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Acute bone response to whole body vibration in healthy pre-pubertal boys

机译:健康的青春期前男孩对全身振动的急性骨骼反应

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摘要

The skeleton responds to mechanical stimulation. We wished to ascertain the magnitude and speed of the growing skeleton’s response to a standardised form of mechanical stimulation, vibration. 36 prepubertal boys stood for 10 minutes in total on one of two vibrating platforms (high (>2 g) or low (<1 g) magnitude vibration) on either 1, 3 or 5 successive days (n=12 for each duration); 15 control subjects stood on an inactive platform. Blood samples were taken at intervals before and after vibration to measure bone formation (P1NP, osteocalcin) and resorption (CTx) markers as well as osteoprotegerin and sclerostin. There were no significant differences between platform and control groups in bone turnover markers immediately after vibration on days 1, 3 and 5. Combining platform groups, at day 8 P1NP increased by 25.1% (CI 12.3 to 38.0; paired t-test p=0.005) and bone resorption increased by 10.9% (CI 3.6 to 18.2; paired t-test p=0.009) compared to baseline. Osteocalcin, osteoprotogerin and sclerostin did not change significantly. The growing skeleton can respond quickly to vibration of either high or low magnitude. Further work is needed to determine the utility of such “stimulation-testing” in clinical practice.
机译:骨骼对机械刺激作出反应。我们希望确定骨骼生长对标准形式的机械刺激,振动的反应的大小和速度。 36个青春期前男孩在连续1天,3天或5天(每次持续时间n = 12)中,在两个振动平台(高(> 2 g)或低(<1 g)振动)之一上总共站立10分钟; 15位控制对象站在一个不活动的平台上。在振动之前和之后的时间间隔采集血样,以测量骨形成(P1NP,骨钙蛋白)和吸收(CTx)标志物以及骨保护素和硬化蛋白。在第1、3和5天振动后,平台组和对照组之间的骨转换指标之间没有显着差异。结合平台组,第8天时P1NP增加了25.1%(CI 12.3至38.0;配对t检验,p = 0.005) ),与基线相比,骨吸收增加了10.9%(CI 3.6到18.2;配对t检验p = 0.009)。骨钙素,骨原蛋白和硬化素没有明显变化。成长中的骨骼可以快速响应高强度或低强度的振动。需要进一步的工作来确定这种“刺激测试”在临床实践中的效用。

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