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Effects of “Devil-week” extreme training on testosterone, tyocardial enzyme and hematology analysis of special operations forces of Armed Police |
GENG Ruihui1, LIU Hui2, LI Cheng2, ZHANG lihui1, MA hongliang1 |
1.The No.1 Motorized Contingent Hospital of Armed Police Force, Dingzhou, Hebei 073000, China; 2. Headquarters Outpatient Department, The No.3 Medical Center of PLA General Hospital, Beijing 100089, China; 3. The 82nd Group Army Hospital, Baoding, Hebei 073000, China |
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Abstract Objective To investigate the impact of “Devil-week” extreme training on the physical condition of Armed Police special operations forces in order to prevent and reduce athletic injuries more effectively and improve the effect of physical training.Methods Seventy-nine Armed Police soldiers of special operations forces, who were subjected to the third-quarter“Devil-week” extreme training in 2017, were selected as the subjects. Their blood parameters were detected on the first and 7th day, including testosterone(T), aspartate aminotransferase(AST), lactate dehydrogenase(LDH), creatine kinase(CK)、creatine kinase MB(CK-MB)、white blood cel(WBC)、neutrophil percentage(N)、lymphocyte percentage(L)、red blood cell(RBC)、hemoglobin(HB)、and platelet(PLT). Data was analyzed by SPSS 18.0 software.Results The serum levels of AST、LDH、CK and CK-MB were obviously higher on the 7th day than on the first day[(46.15±43.21)U/L, (285.14±62.76)U/L, (505.17±359.73)U/L, (26.42±16.03)U/L vs (19.67±4.05)U/L, (214.38±31.84)U/L, (222.50±116.09)U/L, (15.85±3.02)U/L, P<0.05], levels of T、WBC、L、RBC、HB and PLT were significantly lower[(21.10±5.58)nmol/L, (5.64±1.24)×109/L, (34.53±7.10)%,(4.82±0.34)×1012/L, (147.20±7.58)g/L, (216.53±45.35)×109/L vs (22.41±5.00)nmol/L, (6.00±1.42)×109/L, (36.01±8.15)%,(4.93±0.35)×1012/L, (150.75±7.30)g/L, (258.96±47.26)×109/L, P<0.05], but the level of N was not significantly different after training[(57.19±7.26)% vs (56.66±8.62)%, P>0.05].Conclusions The“Devil-week” extreme training can greatly affect the physiological function of special operations forces of Armed Police, and thus make difference to their training levels.
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Received: 11 February 2019
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[1] |
刘尚军,李 昕,窦京涛,等.短期高强度军事作业对个体疲劳感及内分泌功能的影响[J].解放军医学院学报, 2014, 35(12): 1200-1202.
|
[2] |
衣雪洁,常 波,张庆荣. 运动性低血睾酮发生机理的研究[J].北京体育大学学报, 2006, 29(4): 477-480.
|
[3] |
韦秀霞,李 崎.运动对男性睾酮及其合成分泌的影响研究进展[J].当代体育科技,2016, 6(23): 6-7,9.
|
[4] |
Santos J L, Dantas R E, Lima C A, et al. Protective effect of a hydroethanolic extract from Bowdichia virgilioides on muscular damage and oxidative stress caused by strenuous resistance training in rats[J]. J Int Soc Sports Nutr, 2014, 11(1):58.
|
[5] |
Margonis K, Fatouros I G, Jamurtas A Z, et al. Oxidative stress biomarkers responses to physical overtraining: Implications for diagnosis[J]. Free Radic Biol Med, 2007,43(6):901-910.
|
[6] |
Krüger K, Mooren F C. Exercise-induced leukocyte apoptosis[J].Exerc Immunol Rev, 2014, 20:117-134.
|
[7] |
刘 鸣,夏盈盈,张淑兰,等. 连续高强度间歇运动对中年久坐健康男性外周血淋巴细胞凋亡的影响[J].北京体育大学学报, 2018, 41(3): 68-75.
|
[8] |
王发强,呼文亮,刘兴太,等. 士兵100 km武装行军前后机体应激反应研究[J].解放军医学杂志,2008, 33(9): 1141-1143.
|
[9] |
段小洪,罗 洪.力竭游泳训练对小鼠红细胞渗透脆性的影响[J].井冈山学院学报(自然科学), 2007, 28(12):74-76.
|
[10] |
Paraiso L F, Gonalves-E-Oliveira A F, Cunha L M, et al. Effects of acute and chronic exercise on the osmotic stability of erythrocyte membrane of competitive swimmers[J]. PLoS One, 2017, 12(2):e0171318.
|
[11] |
邹 明,虞亚明,马 建,等. 划船运动员大运动量训练后血液指标的分析[J]. 四川医学, 2009, 30(6):786-788.
|
[12] |
孟昭琴,孙 颖,王卫星. 递增负荷运动对少年男篮运动员血浆NO代谢的影响[J].北京体育大学学报, 2004, 27(9): 1215-1216.
|
[13] |
Park S Y, Rossman M J,Gifford J R, et al. Exercise training improves vascular mitochondrial function[J]. Am J Physiol Heart Circ Physiol, 2016, 310(7):H821-829.
|
[14] |
邵泽伟,金呈强. 慢性ITP患者外周血NO/NOS、ROS的检测及临床意义[J].中国免疫学杂志, 2013, 29(4): 392-394,399.
|
[15] |
陈惠欣,李兆勇. 军训对新入伍士兵免疫指标影响及意义[J].交通医学, 2014, 28(1): 94-95.
|
[1] |
. [J]. Med. J. Chin. Peop. Armed Poli. Forc., 2019, 30(2): 143-144. |
|
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