首页> 外文期刊>Journal of healthcare engineering. >Morphological and Microstructural Alterations of the Articular Cartilage and Bones during Treadmill Exercises with Different Additional Weight-Bearing Levels
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Morphological and Microstructural Alterations of the Articular Cartilage and Bones during Treadmill Exercises with Different Additional Weight-Bearing Levels

机译:不同附加负重水平的跑步机运动中关节软骨和骨骼的形态和微观结构变化

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The aim of this study was to investigate the morphological and microstructural alterations of the articular cartilage and bones during treadmill exercises with different exercise intensities. Sixty 5-week-old female rats were randomly divided into 10 groups: five additional weight-bearing groups (WBx) and five additional weight-bearing with treadmill exercise groups (EBx), which were subjected to additional weight bearing of x% (x = 0, 5, 12, 19, and 26) of the corresponding body weight of each rat for 15 min/day. After 8 weeks of experiment, the rats were humanely sacrificed and their bilateral intact knee joints were harvested. Morphological analysis of the cartilages and microcomputed tomography evaluation of bones were subsequently performed. Results showed that increased additional weight bearing may lead to cartilage damage. No significant difference was observed among the subchondral cortical thicknesses of the groups. The microstructure of subchondral trabecular bone of 12% and 19% additional weight-bearing groups was significantly improved; however, the WB26 and EB26 groups showed low bone mineral density and bone volume fraction as well as high structure model index. In conclusion, effects of treadmill exercise on joints may be associated with different additional weight-bearing levels, and exercise intensities during joint growth and maturation should be selected reasonably.
机译:这项研究的目的是研究在不同运动强度的跑步机运动过程中关节软骨和骨骼的形态和微观结构变化。将60只5周大的雌性大鼠随机分为10组:五个额外的负重组(WBx)和五个额外的负重跑步机运动组(EBx),这些组分别承受x%的负重(x =每只大鼠相应体重的0、5、12、19和26),持续15分钟/天。实验8周后,人道处死大鼠,并收获其双侧完整的膝关节。随后进行了软骨的形态学分析和骨骼的微计算机断层扫描评估。结果表明,增加额外的负重可能导致软骨损伤。各组软骨下皮质厚度之间未观察到显着差异。分别增加了12%和19%的负重组的软骨下小梁骨的显微结构;然而,WB26和EB26组显示出低的骨矿物质密度和骨体积分数以及高的结构模型指数。总之,跑步机运动对关节的影响可能与不同的额外负重水平有关,并且应该合理选择关节生长和成熟期间的运动强度。

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