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Linear and non-linear parameters of heart rate variability during static and dynamic exercise in a high-performance dinghy sailor.

机译:高性能小艇水手在静态和动态运动过程中心率变异性的线性和非线性参数。

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The analysis of heart rate variability (HRV) is recognized as a powerful non-invasive tool to evaluate the influence of autonomic nervous system on the heart and the heart-brain interaction. It is well-known that relatively high HRV is correlated to health condition while low HRV corresponds to cardiovascular disease or could be caused by mental stress, depression or exercise. In order to investigate heart-brain interaction we compare linear and non linear parameters calculated from HRV signals recorded in the same subject at similar heart rate (HR) values, during two different conditions, i.e. static exercise during sailing and dynamic exercise on cycloergometer. In the study, performed in one high-performance would class dinghy sailor, the HR was recorded at rest and during the two types of exercise. For the analysis, tachogram tracts with similar HR values were considered. The power spectral densities in very-low, low (LF) and high (HF) frequency bands were evaluated as well as the LF/HF ratio, the two standard deviations (SD1 and SD2) of the Poincare plot, the beta values and the fractal dimension (FD). The results indicate a decrease of HRV, LF, HF, SD1 and SD2 parameters, as well as an increase of beta and FD during both types of exercise compared to rest. However, the higher values of LF, LF/HF ratio and SD2 as well as the lower value of FD in upwind sailing in comparison to dynamic exercise on cycloergometer, at similar HR, suggest a different sympatho-vagal modulation on cardiac function and therefore a different heart-brain interaction in these isometric and isotonic exercises.
机译:心率变异性(HRV)分析被认为是评估植物神经系统对心脏和心脑相互作用的影响的强大的非侵入性工具。众所周知,相对较高的HRV与健康状况有关,而较低的HRV则与心血管疾病有关,或者可能是由精神压力,抑郁或运动引起的。为了研究心脑交互作用,我们比较了在两种不同情况下(即航行中的静态锻炼和动态心电图仪上的动态锻炼)在相同心率(HR)值下从同一受试者中记录的HRV信号计算出的线性和非线性参数。在这项研究中,在一艘高性能的“小艇”水手中进行了表演,记录了在休息时以及在两种运动期间的HR。为了进行分析,考虑了具有相似HR值的行驶记录图。评估了极低,低(LF)和高(HF)频段的功率谱密度以及LF / HF比,庞加莱图的两个标准偏差(SD1和SD2),β值和分形维数(FD)。结果表明与静息相比,两种运动期间HRV,LF,HF,SD1和SD2参数均降低,β和FD升高。然而,在类似的心率下,与使用心率计进行动态锻炼相比,在逆风航行中,较高的LF,LF / HF比值和SD2的值较高,而FD的值较低,这表明对心功能的交感迷走神经调节不同,因此在这些等距和等渗锻炼中,不同的心脑相互作用。

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