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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Influence of different playing surfaces on bone mass accretion in male adolescent football players: A one-season study
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Influence of different playing surfaces on bone mass accretion in male adolescent football players: A one-season study

机译:不同竞争面对雄性青少年足球运动员骨量吸收的影响:一季学习

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摘要

There are different surfaces on which football is played, but their influence on bone mass accretion still remains unknown. The aims of this study were to compare bone mass accretion between football players and controls, and evaluate the influence of two different playing surfaces on bone accretion. A total of 27 male football players (13.2 +/- 0.5 years) and 15 controls (12.6 +/- 1.1 years) participated in this study. Football players were classified into two groups according to the surface they trained on: 14 on third-generation artificial turf with elastic layer and 13 on third-generation artificial turf without elastic layer. Bone mineral content and areal bone mineral density were measured using dual-energy X-ray absorptiometry. Bone mineral apparent density variables were calculated. Bone geometry and strength of the non-dominant tibia were assessed with peripheral quantitative computed tomography. For both football players and controls, bone variables measured at subtotal body, lumbar spine, legs and tibia (p < 0.05) significantly increased. Based on the time spent practicing football, the increase in areal bone mineral density for the legs (p < 0.05) was higher in football players than controls. Moreover, lumbar spine bone mineral apparent density increased more in third-generation artificial turf without elastic layer players in comparison with third-generation artificial turf with elastic layer players (p < 0.05). Playing football on third-generation artificial turf with elastic layer and third-generation artificial turf without elastic layer seems to positively affect bone mass during growth. After playing for one season on these playing surfaces, football practice on third-generation artificial turf without elastic layer with the lower shock absorption seems to have produced the highest increment in areal bone mineral density at lumbar spine. Thus, football practice on surfaces with lower shock absorption could provide an extra benefit on bone health.
机译:播放足球有不同的表面,但它们对骨质群体的影响仍然是未知的。本研究的目的是比较足球运动员和对照之间的骨质凸起,并评估两种不同的比赛表面对骨粘度的影响。共有27名男性足球运动员(13.2 +/- 0.5岁)和15个控件(12.6 +/- 1.1年)参加了这项研究。足球运动员根据他们培训的表面分为两组:14在第三代人造草皮上,弹性层和13在没有弹性层的第三代人造草皮上。使用双能X射线吸收测量测量骨矿物质含量和区域骨密度。计算骨矿物表观密度变量。通过外围定量计算断层扫描评估非显性胫骨的骨几何形状和强度。对于足球运动员和对照,在伯体体,腰椎,腿和胫骨(P <0.05)测量的骨变量显着增加。基于练习足球的时间,足球运动员的腿部骨骨密度的增加(P <0.05)比控制更高。此外,腰椎骨矿物矿物质观密度在没有弹性层球员的第三代人造草坪上增加了第三代人造草皮更多的增加(P <0.05)。在第三代人造草皮上踢足球和没有弹性层的第三代人造草皮似乎在生长期间积极影响骨质。在这些比赛表面上玩了一个赛季后,在没有弹性层的第三代人造草皮上的足球实践似乎在腰椎上产生了最高的成分骨密度的增量。因此,减震较低的表面上的足球实践可以为骨骼健康提供额外的益处。

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