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一种通过近红外光谱法评估正常人体运动肌肉中血流和代谢异质性的方法。

A method for assessing heterogeneity of blood flow and metabolism in exercising normal human muscle by near-infrared spectroscopy.

作者信息

Vogiatzis Ioannis, Habazettl Helmut, Louvaris Zafeiris, Andrianopoulos Vasileios, Wagner Harrieth, Zakynthinos Spyros, Wagner Peter D

机构信息

Faculty of Physical Education and Sport Sciences, National and Kapodistrian University of Athens, Athens, Greece; Department of Critical Care Medicine and Pulmonary Services, Evangelismos Hospital, "M. Simou and G.P. Livanos Laboratories", National and Kapodistrian University of Athens, Athens, Greece;

Institute of Physiology, Charité Campus Benjamin Franklin, Berlin, Germany; Institute of Anesthesiology, German Heart Institute, Berlin, Germany;

出版信息

J Appl Physiol (1985). 2015 Mar 15;118(6):783-93. doi: 10.1152/japplphysiol.00458.2014. Epub 2015 Jan 15.

Abstract

Heterogeneity in the distribution of both blood flow (Q̇) and O2 consumption (V̇O2) has not been assessed by near-infrared spectroscopy in exercising normal human muscle. We used near-infrared spectroscopy to measure the regional distribution of Q̇ and V̇O2 in six trained cyclists at rest and during constant-load exercise (unloaded pedaling, 20%, 50%, and 80% of peak Watts) in both normoxia and hypoxia (inspired O2 fraction = 0.12). Over six optodes over the upper, middle, and lower vastus lateralis, we recorded 1) indocyanine green dye inflow after intravenous injection to measure Q̇; and 2) fractional tissue O2 saturation (StiO2) to estimate local V̇O2-to-Q̇ ratios (V̇o2/Q̇). Varying both exercise intensity and inspired O2 fraction provided a (directly measured) femoral venous O2 saturation range from about 10 to 70%, and a correspondingly wide range in StiO2. Mean Q̇-weighted StiO2 over the six optodes related linearly to femoral venous O2 saturation in each subject. We used this relationship to compute local muscle venous blood O2 saturation from StiO2 recorded at each optode, from which local V̇O2/Q̇ could be calculated by the Fick principle. Multiplying regional V̇O2/Q̇ by Q̇ yielded the corresponding local V̇O2. While six optodes along only in one muscle may not fully capture the extent of heterogeneity, relative dispersion of both Q̇ and V̇O2 was ∼0.4 under all conditions, while that for V̇O2/Q̇ was minimal (only ∼0.1), indicating in fit young subjects 1) a strong capacity to regulate Q̇ according to regional metabolic need; and 2) a likely minimal impact of heterogeneity on muscle O2 availability.

摘要

在正常人体运动肌肉中,血流(Q̇)和氧气消耗(V̇O2)分布的异质性尚未通过近红外光谱法进行评估。我们使用近红外光谱法测量了6名训练有素的自行车运动员在静息状态以及在常氧和低氧(吸入氧分数 = 0.12)条件下进行恒定负荷运动(无负荷蹬踏、峰值功率的20%、50%和80%)时Q̇和V̇O2的区域分布。在股外侧肌上、中、下部分的六个光极上,我们记录了:1)静脉注射吲哚菁绿染料后的流入情况以测量Q̇;2)组织氧分数饱和度(StiO2)以估计局部V̇O2与Q̇的比值(V̇o2/Q̇)。改变运动强度和吸入氧分数可使(直接测量的)股静脉氧饱和度范围从约10%至70%,相应地,StiO2也有很宽的范围。六个光极上的平均Q̇加权StiO2与每个受试者的股静脉氧饱和度呈线性相关。我们利用这种关系从每个光极记录的StiO2计算局部肌肉静脉血氧饱和度,进而通过菲克原理计算局部V̇O2/Q̇。将区域V̇O2/Q̇乘以Q̇可得出相应的局部V̇O2。虽然仅沿着一块肌肉的六个光极可能无法完全捕捉异质性的程度,但在所有条件下,Q̇和V̇O2的相对离散度约为0.4,而V̇O2/Q̇的相对离散度最小(仅约0.1),这表明在健康年轻受试者中:1)有很强的能力根据区域代谢需求调节Q̇;2)异质性对肌肉氧供应的影响可能最小。

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