med Sci Sports Exerc. 2004;36:397–404.
8. Bellar D, Judge LW. Effect of training in minimalist footwear 29. Nigg BM. Impact forces in running. Curr Opin Orthop.
on oxygen consumption during walking and running. Biol 1997;8:43–47.
Sport. 2015;32:149–154. 30. Milgrom C, Simkin A, Eldad A, et al. Using bone’s adaptive
9. Jones BH, Knapik JJ, Daniels WL, et al. The energy cost of ability to lower the incidence of stress fractures. Am J Sports
women walking and running in shoes and boots. Ergonomics. Med. 2000;28:245–251.
1986;29:439–443. 31. Leigey D, Irrgang J, Francis K, et al. Participation in high-
10. Jones BH, Toner MM, Daniels WL, et al. The energy cost impact sports predicts bone mineral density in senior Olympic
and heart-rate response of the trained and untrained subjects athletes. Sport Health. 2009;1:508–513.
walking and running in shoes and boots. Ergonomics. 1984; 32. Stanforth D, Lu T, Stults-Kolehmainen MA, et al. Bone
27:895–902. mineral content and density among female NCAA Division
11. Bertelsen ML, Jensen JF, Nielsen MH, et al. Footstrike pat- I athletes across the competitive season over a multi-year
terns among novice runners wearing a conventional, neutral time frame. J Strength Cond Res. In press. doi:10.1519/JSC
running shoe. Gait Posture. 2013;38:354–356. .0000000000000785
12. Hasegawa H, Yamauchi T, Kraemer WJ. Foot strike patterns 33. Warden SJ, Hurst JA, Sanders MS, et al. Bone adaptation to
of runners at the 15-km point during an elite-level half mara- a mechanical loading program significantly increases skeletal
thon. J Strength Cond Res. 2007;21:888–893. fatigue resistance. J Bone Miner Metab. 2005;20:809–816.
13. Larson P, Higgins E, Kaminski J, et al. Foot strike patterns 34. Goss DL, Gross MT. Relationship among self-reported shoe
of recreational and sub-elite runners in a long-distance road type, footstrike pattern, and injury incidence. US Army Med
race. J Sport Sci. 2011;29:1666–1673. Dept J. 2012;October–December:25–30.
14. Lieberman DE, Venkadesan M, Werbel WA, et al. Footwear 35. Ridge ST, Johnson AW, Mitchell UM, et al. Foot bone mar-
strike patterns and collusion forces in habitually barefoot ver- row edema after 10-wk transition to minimalist shoes. Med
sus shod runners. Nature. 2010;463:531–536. Sci Sports Exerc. 2013;45:1363–1368.
15. Fredericks W, Swank S, Teisberg M, et al. Lower extremity 36. Ryan M, Elashi M, Newsham-West R, et al. Examining injury
biomechanical relationships with different speeds in tradi- risk and pain perception in runners using minimalist foot-
tional, minimalist and barefoot footwear. J Sports Sci Med. wear. Br J Sports Med. 2014;48:1257–1262.
2015;14:276–283. 37. Grier T, Canham-Chervak M, Bushman T, et al. Injury risk
16. Cavanagh PR, LaFortune MA. Ground reaction forces in dis- and performance among soldiers wearing minimalist run-
tance running. J Biomech. 1980;13:397–406. ning shoes compared to traditional running shoes. http://phc
17. Williams DS, McClay IS, Manal KT. Lower extremity me- .amedd.army.mil/PHC%20Resource%20Library/Minimalist
chanics in runners with a converted forefoot strike pattern. J RunningShoes.pdf. Accessed 22 September 2015.
Appl Biomech. 2000;16:210–218. 38. Salzler MJ, Bluman EM, Noonan S, et al. Injuries observed in
18. Daoud AI, Geissler GJ, Wang F, et al. Foot strike and injury minimalist runners. Foot Ankle Int. 2012;33:262–266.
rates in endurance runners: a retrospective study. Med Sci 39. Cauthon DJ, Langer P, Coniglione TC. Minimalist shoe inju-
Sports Exerc. 2012;44:1325–1334. ries: three case reports. Foot. 2013;23:100–103.
19. Diebal AR, Gregory R, Alitz C, et al. Forefoot running improves 40. Fuller JT, Thewlis D, Tsiros MD, et al. The long-term effect
pain and disability associated with chronic exertional com- of minimalist shoes on running performance and injury: de-
partment syndrome. Am J Sports Med. 2012;40:1060–1067. sign of a randomized controlled trial. BMJ Open. 2015;5:
20. Warr BJ, Fellin RE, Sauer SG, et al. Characterization of foot- e0008307.
strike patterns: lack of association with injuries or perfor-
mance in soldiers. Mil Med. 2015;7:830–834.
21. Massey JT, Gonzalez JF. Optimal recall period for estimating
accidental injuries in the National Health Interview Survey. MAJ (Ret) Knapik served in the military as an enlisted wheel
Proc Am Stat Assoc. 1976;18:584–588. vehicle mechanic and medic before he was commissioned as a
22. Zwerling C, Sprince NL, Wallace RB, et al. Effect of recall Medical Service Corps officer in the US Army. He retired from
period on the reporting of occupational injuries among older military service in 1994 and continued active research at the
workers in the Health and Retirement Study. Am J Ind Med. US Army Research Laboratory and epidemiology at the US
1995;28:583–590. Army Public Health Center before retiring from civil service in
23. Pohl MB, Hamill J, Davis IS. Biomechanical and anatomical 2011. He is a fellow of the American College of Sports Medi-
factors associated with a history of plantar fasciitis in female
runners. Clin J Sport Med. 2009;19:372–376. cine, holds the Order of Military Medical Merit, and is an
24. Milner CE, Ferber R, Pollard CD, et al. Biomechanical factors adjunct professor at Uniformed Services University (Bethesda,
associated with tibial stress fractures in female runners. Med Maryland) and Bond University (Australia). He currently
Sci Sports Exerc. 2006;38:323–328. works as a Knowledge Preservation Fellow at the Oak Ridge
25. Ribeiro AP, Joao SMA, Dinato RC, et al. Dynamic patterns of Institute for Science and Education. E-mail: joseph.j.knapik@
forces and loading rates in runners with unilateral plantar fas- JSOMonline.org.
ciitis: a cross sectional study. PLOS One. 2015;10:e0136971.
26. Queen RM, Abbey AN, Chuckpaiwong B, et al. Plantar load- Dr Pope is currently an associate professor of physiotherapy
ing comparisons between women with a history of second and co-leads the Tactical Research Unit at Bond University
metatarsal stress fractures and normal controls. Am J Sports in Australia. Dr Pope provided clinical physiotherapy, reha-
Med. 2009;37:390–395.
27. Dixon SJ, Creaby MW, Allsopp AJ. Comparison of static and bilitation, and injury prevention services at the Australian
dynamic biomechanical measures in military recruits with Army Recruit Training Centre before establishing and lead-
and without a history of third metatarsal stress fracture. Clin ing the Australian Defence Injury Prevention Program. As
Biomech. 2006;21:412–419. part of this work, and more recently in his university roles,
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