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非运动手臂的深浅静脉血管顺应性不受短期运动的影响。

Compliance in the deep and superficial conduit veins of the nonexercising arm is unaffected by short-term exercise.

作者信息

Oue Anna, Sadamoto Tomoko

机构信息

Faculty of Food and Nutritional Sciences, Toyo University, Gunma, Japan.

Research Institute of Physical Fitness, Japan Women's College of Physical Education, Tokyo, Japan.

出版信息

Physiol Rep. 2018 Jun;6(11):e13724. doi: 10.14814/phy2.13724.

Abstract

The effects of short-term dynamic and static exercise on compliance (CPL) in a single conduit vein in the nonexercising limb are not fully understood, although prolonged cycling exercise was found to produce a significant reduction of CPL in the veins. In this study, we investigated the cross-sectional area (CSA) and CPL in the brachial (deep) and basilic (superficial) veins of the nonexercising arm in 14 participants who performed a 5-min cycling exercise at 35% and 70% of peak oxygen uptake (study 1) and in 11 participants who performed a 2-min static handgrip exercise at 30% of maximal voluntary contraction (study 2). The CSA in the deep and superficial veins at rest and during the final minute of exercise was measured by high-resolution ultrasonography during a short-duration cuff deflation protocol. The CPL in each vein was calculated as the numerical derivative of the cuff pressure and CSA curve. During short-term dynamic and static exercise, there was no change in CPL in either vein, but there was a decrease in CSA in both veins. The simultaneous findings of unchanged CPL and decreased CSA suggest that CPL during short-term exercise are independently controlled by the mechanisms responsible for exercise-induced sympathoexcitation in both single veins. Thus, short-term exercise does not alter CPL in both conduit superficial and deep veins in nonexercising upper arm.

摘要

尽管有研究发现长时间骑自行车运动会使静脉顺应性(CPL)显著降低,但非运动肢体单根导管静脉的短期动态和静态运动对其CPL的影响尚未完全明确。在本研究中,我们对14名参与者进行了研究,这些参与者在达到峰值摄氧量的35%和70%的情况下进行了5分钟的骑自行车运动(研究1),同时还对11名参与者进行了研究,他们在最大自主收缩的30%的情况下进行了2分钟的静态握力运动(研究2),测量了非运动手臂的肱(深)静脉和贵要(浅)静脉的横截面积(CSA)和CPL。在短时间袖带放气过程中,通过高分辨率超声测量静息时和运动最后一分钟时深静脉和浅静脉的CSA。每条静脉的CPL通过袖带压力和CSA曲线的数值导数计算得出。在短期动态和静态运动期间,两条静脉的CPL均无变化,但两条静脉的CSA均降低。CPL不变和CSA降低的同时出现表明,短期运动期间的CPL由负责单根静脉运动诱发交感神经兴奋的机制独立控制。因此,短期运动不会改变非运动上臂的浅静脉和深静脉导管的CPL。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b36e/5986706/ac3a01be7ba3/PHY2-6-e13724-g001.jpg

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