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Power spectral analysis of heart rate variability in ryanodine receptor type 3 knockout mice

机译:ryanodine受体3型敲除小鼠心率变异性的功率谱分析

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The role of ryanodine receptor type 3 (RyR-3) in the autonomic control of heart rate (HR) was studied by recording electrocardiogram (ECG) in conscious mutant mice totally lacking RyTR-3 (RyR-3 knockout mice) and their wild-type littermates. In RyR-3 knockout mice. HR was not significantly altered but its variability, evaluated by the coefficient of variance of R-R intervals of ECG, was significantly reduced as compared to that of wild-type mice. Further, sympathetic and vagal control of HR were assessed on the basis of the power spectrum of R-R variability calculated by the autoregressive analysis modified by the maximum entropy method. Low (LF) and high frequency components (HF) and their power, either real values or normalized by total power, were calculated from the power spectrum. In RyR-3 knockout mice, normalized LF power and LF/HF ratio, representing cardiac sympathetic activity and sympatho-vagal balance, respectively, were significantly smaller than in wild-type mice. Additionally, total power and LF power tended to be smaller. These results support the view that insufficient sympathetic control of HR and altered sympatho-vagal balance underlies reduction of HR variability in RyR-3 knockout mice. In conclusion, RyR-3 participates in the physiological control of HR by the cardiac nerve in conscious mice.
机译:通过记录心电图(ECG)在完全缺乏RyTR-3的有意识突变小鼠(RyR-3敲除小鼠)及其野生动物中的心电图(ECG),研究了3型ryanodine受体在心律(HR)自主控制中的作用。键入littermates。在RyR-3基因敲除小鼠中。与野生型小鼠相比,HR没有明显改变,但通过ECG的R-R间隔的变异系数评估的HR变异性显着降低。此外,基于通过最大熵方法修正的自回归分析计算的R-R变异性的功率谱,评估了HR的交感神经和迷走神经控制。从功率谱中计算出低(LF)和高频分量(HF)及其功率(实数值或通过总功率归一化)。在RyR-3基因敲除小鼠中,分别代表心脏交感神经活性和交感-迷走神经平衡的正常LF功率和LF / HF比值明显小于野生型小鼠。另外,总功率和LF功率趋向于更小。这些结果支持这样的观点,即对HR的交感控制不足和交感迷走神经平衡改变是RyR-3基因敲除小鼠HR变异性降低的基础。总之,RyR-3参与了意识小鼠心神经对HR的生理控制。

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