Chronicity of sleep restriction during Army basic military training

Journal of Science and Medicine in Sport - Tập 25 - Trang 432-438 - 2022
Penelope Larsen1, Jace R. Drain2, Neil Gibson1, John Sampson1, Scott Michael1, Gregory Peoples1, Herbert Groeller1
1Centre for Medical and Exercise Physiology, Faculty of Science, Medicine and Health, University of Wollongong, Australia
2Defence Science and Technology Group, Fishermans Bend, Australia

Tài liệu tham khảo

Groeller, 2015, How effective is initial military-specific training in the development of physical performance of soldiers?, J Strength Cond Res, 29, 10.1519/JSC.0000000000001066 Miller, 2011, Sleep and fatigue issues in continuous operations: a survey of U.S. Army Officers, Behav Sleep Med, 9, 53, 10.1080/15402002.2011.533994 Miller, 2012, Accommodating adolescent sleep-wake patterns: the effects of shifting the timing of sleep on training effectiveness, Sleep, 35, 1123 Thompson, 2017, Sleep banking, Mil Rev, 97, 91 Seelig, 2016, Sleep and health resilience metrics in a large military cohort, Sleep, 39, 1111, 10.5665/sleep.5766 Adrian, 2019, Sleep problems and functioning during initial training for a high-risk occupation, Sleep Health, 5, 651, 10.1016/j.sleh.2019.06.009 Grier, 2020, Sleep duration and musculoskeletal injury incidence in physically active men and women: a study of U.S. Army Special Operation Forces soldiers, Sleep Health, 10.1016/j.sleh.2020.01.004 Reynolds, 2010, Total sleep deprivation, chronic sleep restriction and sleep disruption, 10.1016/B978-0-444-53702-7.00006-3 Van Dongen, 2003, The cumulative cost of additional wakefulness: dose-response effects on neurobehavioral functions and sleep physiology from chronic sleep restriction and total sleep deprivation, Sleep, 26, 117, 10.1093/sleep/26.2.117 Grandou, 2019, The effects of sleep loss on military physical performance, Sports Med, 49, 1159, 10.1007/s40279-019-01123-8 Drain, 2017, Hormonal response patterns are differentially influenced by physical conditioning programs during basic military training, J Sci Med Sport, 20, S98, 10.1016/j.jsams.2017.08.020 Crowley, 2012, Sleep during basic combat training: a qualitative study, Mil Med, 177, 823, 10.7205/MILMED-D-12-00022 Smith, 2021, Effects of six weeks of chronic sleep restriction with weekend recovery on cognitive performance and wellbeing in high-performing adults, Sleep, 10.1093/sleep/zsab051 Miller, 2005, Sleep patterns of young men and women enrolled at the United States Military Academy: results from year 1 of a 4-year longitudinal study, Sleep, 28, 837, 10.1093/sleep/28.7.837 Ritland, 2021, Sleep health of incoming army trainees and how it changes during basic combat training, Sleep Health, 7, 37, 10.1016/j.sleh.2020.10.005 Girschik, 2012, Validation of self-reported sleep against actigraphy, J Epidemiol, 22, 462, 10.2188/jea.JE20120012 Hirshkowitz, 2015, National Sleep Foundation’s sleep time duration recommendations: methodology and results summary, Sleep Health, 1, 40, 10.1016/j.sleh.2014.12.010 Adams, 2017, Sleep health of Australian adults in 2016: results of the 2016 Sleep Health Foundation national survey, Sleep Health: J Nat Sleep Found, 3, 35, 10.1016/j.sleh.2016.11.005 Slater, 2015, Assessing sleep using hip and wrist actigraphy, Sleep Biol Rhythms, 13, 172, 10.1111/sbr.12103 Cellini, 2016, Free-living cross-comparison of two wearable monitors for sleep and physical activity in healthy young adults, Physiol Behav, 157, 79, 10.1016/j.physbeh.2016.01.034 Buysse, 1989, The Pittsburgh Sleep Quality Index: a new instrument for psychiatric practice and research, Psychiatry Res, 28, 193, 10.1016/0165-1781(89)90047-4 Esliger, 2006, Technical reliability assessment of three accelerometer models in a mechanical setup, Med Sci Sports Exerc, 38, 2173, 10.1249/01.mss.0000239394.55461.08 Ohayon, 2017, National Sleep Foundation’s sleep quality recommendations: first report, Sleep Health, 3, 6, 10.1016/j.sleh.2016.11.006 Booth, 2006, Australian army recruits in training display symptoms of overtraining, Mil Med, 171, 1059, 10.7205/MILMED.171.11.1059 Walsh, 2021, Sleep and the athlete: narrative review and 2021 expert consensus recommendations, Br J Sports Med, 55, 356, 10.1136/bjsports-2020-102025 Larsen, 2020, A preliminary investigation of the effects of short-duration, vigorous exercise following sleep restriction, fragmentation and extension on appetite and mood in inactive, middle-aged men, J Sleep Res Needham-Beck, 2018, Comparison of training intensity, energy balance, and sleep duration in British Army Officer Cadets between base and field exercise, Med Sci Sports Exerc, 50, 639, 10.1249/01.mss.0000537196.66227.c2 Chaput, 2020, Sleep timing, sleep consistency, and health in adults: a systematic review, Appl Physiol Nutr Metab, 45, S232, 10.1139/apnm-2020-0032 Burley, 2020, Effect of a novel low volume, high intensity concurrent training regimen on recruit fitness and resilience, J Sci Med Sport, 23, 979, 10.1016/j.jsams.2020.03.005 Grandner, 2006, Criterion validity of the Pittsburgh Sleep Quality Index: investigation in a non-clinical sample, Sleep Biol Rhythms, 4, 129, 10.1111/j.1479-8425.2006.00207.x Knutson, 2007, Intra-individual daily and yearly variability in actigraphically recorded sleep measures: the CARDIA study, Sleep, 30, 793, 10.1093/sleep/30.6.793