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首页> 外文期刊>Journal of orthopaedic research >Skeletal muscle contractions uncoupled from gravitational loading directly increase cortical bone blood flow rates in vivo.
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Skeletal muscle contractions uncoupled from gravitational loading directly increase cortical bone blood flow rates in vivo.

机译:与重力负荷无关的骨骼肌收缩直接增加了体内皮质骨的血液流速。

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摘要

The direct and indirect effects of muscle contraction on bone microcirculation and fluid flow are neither well documented nor explained. However, skeletal muscle contractions may affect the acquisition and maintenance of bone via stimulation of bone circulatory and interstitial fluid flow parameters. The purposes of this study were to assess the effects of transcutaneous electrical neuromuscular stimulation (TENS)-induced muscle contractions on cortical bone blood flow and bone mineral content, and to demonstrate that alterations in blood flow could occur independently of mechanical loading and systemic circulatory mechanisms. Bone chamber implants were used in a rabbit model to observe real-time blood flow rates and TENS-induced muscle contractions. Video recording of fluorescent microspheres injected into the blood circulation was used to calculate changes in cortical blood flow rates. TENS-induced repetitive muscle contractions uncoupled from mechanical loading instantaneously increased cortical microcirculatory flow, directly increased bone blood flow rates by 130%, and significantly increased bone mineral content over 7 weeks. Heart rates and blood pressure did not significantly increase due to TENS treatment. Our findings suggest that muscle contraction therapies have potential clinical applications for improving blood flow to cortical bone in the appendicular skeleton.
机译:肌肉收缩对骨微循环和液体流动的直接和间接影响既没有得到很好的记录,也没有得到解释。但是,骨骼肌收缩可能会通过刺激骨骼循环和间质液流动参数来影响骨骼的获取和维持。这项研究的目的是评估经皮神经电肌肉刺激(TENS)引起的肌肉收缩对皮质骨血流和骨矿物质含量的影响,并证明血流的改变可独立于机械负荷和全身循环机制而发生。在兔子模型中使用骨腔植入物来观察实时血流量和TENS诱导的肌肉收缩。荧光微球注入血液循环的视频记录用于计算皮层血流量的变化。 TENS引起的重复性肌肉收缩与机械负荷无关,可立即增加皮质微循环流量,直接使骨血流量增加130%,并在7周内显着增加骨矿物质含量。由于TENS治疗,心率和血压没有明显增加。我们的发现表明,肌肉收缩疗法具有潜在的临床应用,可改善阑尾骨骼中皮质骨的血流。

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