...
首页> 外文期刊>Physiological Research >Oscillation in Tissue Oxygen Index During Recovery From Exercise
【24h】

Oscillation in Tissue Oxygen Index During Recovery From Exercise

机译:从运动中恢复期间组织氧指数的振荡

获取原文
获取原文并翻译 | 示例
           

摘要

It was hypothesized that an oscillation of tissue oxygen index (TOI) determined by near-infrared spectroscopy during recovery from exercise occurs due to feedback control of adenosine triphosphate and that frequency of the oscillation is affected by blood pH. In order to examine these hypotheses, we aimed 1) to determine whether there is an oscillation of TOI during recovery from exercise and 2) to determine the effect of blood pH on frequency of the oscillation of TOI. Three exercises were performed with exercise intensities of 30 % and 70 % peak oxygen uptake (Vo(2)peak) for 12 min and with exercise intensity of 70 % Vo(2)peak for 30 s. TOI during recovery from the exercise was analyzed by fast Fourier transform in order to obtain power spectra density (PSD). There was a significant difference in the frequency at which maximal PSD of TOI appeared (Fmax) between the exercises with 70 % Vo(2)peak for 12 min (0.0039 +/- 0 Hz) and for 30 s (0.0061 +/- 0.0028 Hz). However, there was no significant difference in Fmax between the exercises with 30 % (0.0043 +/- 0.0013 Hz) and with 70 % Vo(2)peak for 12 min despite differences in blood pH and blood lactate from the warmed fingertips. It is concluded that there was an oscillation in TOI during recovery from the three exercises. It was not clearly shown that there was an effect of blood pH on Fmax.
机译:假设运动恢复期间通过近红外光谱法确定的组织氧指数(TOI)的振荡是由于三磷酸腺苷的反馈控制而发生的,并且该振荡的频率受血液pH值的影响。为了检验这些假设,我们的目标是1)确定运动恢复期间TOI是否振荡,以及2)确定血液pH值对TOI振荡频率的影响。进行了三个运动,运动强度分别为30%和70%峰值摄氧量(Vo(2)peak),持续12分钟,运动强度为70%Vo(2)peak,持续30 s。通过快速傅立叶变换分析了运动恢复期间的TOI,以获得功率谱密度(PSD)。在70%Vo(2)峰值下进行12分钟(0.0039 +/- 0 Hz)和30 s(0.0061 +/- 0.0028)的练习之间,TOI的最大PSD出现频率(Fmax)存在显着差异。赫兹)。然而,尽管血液pH值和指尖变热的血液乳酸存在差异,在30%(0.0043 +/- 0.0013 Hz)和70%Vo(2)峰值下进行的练习之间的Fmax在12分钟之间没有显着差异。结论是,在从这三个练习中恢复期间,TOI出现了波动。尚未清楚地表明血液pH对Fmax有影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号