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首页> 外文期刊>Translational Engineering in Health and Medicine, IEEE Journal of >A High-Intensity Exercise Intervention Improves Older Women Lumbar Spine and Distal Tibia Bone Microstructure and Function: A 20-Week Randomized Controlled Trial
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A High-Intensity Exercise Intervention Improves Older Women Lumbar Spine and Distal Tibia Bone Microstructure and Function: A 20-Week Randomized Controlled Trial

机译:高强度运动干预改善较老的女性腰椎和远端胫骨骨微观结构和功能:20周随机对照试验

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Introduction: The effects of ageing on bone can be mitigated with different types of physical training, such as power training. However, stimuli that combine increasing external and internal loads concomitantly may improve bone quality. The goal of this study was to assess the efficacy of a combined power and plyometric training on lumbar spine and distal tibia microstructure and function. Methods: 38 sedentary elderly women between 60 and 70 years were randomly allocated in experimental (N = 21) and control group (N = 17). The effects of the 20-week protocol on lumbar spine microstructure and tibia microstructure and function were assessed by trabecular bone score (TBS), high resolution peripheral quantitative computed tomography (HR-pQCT) and microfinite element analysis. Results: when compared to the effects found in the control group, the experimental group showed significant improvements in lumbar spine TBS (Hedges' g = 0.77); and in distal tibia trabecular thickness (g = 0.82) and trabecular bone mineral density (g = 0.63). Conclusion: our findings underscore the effectiveness of the proposed intervention, suggesting it as a new strategy to slow down and even reverse the structural and functional losses in the skeletal system due to ageing.
机译:简介:可以减轻衰老的效果可以用不同类型的体育训练,例如电力训练。然而,将外部和内部载荷增加的刺激同时可以提高骨质质量。本研究的目标是评估组合权力和纤维术训练对腰椎和远端胫骨微观结构和功能的功效。方法:在实验(n = 21)和对照组(n = 17)中随机分配38例久坐体年长妇女60至70岁。通过小梁骨评分(TBS),高分辨率外周定量计算断层扫描(HR-PQCT)和微纤维素元素分析评估20周对腰椎微观结构和胫骨微观结构和功能的影响。结果:与对照组中发现的效果相比,实验组显示出腰椎TBS的显着改善(Hedges'g = 0.77);在远端胫骨躯干厚度(g = 0.82)和小梁骨密度(g = 0.63)。结论:我们的研究结果强调了拟议的干预的有效性,这表明它作为减缓甚至逆转骨骼系统中的结构和功能损失的新策略。

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