首页> 外文期刊>BioMedical Engineering OnLine >Multiscale experimental study on the effects of different weight-bearing levels during moderate treadmill exercise on bone quality in growing female rats
【24h】

Multiscale experimental study on the effects of different weight-bearing levels during moderate treadmill exercise on bone quality in growing female rats

机译:中度跑步机运动期间不同负重水平对成年雌性大鼠骨质量影响的多尺度实验研究

获取原文
       

摘要

Bone tissue displays a hierarchical organization. Mechanical environments influence bone mass and structure. This study aimed to explore the effects of different mechanical stimuli on growing bone properties at macro–micro–nano scales. Sixty?five-week-old female Wistar rats were treadmill exercised at moderate intensity with the speed of 12?m/min, and then randomly divided into five groups according to weight-bearing level. After 8?weeks of experiment, femurs were harvested to perform multiscale tests. Bone formation was significantly increased by weight-bearing exercise, whereas bone resorption was not significantly inhibited. Trabecular and cortical bone mineral densities showed no significant increase by weight-bearing exercise. The microstructure of trabecular bone was significantly improved by 12% weight-bearing exercise. However, similar positive effects were not observed with further increase in weight-bearing levels. The nanomechanical properties of trabecular bone were not significantly changed by weight-bearing exercise. The macrostrength of whole femur and the nanomechanical properties of cortical bone significantly decreased in the 19% and 26% weight-bearing exercise groups. When rats ran on the treadmill at moderate intensity during growth period, additional 12% weight-bearing level could significantly increase bone formation, improve microstructure of trabecular bone, as well as maintain the structure and mechanical properties of cortical bone. Excessive weight-bearing level caused no positive effects on the trabecular bone microstructure and properties of cortical bone at all scales. In addition, increased weight-bearing level exerted no significant influence on trabecular and cortical bone mineral densities.
机译:骨组织显示出层次结构。机械环境会影响骨骼质量和结构。这项研究旨在探讨不同的机械刺激对宏观-微观-纳米尺度上生长的骨骼特性的影响。将65周龄的雌性Wistar大鼠在跑步机上以12?m / min的速度进行中等强度的运动,然后根据体重水平随机分为五组。实验8周后,收集股骨进行多尺度测试。负重运动显着增加了骨形成,而骨吸收没有受到明显抑制。负重运动不会使小梁和皮质骨的矿物质密度显着增加。 12%的负重运动可显着改善小梁骨的微观结构。然而,随着体重水平的进一步提高,未观察到类似的积极影响。负重运动不会使小梁骨的纳米力学性能发生显着变化。在19%和26%的负重运动组中,整个股骨的宏观强度和皮质骨的纳米力学性能显着下降。当大鼠在生长期间以中等强度在跑步机上跑步时,额外的12%负重水平可以显着增加骨骼形成,改善小梁骨的微观结构,并保持皮质骨的结构和机械性能。过多的负重水平对所有尺度的小梁骨微结构和皮质骨特性均无积极影响。此外,增加负重水平对小梁和皮质骨矿物质密度没有显着影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号