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无线生物反馈设备在军事人群中分析力量表现。

Inalambric Biofeedback Devices to Analyze Strength Manifestation in Military Population.

机构信息

Center for Higher Studies in Applied Combat, Toledo, Spain.

PAFS Research Group, Faculty of Sports Sciences, University of Castilla-La Mancha, Toledo, Spain.

出版信息

J Med Syst. 2018 Feb 20;42(4):60. doi: 10.1007/s10916-018-0914-9.

Abstract

The study of the effect of stress on both combatants physiological and anatomical systems have been poor studied in the specific literature. The present research aimed to study the effect of combat stress in strength manifestations of leg flexor-extensor muscles and the anaerobic metabolism of soldiers. Before and after asymmetrical combat simulation were analyzed parameters of blood lactate concentration, explosive leg strength manifestation and contractile capacity of leg muscle in 186 professional soldiers. Results showed a significant increase (p < 0.05) in blood lactate values (2.23 ± 0.95 vs 7.47 ± 3.67 mmol/L), explosive leg strength (Squat Jump 0.31 ± 0.06 vs 0.35 ± 0.07 m, Countermovement Jump 0.33 ± 0.07 vs 0.36 ± 0.07 m, Abalakov Jump 0.39 ± 0.08 vs 0.41 ± 0.09 m), and a significant decrease of the elastic capacity (0.022 ± 0.04 vs 0.021 ± 0.04) and recruitment and muscle synchronization capability (0.028 ± 0.04 vs 0.026 ± 0.04). This data suggest that combat stress increases the leg strength manifestation despite the significantly increase of muscle acidosis after a combat simulation. This result is probably due to the high activation of the fight-flight system of soldiers which increases the organic response of soldiers and that can compensate the prejudicial effect of acidosis in muscle contraction. These results could be used by officers to improve specific training programs and to improve planning and election of equipment and material for the development of different missions in current theaters of operations.

摘要

关于战斗应激对战员生理和解剖系统影响的研究在特定文献中研究得很少。本研究旨在研究战斗应激对士兵腿部屈伸肌力量表现和无氧代谢的影响。在不对称战斗模拟前后,分析了 186 名专业士兵的血乳酸浓度、腿部爆发力表现和腿部肌肉收缩能力的参数。结果显示,血乳酸值(2.23±0.95 与 7.47±3.67 mmol/L)、腿部爆发力(深蹲跳 0.31±0.06 与 0.35±0.07 m、反跳跳 0.33±0.07 与 0.36±0.07 m、阿巴洛夫跳 0.39±0.08 与 0.41±0.09 m)显著增加(p<0.05),弹性能力(0.022±0.04 与 0.021±0.04)和募集及肌肉同步能力(0.028±0.04 与 0.026±0.04)显著降低。这些数据表明,尽管在战斗模拟后肌肉酸中毒显著增加,但战斗应激仍会增加腿部力量表现。这一结果可能是由于士兵的战斗-逃跑系统高度激活,增加了士兵的有机反应,从而可以补偿肌肉收缩中酸中毒的不利影响。这些结果可被军官用于改进特定训练计划,并改进当前作战地区不同任务的装备和材料的规划和选择。

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