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Low-magnitude whole body vibration does not affect bone mass but does affect weight in ovariectomized rats

机译:低幅全身振动不会影响去卵巢大鼠的骨量,但会影响体重

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摘要

textabstractMechanical loading has stimulating effects on bone architecture, which can potentially be used as a therapy for osteoporosis. We investigated the skeletal changes in the tibia of ovariectomized rats during treatment with whole body vibration (WBV). Different low-magnitude WBV treatment protocols were tested in a pilot experiment using ovariectomized rats with loading schemes of 2 x 8 min/day, 5 days/ week (n = 2 rats per protocol). Bone volume and architecture were evaluated during a 10 week follow-up using in-vivo microcomputed tomography scanning. The loading protocol in which a 45 Hz sine wave was applied at 2 Hz with an acceleration of 0.5g showed an anabolic effect on bone and was therefore further analyzed in two groups of animals (n = 6 each group) with WBV starting directly after or 3 weeks after ovariectomy and compared to a control (non- WBV) group at 0, 3, 6 and 10 weeks' follow-up. In the follow-up experiment the WBV stimulus did not significantly affect trabecular volume fraction or cortical bone volume in any of the treatment groups during the 10 week follow-up. WBV did reduce weight gain that was induced as a consequence of ovariectomy. We could not demonstrate any significant effects of WBV on bone loss as a consequence of ovariectomy in rats; however, the weight gain that normally results after ovariectomy was partly prevented. Treatment with WBV was not able to prevent bone loss during induced osteoporosis.
机译:机械负荷对骨骼结构具有刺激作用,可以潜在地用作骨质疏松症的治疗方法。我们调查了全身振动(WBV)治疗期间去卵巢大鼠胫骨的骨骼变化。在不同的低强度WBV治疗方案中,使用卵巢切除大鼠以2 x 8分钟/天,5天/周的负荷方案(每方案n = 2只大鼠)在中试实验中进行了测试。使用体内微计算机断层扫描技术在10周的随访过程中评估了骨体积和结构。在2 Hz下以0.5 g的加速度施加45 Hz正弦波的加载方案显示出对骨骼的合成代谢作用,因此在两组动物(每组n = 6)中进行了进一步分析,WBV在之后或之后立即开始卵巢切除术后3周,并在随访0、3、6和10周时与对照组(非WBV)进行比较。在随访实验中,在10周的随访中,WBV刺激对任何治疗组的小梁体积分数或皮质骨体积均无明显影响。 WBV确实减少了由于卵巢切除术引起的体重增加。我们无法证明WBV对大鼠卵巢切除术造成的骨丢失有任何显着影响。然而,部分切除了卵巢切除术后通常导致的体重增加。 WBV治疗不能预防骨质疏松症期间的骨质流失。

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