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Modifications on Regularity and Spectrum of Ventricular Fibrillation Signal Induced by Physical Training

机译:体育训练诱导的心室颤动信号的规律性和光谱的修改

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The objective of this work is to study the modifications on cardiac response during ventricular fibrillation (VF) induced by physical training. The analysis was performed in the frequency domain of VF, and the regularity of the signal was also considered. Two sets of records were acquired: control (G1: without physical training, N=10), and trained (G2, N=9). Cardiac registers were obtained using a 240-electrodes matrix located on left ventricle of isolated rabbit heart. A Langendorff system was used to maintain the heart perfusion. VF was induced by increased frequencies. To analyze the time course of VF, records were processed in 4-second segments. For every segment and channel, Welch periodogram with Hanning window, two non-overlapped sections and zero padding, was computed. Parameters considered in frequency domain are: dominant frequency (DF) and normalized energy (NE: spectral energy in the window DF±1Hz, normalized by spectral energy in 5-35Hz band). For every segment and channel, a regularity analysis of VF was performed, obtaining the regularity index (RI), which is a measure of similarity among local activation waves present in every channel. Mean values for the parameters (DF, NE and RI) of the whole set of electrodes were computed for every segment. Obtained results show that DF is lower for trained rabbits (G1: 18.234±1, 241Hz; G2: 14.370±0, 866Hz; p<0.001). NE is greater for this group (G1: 0.140±0.006; G2: 0.263±0.017; p<0.001), suggesting a greater spectral concentration around DF. Finally, a greater regularity has been observed in the fibrillation signal for trained group (IR, G1: 0.756±0.026; G2: 0.834±0.014; p<0.001). As a summary, the results suggest that both spectral characteristics and regularity of VF signal are clearly different for G1 and G2 groups. The trained group (G2) shows greater regularity, lower DF and spectral dispersion. These factors should be interpreted as a more stable cardiac response to VF.
机译:这项工作的目的是研究体育训练诱导的心室颤动(VF)的心脏反应的修饰。分析在VF的频域中进行,也考虑了信号的规律性。获得两组记录:控制(G1:没有物理训练,n = 10),并接受训练(G2,n = 9)。使用位于孤立的兔心的左心室的240电极基质获得了心脏寄存器。 Langendorff系统用于保持心脏灌注。 VF由增加的频率引起。要分析VF的时间过程,记录在4秒的段中处理。对于每个段和频道,计算使用Hanning窗口,两个不重叠部分和零填充的Welch期间。在频域中考虑的参数是:主频率(DF)和归一化能量(NE:在窗口DF±1Hz的光谱能量,通过频谱能量在5-35Hz频带归一化)。对于每个段和频道,执行VF的规则性分析,获得规律性指数(RI),这是每个信道中存在的本地激活波之间的相似性的量度。为每个段计算整个电极的参数(DF,NE和RI)的平均值。得到的结果表明,培训的兔子的DF较低(G1:18.234±1,241Hz; G2:14.370±0,866Hz; P <0.001)。对于该组,NE更大(G1:0.140±0.006; G2:0.263±0.017; p <0.001),表明DF周围更大的光谱浓度。最后,在训练基团的原纤化信号中已经观察到更大的规则性(IR,G1:0.756±0.026; G2:0.834±0.014; p <0.001)。作为摘要,结果表明VF信号的光谱特性和规律性对于G1和G2组显然是不同的。培训的群体(G2)显示了更大的规则性,降低DF和光谱分散。这些因素应被解释为对VF更稳定的心脏反应。

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