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低强度、中等强度和次最大持续等长收缩过程中背屈肌的氧合作用

Dorsiflexor Muscle Oxygenation During Low, Moderate and Submaximal Sustained Isometric Contraction.

作者信息

Paiziev Adkham, Wolf Martin, Kerimov Fikrat

机构信息

Uzbekistan State Institute of Physical Culture (USIPC), Tashkent, Uzbekistan.

Biomedical Optics Research Laboratory (BORL), University of Zurich, Zurich, Switzerland.

出版信息

Adv Exp Med Biol. 2017;977:21-26. doi: 10.1007/978-3-319-55231-6_4.

Abstract

Sustained isometric contractions of skeletal muscles produce intramuscular pressures that lead to blood flow restriction. Thus, we have the paradox of rising O demand due to muscle activity and at the same time reduced blood flow. The aim was to assess muscle oxygenation during sustained isometric low (30%), moderate (60%) and submaximal [90% of maximal voluntary contraction (MVC)] contraction of the dorsiflexor muscle. Experiments were conducted on the dominant (right) leg of 8 male students (age 19 ± 2 years, weight 75 ± 6 kg). Tissue oxygen saturation (StO) was recorded from the tibialis anterior using near-infrared spectroscopy. StO was higher at 30% compared to both 60% and 90% MVC at all time points after the start of the exercise and higher at 60% than 90%. This indicates that the supply of O did not keep up with its consumption. During arterial occlusion the minimal StO reached 52%, which is significantly higher than StO during 60% and 90% MVC. After each contraction there was a large and immediate hyperemic response, whose resaturation rate continuously increased from 30% to 60% to 90% MVC. The StO resaturation rate was positively correlated with the MVC, indicating a vasodilation depending on the intensity of the exercise.

摘要

骨骼肌的持续等长收缩会产生肌内压力,导致血流受限。因此,我们面临着这样一个矛盾:肌肉活动导致需氧量增加,同时血流量却减少。目的是评估在背屈肌持续进行低强度(30%)、中等强度(60%)和次最大强度[最大自主收缩(MVC)的90%]收缩时的肌肉氧合情况。对8名男性学生(年龄19±2岁,体重75±6千克)的优势(右)腿进行了实验。使用近红外光谱法记录胫骨前肌的组织氧饱和度(StO)。运动开始后的所有时间点,30%MVC时的StO均高于60%和90%MVC时的,且60%时的高于90%时的。这表明氧气供应跟不上其消耗。在动脉闭塞期间,最低StO达到52%,这显著高于60%和90%MVC时的StO。每次收缩后都有一个大的且即时的充血反应,其再饱和率从30%MVC到60%MVC再到90%MVC持续增加。StO再饱和率与MVC呈正相关,表明血管舒张取决于运动强度。

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