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首页> 外文期刊>European journal of applied physiology >Effects of acceleration in the Gz axis on human cardiopulmonary responses to exercise.
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Effects of acceleration in the Gz axis on human cardiopulmonary responses to exercise.

机译:Gz轴上的加速度对人的运动心肺反应的影响。

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The aim of this paper was to develop a model from experimental data allowing a prediction of the cardiopulmonary responses to steady-state submaximal exercise in varying gravitational environments, with acceleration in the G(z) axis (a (g)) ranging from 0 to 3 g. To this aim, we combined data from three different experiments, carried out at Buffalo, at Stockholm and inside the Mir Station. Oxygen consumption, as expected, increased linearly with a (g). In contrast, heart rate increased non-linearly with a (g), whereas stroke volume decreased non-linearly: both were described by quadratic functions. Thus, the relationship between cardiac output and a (g) was described by a fourth power regression equation. Mean arterial pressure increased with a (g) non linearly, a relation that we interpolated again with a quadratic function. Thus, total peripheral resistance varied linearly with a (g). These data led to predict that maximal oxygen consumption would decrease drastically as a (g) is increased. Maximal oxygen consumption would become equal to resting oxygen consumption when a (g) is around 4.5 g, thus indicating the practical impossibility for humans to stay and work on the biggest Planets of the Solar System.
机译:本文的目的是根据实验数据开发一个模型,该模型可以预测在变化的重力环境下对稳态次最大运动的心肺反应,其中G(z)轴(a(g))的加速度范围为0至3克为此,我们结合了在布法罗,斯德哥尔摩和Mir站内进行的三个不同实验的数据。如预期的那样,氧气消耗以(g)线性增加。相反,心率随(g)呈非线性增长,而搏动量呈非线性下降:两者均由二次函数描述。因此,通过第四次幂回归方程描述了心输出量与(g)之间的关系。平均动脉压随(g)非线性增加,我们再次用二次函数进行插值。因此,总外围电阻随(g)线性变化。这些数据导致预测最大耗氧量将随着(g)的增加而急剧减少。当(g)约为4.5 g时,最大耗氧量将等于静置耗氧量,从而表明人类实际上不可能在最大的太阳系行星上停留和工作。

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