首页> 外文期刊>The Journal of Experimental Biology >Fluid shift versus body size: changes of hematological parameters and body fluid volume in hindlimb-unloaded mice, rats and rabbits
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Fluid shift versus body size: changes of hematological parameters and body fluid volume in hindlimb-unloaded mice, rats and rabbits

机译:流体换档与体尺寸:后肢卸载小鼠,大鼠和兔子的血液学参数和体液体积的变化

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摘要

The cardiovascular system is adapted to gravity, and reactions to the loss of gravity in space are presumably dependent on body size. The dependence of hematological parameters and body fluid volume on simulated microgravity have never been studied as an allometric function before. Thus, we estimated red blood cell (RBC), blood and extracellular fluid volume in hindlimb-unloaded (HLU) or control (attached) mice, rats and rabbits. RBC decrease was found to be size independent, and the allometric dependency for RBC loss in HLU and control animals shared a common power (-0.054 +/- 0.008) but a different Y-0 coefficient (8.66 +/- 0.40 and 10.73 +/- 0.49, respectively, P&0.05). Blood volume in HLU animals was unchanged compared with that of controls, disregarding body size. The allometric dependency of interstitial fluid volume in HLU and control mice shared Y-0 (1.02 +/- 0.09) but had different powers N (0.708 +/- 0.017 and 0.648 +/- 0.016, respectively, P&0.05), indicating that the interstitial fluid volume increase during hindlimb unloading is more pronounced in larger animals. Our data underscore the importance of size-independent mechanisms of cardiovascular adaptation to weightlessness. Despite the fact that the use of mice hampers application of a straightforward translational approach, this species is useful for gravitational biology as a tool to investigate size-independent mechanisms of mammalian adaptation to microgravity.
机译:心血管系统适应重力,并且对空间中重力损失的反应可能取决于体尺寸。血液学参数和体液体积对模拟的微再生的依赖性从未被研究过以前的同传功能。因此,我们估计了在后肢卸载(HLU)或对照(附着)小鼠,大鼠和兔子中的红细胞(RBC),血液和细胞外液体体积。发现RBC减少是独立的尺寸,恒生和对照动物的RBC损失的同传依赖性共享公共功率(-0.054 +/- 0.008),但不同的Y-0系数(8.66 +/- 0.40和10.73 + / - 0.49,分别,p& 0.05)。与对照组相比,HLU动物中的血容量保持不变,无视体型。间质液体体积在恒生和对照小鼠共享Y-0(1.02 +/- 0.09)但具有不同的功率n(0.708 +/- 0.017和0.648 +/- 0.016,P& 0.05),表明在较大的动物中,在后肢卸载期间的间质液体积增加更加明显。我们的数据强调了独立于无规主的心血管适应机制对失重的重要性。尽管使用鼠标篮板的使用简单的翻译方法,但这种物种对于引力生物学是一种研究哺乳动物适应微脑的典型机制的工具。

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