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首页> 外文期刊>Aviation, space, and environmental medicine. >Cardiovascular models of simulated moon and mars gravities: Head-Up tilt vs. lower body unweighting
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Cardiovascular models of simulated moon and mars gravities: Head-Up tilt vs. lower body unweighting

机译:模拟月球和火星重力的心血管模型:头朝上倾斜与下半身失重

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摘要

In this study we compare two models [head-up tilt (HUT) vs. body unweighting using lower body positive pressure (LBPP)] to simulate Moon, Mars, and Earth gravities. A literature search did not reveal any comparisons of this type performed previously. We hypothesized that segmental fl uid volume shifts (thorax, abdomen, upper and lower leg), cardiac output, and blood pressure (BP), heart rate (HR), and total peripheral resistance to standing would be similar in the LBPP and HUT models. Methods: There were 21 subjects who were studied while supine (simulation of spacefl ight) and standing at 100% (Earth), 40% (Mars), and 20% (Moon) bodyweight produced by LBPP in Alter-G and while supine and tilted at 80°, 20°, and 10° HUT (analogues of Earth, Mars, and Moon gravities, respectively). Results: Compared to supine, fl uid shifts from the chest to the abdomen, increases in HR, and decreases in stroke volume were greater at 100% bodyweight than at reduced weights in response to both LBPP and HUT. Differences between the two models were found for systolic BP, diastolic BP, mean arterial BP, stroke volume, total peripheral resistance, and thorax and abdomen impedances, while HR, cardiac output, and upper and lower leg impedances were similar. Conclusions: Bodyweight unloading via both LBPP and HUT resulted in cardiovascular changes similar to those anticipated in actual reduced gravity environments. The LBPP model/Alter-G has the advantage of providing an environment that allows dynamic activity at reduced bodyweight; however, the signifi cant increase in blood pressures in the Alter-G may favor the HUT model.
机译:在这项研究中,我们比较了两个模型[抬头倾斜(HUT)与使用下半身正压力(LBPP)进行的身体失重],以模拟月球,火星和地球重力。文献搜索没有发现以前进行过的这种类型的比较。我们假设在LBPP和HUT模型中,节段性流体的体积变化(胸部,腹部,大腿和小腿),心输出量和血压(BP),心率(HR)以及周围总的站立阻力将相似。方法:有21名受试者在Alter-G以及仰卧和俯卧期间,仰卧(模拟太空力量)并由LBPP产生的体重分别为100%(地球),40%(火星)和20%(月球)时进行了研究。倾斜到80°,20°和10°HUT(分别是地球,火星和月球重力的类似物)。结果:与仰卧相比,对LBPP和HUT的反应,体重100%时,流体从胸部向腹部转移,心率增加和中风量减少比体重减轻时更大。发现两种模型之间的差异在于收缩压,舒张压,平均动脉压,中风量,总外周阻力以及胸腹部阻抗,而心率,心输出量以及大腿和小腿阻抗相似。结论:通过LBPP和HUT进行的体重减轻导致心血管变化,与实际在重力降低的环境中预期的变化相似。 LBPP模型/ Alter-G的优势在于提供了一种环境,可以在减轻体重的情况下进行动态活动。但是,Alter-G中血压的显着升高可能有利于HUT模型。

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