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首页> 外文期刊>Respiratory physiology & neurobiology >Relationship between individual ventilatory response and acute renal water excretion at high altitude.
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Relationship between individual ventilatory response and acute renal water excretion at high altitude.

机译:高原地区个人通气反应与急性肾水排泄的关系。

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摘要

We tested the hypothesis that the individual ventilatory adaptation to high altitude (HA, 5050 m) may influence renal water excretion in response to water loading. In 8 healthy humans (33+/-4 S.D. years) we studied, at sea level (SL) and at HA, resting ventilation (VE), arterial oxygen saturation (SpO2), urinary output after water loading (WL, 20 mL/kg), and total body water (TBW). Ventilatory response to HA was defined as the difference in resting VE over SpO2 (DeltaVE/DeltaSpO2) from SL to HA. At HA, a significant increase in urinary volume after the first hour from WL (%WLt0-60) was observed. Significant correlations were found between DeltaVE/DeltaSpO2 versus %WLt0-60 at HA and versus changes in TBW, from SL to HA. In conclusion, in healthy subjects the ventilatory response to HA influences water balance and correlates with kidney response to WL. A higher ventilatory response at HA, allowing a more efficient water renal handling, is likely to be a protective mechanisms from altitude illness.
机译:我们检验了以下假设:个体对高海拔(HA,5050 m)的通气适应可能会响应于水负荷而影响肾脏排泄水分。在8位健康的人类(33 +/- 4 SD年)中,我们研究了海平面(SL)和HA,静息通气(VE),动脉血氧饱和度(SpO2),加水后的尿量(WL,20 mL /公斤)和全身水(TBW)。对HA的通气反应定义为从SL到HA的静息VE超过SpO2的VE(DeltaVE / DeltaSpO2)。在HA处,第一个小时后从WL观察到尿量显着增加(%WLt0-60)。发现在HA处DeltaVE / DeltaSpO2与%WLt0-60之间的显着相关性,以及从SL到HA的TBW变化之间的显着相关性。总之,在健康受试者中,对HA的通气反应影响水平衡,并与对WL的肾脏反应相关。 HA较高的通气反应,允许更有效的水肾处理,可能是高原反应的保护机制。

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