[1] |
孙瑞山, 田万里. 飞行疲劳检测方法研究进展[J]. 职业与健康,2015, 31(8): 1142-1146.
|
[2] |
段付军, 张丹, 张宁玲, 等. 直升机飞行员飞行疲劳状况及相关因素分析[J]. 空军医学杂志, 2021, 37(4): 288-290, 327.
|
[3] |
Gaines AR, Morris MB, Gunzelmann G. Fatigue-related aviation mishaps[J]. Aerosp Med Hum Perform, 2020, 91(5): 440-447.
|
[4] |
张广林. 直升机产业化发展态势[J]. 中国军转民, 2005, 6(7):52-54.
|
[5] |
Van Dongen HP, Maislin G, Mullington JM,et al. The cumulative cost of additional wakefulness: dose-response effects on neurobehavioral functions and sleep physiology from chronic sleep restriction and total sleep deprivation sleep[J].Sleep,2003, 26(2):117-126.
|
[6] |
Sallinen M, Sihvola M, Puttonen S, et al. Sleep, alertness and alertness management among commercial airline pilots on short-haul and long-haul flights[J]. Accid Anal Prev, 2017, 98(7): 320-329.
|
[7] |
Caldwell JA. The impact of fatigue in air medical and other types of operations: a review of fatigue facts and potential countermeasures[J]. Air Med J, 2001, 20(1): 25-32.
|
[8] |
Fultz, NE. Bonmassar, G, Setsompop, K, et al. Coupled electrophysiological, hemodynamic, and cerebrospinal fluid oscillations in human sleep[J]. Science, 2019, 366(6465): 628-631.
|
[9] |
Skinner N, Dorrian J. A work-life perspective on sleep and fatiguelooking beyond shift workers[J]. Ind Health, 2015, 53(5): 417-426.
|
[10] |
McMahon TW, Newman DG. The differential effect of sustained operations on psychomotor skills of helicopter pilots[J]. Aerosp Med Hum Perform, 2018, 89(6): 496-502.
|
[11] |
Caldwell JA, Mallis MM, Caldwell JL, et al. Aerospace medical association fatigue countermeasures subcommittee of the aerospace human factors committee (fatigue countermeasures in aviation)[J].Aviat Space Environ Med, 2009, 80(1): 29-59.
|
[12] |
Roach GD, Darwent D, Sletten TL, et al. Long-haul pilots use inflight napping as a countermeasure to fatigue[J]. Appl Ergon,2011, 42(2): 214-218.
|
[13] |
Hartzler BM. Fatigue on the flight deck: the consequences of sleep loss and the benefits of napping[J]. Accid Anal Prev, 2014,62(1): 309-318.
|
[14] |
Reichert CF, Deboer T, Landolt HP. Adenosine, caffeine, and sleep-wake regulation: state of the science and perspectives[J].Sleep Res, 2022, 31(4): e13597.
|
[15] |
Luxton, DD. Greenburg, D, Ryan, J, et al. Prevalence and impact of short sleep duration in redeployed OIF soldiers[J]. Sleep, 2011,34(9): 1189-1195.
|
[16] |
Bukhari AS, Caldwell JA, DiChiara AJ, et al. Caffeine, energy beverage consumption, fitness, and sleep in U.S. army aviation personnel[J]. Aerosp Med Hum Perform, 2020, 91(8): 641-650.
|
[17] |
Wingelaar-Jagt YQ, Bottenheft C, Riedel WJ, et al. Effects of modafinil and caffeine on night-time vigilance of air force crewmembers: a randomized controlled trial[J]. Psychopharmacol,2023, 37(2): 172-180.
|
[18] |
Wingelaar-Jagt YQ, Wingelaar TT, Riedel WJ,et al. Comparison of effects of modafinil and caffeine on fatigue-vulnerable and fatigue-resistant aircrew after a limited period of sleep deprivation[J]. Front Physiol, 2024, 8(14): 1303758.
|
[19] |
De Souza JG, Del Coso J, Fonseca FS, et al. Risk or benefit? side effects of caffeine supplementation in sport: a systematic review[J]. Eur J Nutr, 2022, 61(8): 3823-3834.
|
[20] |
Rasmussen N. Medical science and the military: the Allies' use of amphetamine during World War II[J]. Interdiscip Hist, 2011, 42(2): 205-233.
|
[21] |
Daubner J, Arshaad MI, Henseler C, et al. Pharmacological neuroenhancement: current aspects of categorization, epidemiology,pharmacology, drug development, ethics, and future perspectives[J]. Neural Plast, 2021, 1: 8823383.
|
[22] |
Chong TT, Fortunato E, Bellgrove MA. Amphetamines improve the motivation to invest effort in attention-deficit/hyperactivity disorder[J]. Neurosci, 2023, 43(41): 6898-6908.
|
[23] |
Emonson DL, Vanderbeek RD. The use of amphetamines in U.S.air force tactical operations during desert shield and storm[J].Aviat Space Environ Med, 1995, 66(3): 260-263.
|
[24] |
Kenagy DN, Bird CT, Webber CM, et al. Dextroamphetamine use during B-2 combat missions[J]. Aviat Space Environ Med, 2004,75(5): 381-386.
|
[25] |
Caldwell JA, Caldwell JL. An in-flight investigation of the efficacy of dextroamphetamine for sustaining helicopter pilot performance[J]. Aviat Space Environ Med, 1997, 68(12): 1073-1080.
|
[26] |
Caldwell JA. Effects of operationally effective doses of dextroamphetamine on heart rates and blood pressures of army aviators[J]. Mil Med, 1996, 161(11): 673-678.
|
[27] |
穆报春, 李丽琴, 李云祥, 等. 莫达非尼的研究进展[J]. 中国新药杂志, 2004, 13(9): 789-792.
|
[28] |
Nigel H, 莫云凌. 综述发现莫达非尼确实能够提高认知能力[J]. 英国医学杂志(中文版), 2015, 18(12): 698.
|
[29] |
Caldwell JA, Caldwell JL, Smith JK, et al. Modafinil's effects on simulator performance and mood in pilots during 37h without sleep[J]. Aviat Space Environ Med, 2004, 75(9): 777-784.
|
[30] |
Ooi T, Wong SH, See B. Modafinil as a stimulant for military aviators[J]. Aerosp Med Hum Perform, 2019, 90(5): 480-483.
|
[31] |
Schallhorn CS. Vigilance aid use and aircraft carrier landing performance in pilots of tactical aircraft[J]. Aerosp Med Hum Perform, 2020, 91(6): 518-524.
|
[32] |
Van Puyvelde M, Van Cutsem J, Lacroix E, et al. A state-of-theart review on the use of modafinil as a performance-enhancing drug in the context of military operationality[J]. Mil Med, 2022,187(1-2): 52-64.
|