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Treadmill running and targeted tibial loading differentially improve bone mass in mice

机译:跑步机运行和有针对性的胫骨负荷差异性地改善了小鼠的骨量

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摘要

Treadmill running and tibial loading are two common modalities used to assess the role of mechanical stimulation on the skeleton preclinically. The primary advantage of treadmill running is its physiological relevance. However, the applied load is complex and multiaxial, with observed results influenced by cardiovascular and musculoskeletal effects. In contrast, with tibial loading, a direct uniaxial load is applied to a single bone, providing the advantage of greater control but with less physiological relevance. Despite the importance and wide-spread use of both modalities, direct comparisons are lacking. In this study, we compared effects of targeted tibial loading, treadmill running, and their combination on cancellous and cortical architecture in a murine model. We show that tibial loading and treadmill running differentially improve bone mass, with tibial loading resulting in thicker trabeculae and increased cortical mass, and exercise resulting in greater number of trabeculae and no cortical mass-based effects. Combination of the modalities resulted in an additive response. These data suggest that tibial loading and exercise may improve mass differentially.
机译:跑步机运行和胫骨负重是两种常见的方式,用于在临床前评估机械刺激对骨骼的作用。跑步机的主要优势在于其生理意义。但是,所施加的载荷是复杂的且是多轴的,观察到的结果受心血管和肌肉骨骼效应的影响。相反,在胫骨载荷下,直接单轴载荷被施加到单个骨骼上,提供了更好的控制但生理相关性较小的优点。尽管这两种模式都很重要且得到广泛使用,但仍缺乏直接的比较。在这项研究中,我们在小鼠模型中比较了目标胫骨负荷,跑步机运行及其组合对松质和皮质结构的影响。我们表明,胫骨负荷和跑步机的运行有差异地改善了骨质,胫骨负荷导致小梁变厚和皮质质量增加,而运动导致小梁数目增加且没有基于皮质质量的作用。模态的组合导致加性响应。这些数据表明,胫骨负重和运动可能会差异性改善质量。

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