Jia Shuyong, Wang Qizhen, Li Hongyan, Song Xiaojing, Wang Shuyou, Zhang Weibo, Wang Guangjun
Institute of Acupuncture and Moxibustion, China Academy of Chinese Medical Sciences, Beijing, China.
Institute of Basic Research in Clinical Medicine, China Academy of Chinese Medical Sciences, Beijing, China.
Front Physiol. 2021 Aug 13;12:656527. doi: 10.3389/fphys.2021.656527. eCollection 2021.
Previous studies have explored the relationship between the complexity of local blood flow signals and heart rate variability (HRV) under different thermal stimulations. However, the relationship between the complexity of local blood flow signals and HRV in different positions is not clear. In this study, healthy participants were placed in different body positions. The bilateral blood flux and ECG were monitored, and refined composite multiscale entropy (RC MSE) and refined composite multiscale fuzzy entropy (RC MFE) were used to measure the complexity of the local blood flux. The sample entropy was calculated to evaluate the HRV complexity. The change of body position did not affect the time domain or frequency domain of HRV, but did reverse the blood flux laterality of the lower extremities. Furthermore, there was a negative correlation between the complexity of right-side blood flux and sample entropy of HRV when the participant was in the -10 degrees position. These results provide a new perspective of the relationship between skin blood flux signals and cardiac function.
以往的研究探讨了不同热刺激下局部血流信号的复杂性与心率变异性(HRV)之间的关系。然而,不同位置的局部血流信号复杂性与HRV之间的关系尚不清楚。在本研究中,将健康参与者置于不同的身体位置。监测双侧血流量和心电图,并使用改进的复合多尺度熵(RC MSE)和改进的复合多尺度模糊熵(RC MFE)来测量局部血流量的复杂性。计算样本熵以评估HRV复杂性。身体位置的改变并未影响HRV的时域或频域,但确实逆转了下肢的血流量偏向性。此外,当参与者处于-10度位置时,右侧血流量的复杂性与HRV的样本熵之间存在负相关。这些结果为皮肤血流信号与心脏功能之间的关系提供了新的视角。