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缺氧和高氧对健康男性和女性静脉容量及顺应性的影响。

Effects of hypoxia and hyperoxia on venous capacity and compliance in healthy men and women.

作者信息

Fan Jui-Lin, Sayegh Ana Luiza C, Kaur Manpreet, Dawes Mathew, Paton Julian F R, Fisher James P

机构信息

Manaaki Manawa, The Centre for Heart Research, Department of Physiology, Faculty of Medical & Health Sciences, University of Auckland, Auckland, New Zealand.

Department of Medicine, University of Auckland, Auckland, New Zealand.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2022 May 1;322(5):R445-R453. doi: 10.1152/ajpregu.00319.2021. Epub 2022 Mar 23.

Abstract

Blood oxygen is an important modulator of arterial function, but its impact on peripheral venous function is incompletely understood. Herein, we sought to determine the effect of hypoxia and hyperoxia on venous capacity and compliance in the lower limb. In 16 healthy individuals (7 women; age: 28.3 ± 7.6 yr, mean ± SD), we assessed peripheral oxygen saturation ([Formula: see text]), the cross-sectional area (CSA) of the great saphenous vein (GSV; Doppler ultrasound), and calf volume (strain-gauge plethysmography) during a standard 60 mmHg thigh cuff inflation-deflation protocol. Separate trials were undertaken during breathing of room air, hypoxia [fraction in inspired oxygen ([Formula: see text]): 0.10], and hyperoxia ([Formula: see text]: 0.50), according to a single-blinded, randomized design. Lower limb pressure-CSA and pressure-volume relationships were modeled using a quadratic regression equation and compliance derived. [Formula: see text] was decreased by hypoxia (83.6 ± 5.6%) and increased by hyperoxia (98.7 ± 0.5%) compared with room air (96.4 ± 1.0%, < 0.001). Compared with room air (17.0 ± 7.9 mm), hypoxia decreased GSV CSA (13.4 ± 5.7 mm, < 0.001), whereas no change was observed with hyperoxia (17.1 ± 8.7 mm, = 0.883). GSV compliance derived from the pressure-CSA relationships was elevated approximately twofold with hyperoxia (-0.0061 ± 0.0046 a.u.) when compared with room air (-0.0029 ± 0.002 a.u., = 0.027) and hypoxia (-0.0030 ± 0.0032 a.u., = 0.007). No differences were observed in calf pressure-volume parameters with either hypoxia or hyperoxia ( > 0.05). Our data indicate that GSV capacity is reduced by hypoxia, and that GSV compliance is increased by hyperoxia, thus highlighting the often overlooked role of oxygen in the regulation of venous circulation.

摘要

血氧是动脉功能的重要调节因子,但其对周围静脉功能的影响尚未完全明确。在此,我们旨在确定低氧和高氧对下肢静脉容量和顺应性的影响。在16名健康个体(7名女性;年龄:28.3±7.6岁,均值±标准差)中,我们在标准的60 mmHg大腿袖带充气-放气方案期间,评估了外周血氧饱和度([公式:见原文])、大隐静脉(GSV;多普勒超声)的横截面积(CSA)和小腿容积(应变计体积描记法)。根据单盲、随机设计,在呼吸室内空气、低氧[吸入氧分数([公式:见原文]):0.10]和高氧([公式:见原文]:0.50)期间分别进行试验。使用二次回归方程对下肢压力-CSA和压力-容积关系进行建模并得出顺应性。与室内空气(96.4±1.0%)相比,低氧使[公式:见原文]降低(83.6±5.6%),高氧使其升高(98.7±0.5%)(<0.00)。与室内空气(17.0±7.9 mm)相比,低氧使GSV CSA减小(13.4±5.7 mm,<0.001),而高氧时未观察到变化(17.1±8.7 mm,=0.883)。与室内空气(-0.0029±0.002任意单位)和低氧(-0.0030±0.0032任意单位)相比,由压力-CSA关系得出的GSV顺应性在高氧时升高约两倍(-0.0061±0.0046任意单位)(=分别为0.027和0.007)。低氧或高氧时小腿压力-容积参数均未观察到差异(>0.05)。我们的数据表明,低氧会降低GSV容量,高氧会增加GSV顺应性,从而突出了氧在静脉循环调节中常被忽视的作用。

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