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ANABOLIC FLUID FLOW AS DEPENDENT ON IT DOSE AND FREQUENCY IN BONE FORMATION AND INHIBITION OF BONE LOSS

机译:取决于骨形成和频率和骨损失抑制的剂量和频率的代谢流

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摘要

Anabolic response of bone to interstitial fluid flow is strongly dependent on the dynamic components of the fluid pressure, implying that fluid flow is a critical regulatory component to bone mass and morphology. While the fluid stimulus can be potentially applied for therapeutic in promoting turnover, the hypothesis of fluid induced bone adaptation was evaluated in an avian ulna model using varied flow rates and magnitudes. Total of 12 one-year old male avian animals was used in this study. A sinusoidal fluid pressure was applied to the experimental ulna 10 min/day for 4 weeks. Three experimental groups of loading were performed at 1 and 30 Hz of fluid loading. The results reveal an increase of 22.7%±7.2 in trabecular volume for group of 30 Hz, 76mmHg loading, while it had only 0.5 % increase at 1Hz, 76 mmHg loading. Under physiologic fluid pressure, a higher flow rate of stimuli generates much higher remodeling response than a lower rate of loading. This implies that bone turnover may be sensitive to the dynamic components of fluid flow, thereby initiating the adaptive response.
机译:骨对间质液流动的合成代谢响应在很大程度上取决于液压的动态分量,这意味着液流是对骨量和形态的关键调节分量。尽管液体刺激可以潜在地用于促进周转的治疗中,但在禽尺骨模型中使用不同的流速和大小评估了液体诱导的骨适应的假说。这项研究总共使用了12只一岁的雄性禽类动物。将正弦流体压力以10分钟/天的速度施加到实验尺骨上,持续4周。在1和30 Hz的流体载荷下进行了三个实验载荷组。结果显示,在30 Hz,76 mmHg负荷下,小梁体积增加了22.7%±7.2,而在1Hz,76 mmHg负荷下,其小梁体积仅增加了0.5%。在生理流体压力下,较高的刺激流速比较低的负荷流速产生更高的重塑反应。这意味着骨骼更新可能对流体流动的动态成分敏感,从而启动了自适应反应。

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