首页> 外文期刊>The Journal of Musculoskeletal and Neuronal Interactions >Bone and muscle structure and quality preserved by active versus passive muscle exercise on a new stepper device in 21 days tail-suspended rats
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Bone and muscle structure and quality preserved by active versus passive muscle exercise on a new stepper device in 21 days tail-suspended rats

机译:在21天的尾巴悬吊大鼠中,通过新型步进设备主动与被动进行肌肉锻炼可保持骨骼和肌肉结构及质量

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Human performance in microgravity is characterized by reversed skeletal muscle actions in terms of active vs. passive mode contractions of agonist/antagonist groups that may challenge principal biodynamics (biomechanical forces translated from muscle to bone) of the skeletal muscle-bone unit. We investigated active vs. passive muscle motions of the unloaded hindlimb skeletal muscle-bone unit in the 21 days tail-suspended (TS) rat using a newly designed stepper exercise device. The regimen included both active mode motions (TSA) and passive mode motions (TSP). A TS-only group and a normal cage group (CON) served as positive or negative controls. The muscle and bone decrements observed in TS-only group were not seen in the other groups except TSP. Active mode motions supported femur and tibia bone quality (5% BMD, 10% microtrabecular BV/TV, Tb.Th., Tb.N. parameters), whole soleus muscle/myofiber size and type II distribution, 20% increased sarcolemma NOS1 immunosignals vs. CON, with 25% more hybrid fiber formation (remodeling sign) for all TS groups. We propose a new custom-made stepper device to be used in the TS rat model that allows for detailed investigations of the unique biodynamic properties of the muscle-bone unit during resistive-load exercise countermeasure trials on the ground or in microgravity.
机译:人类在微重力​​下的表现以激动剂/拮抗剂组的主动模式与被动模式收缩相反,反映了骨骼肌的动作,这可能挑战骨骼肌骨单元的主要生物力学(从生物体到骨骼的生物力学力)。我们使用新设计的步进运动装置研究了21天尾部悬吊(TS)大鼠中未加载的后肢骨骼肌骨单位的主动和被动肌肉运动。该方案包括主动模式运动(TSA)和被动模式运动(TSP)。仅TS组和正常笼组(CON)用作阳性或阴性对照。仅TS组观察到的肌肉和骨骼减少,除TSP外其他组均未见。主动模式运动可支持股骨和胫骨的骨质量(5%BMD,10%小梁BV / TV,Tb.Th.,Tb.N。参数),比目鱼肌/肌纤维全尺寸和II型分布,肌膜NOS1免疫信号增加20%与CON相比,所有TS组的混合纤维形成(重塑符号)增加了25%。我们建议在TS大鼠模型中使用一种新的定制步进设备,该设备可以在地面或微重力下的抵抗负荷运动对策试验期间详细研究肌肉骨骼单元的独特生物动力特性。

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