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Effects of vibration treatment on tibial bone of ovariectomized rats analyzed by in vivo micro-CT.

机译:体内显微CT分析振动处理对去卵巢大鼠胫骨的影响。

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Daily low-amplitude, high-frequency whole-body vibration (WBV) treatment can increase bone formation rates and bone volume in rodents. Its effects vary, however, with vibration characteristics and study design, and effects on 3D bone microstructure of ovariectomized animals over time have not been documented. Our goal was to determine the effects of WBV on tibial bone of ovariectomized, mature rats over time using an in vivo micro-CT scanner. Adult rats were divided into: ovariectomy (OVX) (n = 8), SHAM-OVX (n = 8), OVX and WBV treatment (n = 7). Eight weeks after OVX, rats in the vibration group were placed on a vibrating platform for 20 min at 0.3 g and 90 Hertz. This was done 5 days a week for six weeks, twice a day. Zero, 8, 10, 12 and 14 weeks after OVX, in vivo micro-CT scans were made (vivaCT 40, Scanco Medical AG) of the proximal and diaphyseal tibia. After sacrifice, all tibiae were dissected and tested in three-point bending. In the metaphysis between 8 to 12 weeks after OVX, WBV treatment did not alter structural parameters compared to the OVX group and both groups continued to show deterioration of bone structure. In the epiphysis, structural parameters were not altered. WBV also did not affect cortical bone and its bending properties. To summarize, no substantial effects of 6 weeks of low-magnitude, high-frequency vibration treatment on tibial bone microstructure and strength in ovariectomized rats were found.
机译:每日低振幅,高频全身振动(WBV)处理可以提高啮齿动物的骨形成率和骨量。但是,其效果随振动特性和研究设计的不同而变化,并且尚未记录对卵巢切除动物的3D骨骼微观结构随时间的影响。我们的目标是使用体内micro-CT扫描仪确定WBV对卵巢切除的成熟大鼠胫骨的影响。成年大鼠分为:卵巢切除术(OVX)(n = 8),SHAM-OVX(n = 8),OVX和WBV治疗(n = 7)。 OVX八周后,将振动组中的大鼠置于0.3 g和90赫兹的振动平台上20分钟。一周两次,每天两次,每天进行5天。 OVX后第0、8、10、12和14周,对胫骨近端和胫骨进行体内micro-CT扫描(vivaCT 40,Scanco Medical AG)。处死后,解剖所有胫骨并进行三点弯曲测试。在OVX后8至12周之间的干physi端,与OVX组相比,WBV治疗并未改变结构参数,并且两组继续显示出骨结构的恶化。在骨epi中,结构参数没有改变。 WBV也不影响皮质骨及其弯曲特性。综上所述,在去卵巢的大鼠中,低剂量高频振动治疗6周对胫骨的显微结构和强度没有实质性影响。

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