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Cardiovascular responses to simulated microgravity in Sprague-Dawley rats.

机译:Sprague-Dawley大鼠对模拟微重力的心血管反应。

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Microgravity is known to induce orthostatic intolerance and baroreflex impairment in astronauts. Cardiovascular responses observed in 30 degrees head-down tilt rat models, whether 24 hr whole body suspension (WBS) or 7 day tail-suspension (TS), mimic observations made during exposure to microgravity. We evaluated the cardiovascular effects of simulated microgravity and the subsequent post-suspension in rats using the above models. Mean arterial pressure (MAP) of both WBS and TS rats did not change during suspension. In both models, MAP decreased post-suspension and this response lasted for 6 hrs. Salt-loaded animals did not show a post-suspension reduction in MAP. Plasma ionized calcium was decreased at 2 hr of WBS, with no change in sodium, potassium, magnesium, glucose, or hematocrit. Body weight changes were similar for all animals whether under suspension or control conditions. Both rat models demonstrate post-suspension hypotension and these results support the notion that salt-loading may have some beneficial effects in ameliorating this hypotension.
机译:已知微重力会导致宇航员体位不耐受和压力反射反射受损。在30度从头向下倾斜的大鼠模型中观察到的心血管反应,无论是24小时全身悬吊(WBS)还是7天尾部悬吊(TS),都是在微重力作用下进行的模拟观察。我们使用上述模型评估了模拟微重力和随后的悬浮后对大鼠的心血管作用。在悬吊过程中,WBS和TS大鼠的平均动脉压(MAP)均未改变。在两个模型中,MAP均降低了悬浮后的效果,并且该反应持续了6个小时。食盐动物没有显示出MAP的悬浮后减少。血浆离子钙在WBS 2小时时降低,钠,钾,镁,葡萄糖或血细胞比容无变化。所有动物的体重变化在悬浮或对照条件下均相似。两种大鼠模型均显示了悬浮后低血压,这些结果支持这样的观点,即盐负荷对缓解这种低血压可能具有某些有益作用。

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