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Changes and significance of physiological indexes of recruits in intensive training |
TIAN Donghua, JIANG Ximeng, LI Mengbo, WANG Xiaoli |
Department of Medicine, Beijing Municipal Corps Hospital of Chinese People's Armed Police Force, Beijing 100027,China |
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Abstract Objective To explore the changes and significance of physiological indexes of recruits in intensive training. Method One hundred and twenty-six recruits in mobile forces were selected as research targets. According to the training program, they concentrated on physical training for 2 months and carried out follow-up regular inspection. Six test time points are the beginning of the training, 3 days of training, 1 week, 2 weeks, 1 month and 2 months of training; After getting up, pulse, blood pressure, height and weight were measured; Fasting venous blood was drawn for blood routine to examine C-reactive protein (CRP), myocardial zymogram, myocardial infarction, liver function, renal function, Brain Natriuretic Peptide (BNP), echocardiography. Blood oxygen and pulse were immediately measured after 1km running. Results There was no significant change in the basic physiological indicators of the recruits after the army recruits training. The maximum heart rate increased, the mean heart rate decreased, and the performance of one-kilometer running improved. After the training, the values of cardiac troponin(cTnT) and MB isoenzyme of creatine kinase(CK-MB) in blood serum increased within physiological range, Aspartate aminotransferase(AST), creatine kinase(CK), Lactate dehydrogenase(LDH) and Myoglobin(MYO) significantly increased and were much higher than the physiological values, and the physiological level of BNP recovered after mild elevation, but there was no change in CRP. Ultrasonic cardiogram showed that there was no significant change in EF value. The left ventricular stroke output significantly increased, and the interventricular septal thickness slightly decreased but remained at a range of physiological condition. The cardiopulmonary function was significantly improved after recruit training and still met the standards. Conclusion Utrasonic cardiogram and myocardial enzymology detection system may assess the myocardial injury and timely screen out high-risk cases prone to cardiovascular events in the recruit training.
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Received: 10 August 2021
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[1] |
胡 彦,杜 江,严小波,等. 负重越野训练对战士心功能的影响[J]. 中国应用生理学杂志,2016,32(5):437-439,443.
|
[2] |
王江涛,边婷婷,和朝平,等. 高强度军事训练对新入伍战士心脏结构及功能的影响[J]. 解放军医药杂志,2016,28(1):7-10.
|
[3] |
齐书英,汝磊生,彭育红,等. 高强度训练对部队官兵心电图现象的影响[J]. 中国心脏起搏与心电生理杂志,2020,34(6):573-577.
|
[4] |
李 伟,张元锋,张 雷,等. 心率对应运动负荷等级指标的研究[J]. 哈尔滨师范大学自然科学学报,2008,24(5):99-102.
|
[5] |
Anwar A M, Geleijnse M L, Soliman O I,et al.Left atrial frank-starling law assessed by real-time, three-dimensional echocardiographicleft atrial volume changes[J].Heart,2007,93(11): 1393-1397.
|
[6] |
Tibbits G F.Regulation of myocardial contractility in exhaustive exercise[J].Med Sci Sports Exerc,1985,17(5):529-537.
|
[7] |
Pokan R, Hofmann P, Preidler K, et al.Correlation between inflection of heart rate/work performance curve and myocardial function in exhausting cycle ergometer exercise[J].Eur J Appl Physiol Occup Physiol,1993,67(5):385-388.
|
[8] |
Molé P A, Coulson R L. Energetics of myocardial function[J]. Med Sci Sports Exerc, 1985,17(5):538-545.
|
[9] |
黄莹舒,王述莲,孙 钧,等. 运动后血清心肌肌钙蛋白水平变化规律及心肌生理与病理变化分析[J]. 医学信息,2016,29(34):263-265.
|
[10] |
张丽华,李胜亮,陈 强,等. 驻地新兵高强度体能训练前后心肌酶谱的变化[J].中西医结合心血管病杂志,2018,6(18):39-40.
|
[11] |
鲁 珊,王大宁,彭 朋,等. 大负荷运动训练致心肌损伤的机制与监测标志物研究进展[J].武警后勤学院学报, 2021, 30(5): 153-156.
|
|
|
|