首页> 外文期刊>Advances in Experimental Medicine and Biology >Active muscle oxygenation dynamics measured during high-intensity exercise by using two near-infrared spectroscopy methods.
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Active muscle oxygenation dynamics measured during high-intensity exercise by using two near-infrared spectroscopy methods.

机译:通过使用两种近红外光谱法在高强度运动过程中测量的主动肌肉氧化动力学。

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摘要

Near-infrared spectroscopy is a noninvasive optical technique used to monitor tissue oxygenation. Generally, the modified Beer-Lambert's law (MBL) using continuous-wave light has been used to measure active muscle oxygenation during exercise; however, it cannot measure absolute changes in the oxy- (oxy-[Hb + Mb]), deoxy- (deoxy-[Hb + Mb]), and total hemoglobin/myoglobin concentrations (total-[Hb + Mb]) because the pathlength and scattering coefficient are not measured. In contrast, the time-resolved spectroscopy (TRS) using a ultra short pulsed laser can be used to determine absolute changes in the concentration, although the temporal resolution is inferior to that in MBL. This study evaluated the absolute changes in active muscle oxygenation and the optical mean pathlength and scattering and absorption coefficient during high-intensity exercise by using the TRS system. In addition, the difference between the changes determined using TRS and MBL measurements was assessed. When the TRS and MBL measurements obtained during high-intensity exercise were compared, the total-[Hb + Mb] and oxy-[Hb + Mb] dynamics differed markedly during high-intensity exercise, while the deoxy-[Hb + Mb] dynamics and kinetics did not differ.
机译:近红外光谱是一种用于监视组织氧合的非侵入性光学技术。通常,使用连续波光的修正比尔-兰伯特定律(MBL)已用于测量运动中的活跃肌肉氧合。但是,它无法测量oxy-(oxy-[[Hb + Mb]),deoxy-(deoxy- [Hb + Mb])和总血红蛋白/肌红蛋白浓度(总[Hb + Mb])的绝对变化,因为没有测量光程和散射系数。相反,尽管时间分辨率低于MBL,但使用超短脉冲激光的时间分辨光谱(TRS)可用于确定浓度的绝对变化。这项研究使用TRS系统评估了高强度运动过程中活跃的肌肉氧合作用的绝对变化以及光学平均路径长度以及散射和吸收系数。此外,评估了使用TRS和MBL测量确定的变化之间的差异。比较高强度运动时获得的TRS和MBL测量值,高强度运动时总[Hb + Mb]和oxy- [Hb + Mb]动力学明显不同,而脱氧[[Hb + Mb]]动力学和动力学没有不同。

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