高海拔环境下军事共同训练科目中新兵减员的相关预测因素

罗凯, 汤前军, 王勇, 尹浩军, 聂善化

武警医学 ›› 2025, Vol. 001 ›› Issue (ZJ1) : 17-21.

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武警医学 ›› 2025, Vol. 001 ›› Issue (ZJ1) : 17-21.
新兵训练卫勤保障

高海拔环境下军事共同训练科目中新兵减员的相关预测因素

  • 罗凯1, 汤前军2, 王勇2, 尹浩军1, 聂善化3
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罗凯, 汤前军, 王勇, 尹浩军, 聂善化. 高海拔环境下军事共同训练科目中新兵减员的相关预测因素[J]. 武警医学. 2025, 001(ZJ1): 17-21
中图分类号: E251.6   

参考文献

[1] 新华社.习近平出席中央军委军事训练会议并发表重要讲话[EB/OL].http://www.gov.cn/xinwen/2020-11/25/content_5564511.htm
[2] Carrard J, Rigort A C, Herzog C A, et al. Diagnosing overtraining syndrome: a scoping review[J]. Sports Health, 2022, 14(5): 665-673.
[3] Gurney J M, Stern C A, Kotwal R S, et al. Tactical combat casualty care training, knowledge, and utilization in the us army[J]. Mil Med, 2020, 185(Suppl 1): 500-507.
[4] Niu A, Ma H, Zhang S,et al. The effectiveness of simulation-based training on the competency of military nurses: a systematic review[J]. Nurse Educ Today, 2022, 119: 105536.
[5] Nindl B C, Jaffin D P, Dretsch M N, et al. Human performance optimization metrics: consensus findings, gaps, and recommendations for future research[J]. J Strength Cond Res, 2015, 29(Suppl 11): S221-S245.
[6] 龚 栩, 谢熹瑶, 徐 蕊, 等.抑郁-焦虑-压力量表简体中文版(DASS-21)在中国大学生中的测试报告[J]. 中国临床心理学杂志, 2010, 18(4): 443-446.
[7] 肖国强.最大摄氧量的间接测定法[J].广州体育学院学报, 1983, 13(1): 123-127.
[8] Vaara J P, Eränen L, Ojanen T, et al. Can physiological and psychological factors predict dropout from intense 10-day winter military survival training? [J].Int J Environ Res Public Health, 2020, 17(23): 9064.
[9] Hillel S C, Ishqer A, Mahameed F, et al. Acute and chronic sleep deprivation in residents: cognition and stress biomarkers[J].Med Educ, 2021, 55(2): 174-184.
[10] Caballero R N, Bendahmane M, Gupta J P, et al. Synaptotagmin-7 facilitates acetylcholine release in splanchnic nerve-chromaffin cell synapses during nerve activity[J]. Neurosci Lett, 2023, 800: 137129.
[11] Chen X, Gianferante D, Hanlin L, et al. Hpa-axis and inflammatory reactivity to acute stress is related with basal hpa-axis activity[J].Psychoneuroendocrinology, 2017, 78: 168-176.
[12] Taylor M K, Hernández L M, Fuller S A, et al. Cortisol awakening response in elite military men: summary parameters, stability measurement, and effect of compliance[J]. Mil Med, 2016, 181(11): e1600-e1607.
[13] 胡光涛, 冯正直, 王国威, 等. 综合心理行为训练对新兵心理应激的干预效果[J]. 解放军预防医学杂志, 2014, 32(5): 402-405.
[14] Herane V A, Papadopoulos A, Angel V, et al. Cortisol levels in chronic fatigue syndrome and atypical depression measured using hair and saliva specimens[J]. J Affect Disord, 2020, 267: 307-314.
[15] Lengacher C A, Reich R R, Paterson C L, et al. A large randomized trial: effects of mindfulness-based stress reduction (MBSR) for breast cancer (BC) survivors on salivary cortisol and IL-6[J]. Biol Res Nurs, 2019, 21(1): 39-49.
[16] Robinson M, Siddall A, Bilzon J, et al. Low fitness, low body mass and prior injury predict injury risk during military recruit training: a prospective cohort study in the British Army[J]. BMJ Open Sport Exerc Med, 2016, 2(1): e000100.
[17] Abbott A, Wang C, Stamm M, et al. Part ii: Risk factors for stress fractures in female military recruits[J]. Mil Med, 2023, 188(1-2): 93-99.
[18] Barbosa W G, Saint M R, Soares E M, et al. The effects of a 6-month mandatory military police academy training on recruits' physical fitness[J]. Work, 2022, 73(4): 1297-1306.
[19] Vaara J P, Groeller H, Drain J, et al. Physical training considerations for optimizing performance in essential military tasks[J]. Eur J Sport Sci, 2022, 22(1): 43-57.
[20] Orr R M, Cohen B S, Allison S C, et al. Models to predict injury, physical fitness failure and attrition in recruit training: a retrospective cohort study[J]. Mil Med Res, 2020, 7(1): 26.
[21] Müller S L, Gundlach N, Böckelmann I, et al. Physical fitness as a risk factor for injuries and excessive stress symptoms during basic military training[J]. Arch Occup Environ Health, 2019, 92(6): 837-841.
[22] Chassé E, Laroche M A, Dufour C A, et al. Association between musculoskeletal injuries and the canadian armed forces physical employment standard proxy in canadian military recruits[J]. Mil Med, 2020, 185(7-8): e1140-e1146.
[23] Ojanen T, Kyröläinen H, Kozharskaya E, et al. Changes in strength and power performance and serum hormone concentrations during 12 weeks of task-specific or strength training in conscripts[J]. Physiol Rep, 2020, 8(9): e14422.
[24] Smaliukiene R, Bekesiene S, Mazeikiene A, et al. Hair cortisol, perceived stress, and the effect of group dynamics: a longitudinal study of young men during compulsory military training in Lithuania[J]. Int J Environ Res Public Health, 2022, 19(3): 1663.
[25] Kraemer W J, Ratamess N A, Hymer W C, et al. Growth hormone(s), testosterone, insulin-like growth factors, and cortisol: roles and integration for cellular development and growth with exercise[J]. Front Endocrinol (Lausanne), 2020, 11: 33.

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