Page 110 - JSOM Winter 2022
P. 110
References 23. Hudson AN, VanDongen HPA, Honn KA. Sleep deprivation, vig-
1. Itani O, Jike M, Wantanabe N, Kaneita Y. Short sleep duration ilant attention, and brain function: a review. Neuropsychophar-
and health outcomes: a systematic review, meta-analysis, and macol Rev. 2019;45:21–30.
meta-regression. Sleep Med. 2017;32:246–256. 24. Lieberman HR, Bathalon GP, Falco CM, III CAM, Niro PJ, Thar-
2. Altman NG, Izci-Balserak B, Schopfer E, et al. Sleep duration ion WJ. The fog of war: decrements in cognitive performance and
versus sleep sufficiency as predictors of cardiometabolic health mood associated with combat-like stress. Aviat Space Environ
outcomes. Sleep Med. 2012;13:1261–1270. Med. 2005;76(7):C7–C14.
3. Yin J, Jin X, Shan Z, et al. Relationship of sleep duration with 25. Lieberman HR, Tharion WJ, Shukitt-Hale B, Speckman KL,
all-cause mortality and cardiovascular events: a systematic review Tulley R. Effects of caffeine, sleep loss, and stress on cognitive
and dose-response meta-analysis of prospective cohort studies. J performance and mood during US Navy SEAL training. Psycho-
Am Heart Assoc. 2017;6:e005947. pharmacology. 2002;164:250–261.
4. Watanabe M, Kikuchi H, Tanaka J, Takahashi M. Association of 26. Lieberman HR, Bathalon GP, Falco CM, Kramer FM, Morgan
short sleep duration with weight gain and obesity at 1-year follow CA, Niro P. Severe decrements in cognitive function and mood in-
up: a large-scale prospective study. Sleep. 2010;33(2):161–167. duced by sleep loss, heat, dehrdration and undernutrition during
5. Patel SR, Hu FB. Short sleep duration and weight gain: a system- simulated combat. Biol Psychiatry. 2005;57:442–429.
atic review. Obesity. 2008;16(3):643–653. 27. Haslam DR. Sleep loss, recovery sleep, and military performance.
6. Irwin MR, Olmsteadf R, Carroll JE. Sleep disturbance, sleep du- Ergonomics. 1982;25(2):163–178.
ration, and inflammation: a systematic review and meta-analysis 28. Vrijkotte S, Roelands B, Meeusen R, Pattyn N. Sustained military
of cohort studies and experimental sleep deprivation. Biol Psychi- operations and cognitive performance. Aerosp Med Human Per-
atry. 2016;80(1):40–52. form. 2016;87(8):718–727.
7. Goel N, Rao H, Durmer JS, Dings DF. Neurocognitive conse- 29. Grandou C, Wallace L, Fullagar HHK, Duffield R, Burley S. The
quences of sleep deprivation. Semin Neurol. 2009;29(4):320–339. effects of sleep loss on military physical performance. Sports Med.
8. Watson NF, Badr S, Belenky G, et al. Joint consensus statement 2019;49:1159–1172.
of the American Academy of Sleep Medicine and Sleep Research 30. Tharion WJ, Shukitt-Hale B, Lieberman HR. Caffeine effects on
Society on the recommended amount of sleep for healthy adults: marksmanship during high stress military training with 72 hours
methodology and discussion. J Clin Sleep Med. 2015;11(8): sleep deprivation. Aviat Space Environ Med. 2003;74(4):309–
931–952. 314.
9. Watson NF, Badr S, Belenky G, et al. Recommended amount of 31. McLellan TM, Kamimori GH, Bell DG, Smith IF, Johnson D,
sleep for healthy aduts: a joint consensus statement of the Amer- Belenky G. Caffeine maintains vigilance and marksmanship in
ican Academy of Sleeep Medicine and Sleep Research Society. simulated urban operations with sleep deprivation. Aviat Space
Sleep. 2015;38(6):843–844. Environ Med. 2005;76(1):39–45.
10. Ohayon M, Wickwire EM, Hirshkowitz M, et al. National Sleep 32. Smith CD, Cooper AD, Merullo DJ, et al. Sleep restriction and
Foundation’s sleep quality recommendations: first report. Sleep cognitive load affect performance on a simulated marksmanship
Health. 2017;3:6–19. task. J Sleep Res. 2017;28(3):e12637.
11. Krueger PM, Friedman EM. Sleep duration in the United states: 33. Steinweg KK. Dealing realistically with fatricide. Parameters.
a cross sectional population-based study. Am J Epidemiol. 2009; 1995;25(1):4–29.
