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首页> 外文期刊>European journal of sport science: EJSS : official journal of the European College of Sport Science >Effects of different precooling techniques on repeat sprint ability in team sport athletes
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Effects of different precooling techniques on repeat sprint ability in team sport athletes

机译:不同预冷技术对团体运动运动员重复短跑能力的影响

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This study aimed to compare the simultaneous use of internal and external precooling methods with singular methods and their effect on repeated sprint cycling in hot/humid conditions. Twelve male team sport players completed four experimental conditions, initially involving a 30-min precooling period consisting of either a cooling jacket (J); ingestion of an ice slushy ice slushy; combination of cooling jacket and ice ingestion (J + ice slushy); or control (CONT). This was followed by 70 min of repeat sprint cycling (in~35°C, 60% relative humidity [RH]), consisting of 2 x 30-min halves, separated by a 10-min half-time period where the same cooling method was again used. Each half comprised 30 x 4 s maximal sprints on 60 s, interspersed with sub-maximal exercise at varying intensities. Total mean power and work performed were significantly higher (p = 0.02) in J + ice slushy (233.6 + 31.4 W) compared to ice slushy (211.8 + 34.5 kj), while moderate effect sizes (ES: d = 0.67) suggested lower core temperatures (T_C) in J + ice slushy (36.8 + 0.3°C) compared to J (37.0 + 0.3°C) and CONT (37.0 + 0.3°C) following precooling. A moderate ES (d = 0.57) also indicated lower T_C in J + ice slushy (38.2 + 0.3) compared to ice slushy (38.4 + 0.4°C) after half-time cooling. Change (A) in mean skin temperature over half-time cooling was significantly greater (p = 0.036) for J (1.0 + 0.4°C) compared to ice slushy (0.5 + 0.5°C), and ES (d = 0.5-1.10) also suggested a greater A for J compared to the other conditions. Sweat loss was significantly greater (p < 0.05) in ice slushy and J + ice slushy compared to J and CONT. In conclusion, a combination of (external and internal) body cooling techniques may enhance repeated sprint performance in the heat compared to individual cooling methods.
机译:这项研究的目的是比较内部和外部预冷却方法与奇异方法的同时使用及其对在炎热/潮湿条件下重复冲刺循环的影响。十二名男性团体运动运动员完成了四个实验条件,最初涉及30分钟的预冷时间,包括一个冷却套(J);摄入冰泥冷却套和冰块的摄入相结合(J +冰泥);或控制(CONT)。随后是70分钟的重复冲刺循环(在〜35°C,60%相对湿度[RH]中),由2 x 30分钟的一半组成,间隔10分钟的半个时间间隔,其中相同的冷却方法再次被使用。每半部分在60 s上包含30 x 4 s的最大冲刺,并散布着不同强度的次最大运动。与泥泞的冰(211.8 + 34.5 kj)相比,J +泥泞的冰(233.6 + 31.4 W)的总平均功率和执行的功显着更高(p = 0.02),而中等大小的效应(ES:d = 0.67)建议较低的核心预冷后,J +冰泥(36.8 + 0.3°C)的温度(T_C)与J(37.0 + 0.3°C)和CONT(37.0 + 0.3°C)的温度相比。中度ES(d = 0.57)也表明,半冷却后,J +冰泥(38.2 + 0.3)的T_C低于冰泥(38.4 + 0.4°C)。与冰泥(0.5 + 0.5°C)和ES(d = 0.5-1.10)相比,J(1.0 + 0.4°C)时半冷却时平均皮肤温度的变化(A)明显更大(p = 0.036)。 )还建议与其他条件相比,J的A更大。与J和CONT相比,冰泥和J +冰泥中的汗液流失明显更大(p <0.05)。总而言之,与单独的冷却方法相比,(外部和内部)身体冷却技术的组合可以提高热量的重复冲刺性能。

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