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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >High-impact exercise in rats prior to and during suspension can prevent bone loss
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High-impact exercise in rats prior to and during suspension can prevent bone loss

机译:悬吊前和悬吊过程中在大鼠中进行的高冲击运动可防止骨骼流失

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摘要

High-impact exercise has been considered an important method for treating bone loss in osteopenic experimental models. In this study, we investigated the effects of osteopenia caused by inactivity in femora and tibiae of rats subjected to jump training using the rat tail suspension model. Eight-week-old female Wistar rats were divided into five groups (n=10 each group): jump training for 2 weeks before suspension and training during 3 weeks of suspension; jump training for 2 weeks before suspension; jump training only during suspension; suspension without any training; and a control group. The exercise protocol consisted of 20 jumps/day, 5 days/week, with a jump height of 40 cm. The bone mineral density of the femora and tibiae was measured by double energy X-ray absorptiometry and the same bones were evaluated by mechanical tests. Bone microarchitecture was evaluated by scanning electron microscopy. One-way ANOVA was used to compare groups. Significance was determined as P<0.05. Regarding bone mineral density, mechanical properties and bone microarchitecture, the beneficial effects were greater in the bones of animals subjected to pre-suspension training and subsequently to training during suspension, compared with the bones of animals subjected to pre-suspension training or to training during suspension. Our results indicate that a period of high impact exercise prior to tail suspension in rats can prevent the installation of osteopenia if there is also training during the tail suspension.
机译:在骨质疏松实验模型中,高影响力运动被认为是治疗骨质流失的重要方法。在这项研究中,我们使用大鼠尾部悬架模型研究了因运动不足而导致的股骨和胫骨骨量减少对骨质减少的影响。将八周大的雌性Wistar大鼠分为五组(每组n = 10):跳跃前暂停训练2周,并在暂停3周训练;在停赛前跳训练2周;仅在暂停期间跳训练;暂停,无需任何培训;和一个对照组。锻炼方案包括每天20次跳跃,每周5天,跳跃高度40厘米。股骨和胫骨的骨矿物质密度通过双能X射线吸收法测量,相同的骨骼通过机械测试进行评估。通过扫描电子显微镜评估骨微结构。单向方差分析用于比较各组。显着性确定为P <0.05。关于骨矿物质密度,机械性能和骨微结构,与进行过悬浮前训练或在运动中进行训练的动物的骨骼相比,在进行过悬浮前训练和随后在悬浮过程中进行训练的动物的骨骼的有益效果更大。悬挂。我们的结果表明,如果在尾巴悬挂期间也进行训练,则在大鼠进行尾巴悬挂之前的一段高冲击运动可以防止骨质减少的发生。

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