169(9):1052–1063. 34. Dobrosielski DA, Sweeney L, Lisman PJ. The association between
12. Schoenborn CA, Adams PF. Sleep duration as a correlate of poor sleep and the incidence of sportsand physical training-re-
smoking, alcohoil use, leisure-time physical inactivity, and obe- lated injuries in adult athletic populations: a systematic review.
sity among adults: United States, 2004-2006. cdc.gov/nchs/data/ Sports Med. 2021;51:777–793.
hestat/sleep04-06/sleep04-06.pdf. Accessed 10 August 2022. 35. Gao B, et al. Lack of sleep and sports injuries in adolescents: a sys-
13. Grier T, Dinkeloo E, Reynolds M, Jones BH. Sleep duration and tematic review and meta-analysis. J Pediatr Orthop. 2018;39(5):
musculoskeletal injury incidence in physically active men and e324–e333.
women: a study of U.S. Army Special Operations Forces soldiers. 36. Lisman P, Ritland BM, Burke TM, Sweeney L, Dobrosielski DA.
Sleep Health. 2020;6:344–349. The association between sleep amd musculoskeletal injury in
14. Seelig AD, Jacobson IG, Donoho CI, Trone DW, Crum-Cianflone military personnel: a systematic review. Mil Med. 2022 May 11:
NF, Balkin TJ. Sleep and health resilience metrics in a large mili- usac118.
tary cohort. Sleep. 2016;39(5):1111–1120. 37. Institute of Medicine (US) Committee on Sleep Medicine and Re-
15. Cooper AD, Kolaja CA, Markwald RR, Jacobson IG, Chinoy search. Sleep disorders and sleep deprivation: An unmet public
ED. Longitudinal associations of military-related factors on health problem. Colten HR, Altevogt BM, eds. Washington (DC):
self-reported sleep among U.S. service members. Sleep. 2021;44 National Academies Press (US); 2006.
(12):1–15. 38. Troynikov O, Watson CG, Nawaz N. Sleep environments and
16. Peterson AL, Goodie JL, Satterfield WA, Brim WL. Sleep distru- sleep physiology: a review. J Thermal Biol. 2018;78:192–203.
bances during military deployments. Mil Med. 2008;173:230–235. 39. Gregg RL, Banderet LE, Reynolds KL, Creedon JF, Rice VJ. Psy-
17. Seelig AD, Jacobson IC, Smith B, et al. Sleep patterns before, chological factors that influence traumatic injury occurrence and
during and after deployments to Iraq and Afghanistan. Sleep. physical performance. Work. 2002;18:133–139.
2010;33(12):1615–1622. 40. Kazman JB, delaMotte S, Bramhall EMS, Purvis DL, Deuster PA.
18. Gehrman P, Seelig AD, Jacobson IG, et al. Predeployment sleep Physical fitness and injury reporting among active duty and na-
duration and insomnia symptoms as risk factors for new-onset tional guard/reserve women: associations with risk and lifestyle
mental health disorders following military deployment. Sleep. factors. Army Med Dep J. 2015;April–June:39–47.
2013;36(7):1009–1018. 41. Shattuck NL, Matsangas P, Moore J, Wegemann L. Prevalence
19. Luxton DD, Greenburg D, Ryan J, Niven A, Wheeler G, Mysli- of musculoskeletal symptoms, excessive daytime sleepiness, and
wiec V. Prevalence and impact of short sleep duration in rede- fatigue in the crewmembers of a U.S. Navy ship. Mil Med. 2016;
ployed OIF soldiers. Sleep. 2011;34(9):1189–1195. 181:655–662.
20. Institute of Medicine (US) Committee on Military Nutrition Re- 42. Kardouni JR, Shing TL, Rhon DI. Risk factors for low back pain
search. The effects of sleep deprivation on performance during and spine surgery. A retrospective cohort study in soldiers. Am J
continuous combat operations. 1994. https://www.ncbi.nlm.nih. Prev Med. 2016;51(5):e129–e138.
gov/books/NBK209071/?report=printable. Accessed 10 August 43. Kovcan B, Vodicar J, Simenko J, Videmsek M, Pori P, Vedran H.
2022. Retrospective and cross-sectional analysis of physical training-
21. Fogel SM, Ray LB, Binnie L, Owen AM. How to become an ex- related musculoskeletal injuries in Slovenian armed forces. Mil
pert: a new perspective on the role of sleep in the mastery of pro- Med. 2019;184:e195–e199.
cedural skills. Neurobiol Learn Mem. 2015;125:236–248. 44. Ruan R, Yu X, Wang H, et al. Sleep quality and military training
22. Killgore WDS. Effects of sleep deprivation on cognition. Prog injury during basic combat training: a prospective cohort study of
Brain Res. 2010;185:105–129. Chinese male recruits. Occup Environ Med. 2021;78:433–437.
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