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Cardiovascular Parameters and Neural Sympathetic Discharge Variability before Orthostatic Syncope: Role of Sympathetic Baroreflex Control to the Vessels

机译:体位性晕厥前的心血管参数和神经交感神经放电变异性:交感压力反射控制对血管的作用

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摘要

We tested the hypothesis that altered sympathetic baroreceptor control to the vessels (svBRS) and disrupted coupling between blood pressure (BP) fluctuations and muscle sympathetic activity (MSNA) discharge pattern in the low frequency band (LF, around 0.1Hz) precede vasovagal syncope. Seven healthy males underwent ECG, BP, respiratory, and MSNA recordings at baseline (REST) and during a 15-minute 80° head-up tilt followed by a −10 mmHg step wise increase of lower body negative pressure up to presyncope. Spectral and coherence analyses of systolic arterial pressure (SAP) and MSNA variability provided the indexes of vascular sympathetic modulation, LFSAP, and of the linear coupling between MSNA and SAP in the low frequency band (around 0.1 Hz), K2MSNA-SAP(LF). svBRS was assessed as the slope of the regression line between MSNA and diastolic arterial pressure (DAP). Data were analyzed at REST, during asymptomatic and presyncope periods of tilt. svBRS declined during presyncope period compared to REST and asymptomatic tilt. The presyncope period was characterized by a decrease of RR interval, LFMSNA, LFSAP, and K2MSNA-SAP(LF) values compared to the asymptomatic one, whereas MSNA burst rate was unchanged. The reduction of svBRS producing an altered coupling between MSNA and SAP variability at 0.1 Hz, may provoke circulatory changes leading to presyncope.
机译:我们测试了以下假设:在血管迷走性晕厥之前,低频率(LF,约0.1Hz)中改变了交感性压力感受器对血管的控制(svBRS)并破坏了血压(BP)波动与肌肉交感神经活动(MSNA)放电模式之间的耦合。七名健康男性在基线(REST)并在15分钟的80°抬头向上倾斜期间经历了ECG,BP,呼吸和MSNA记录,随后下体负压逐步升高-10 mmHg,直至晕厥前。收缩动脉压(SAP)和MSNA变异性的频谱和相干分析提供了血管交感神经调制LFSAP以及MSNA与SAP在低频段(约0.1 Hz),K 2 < / sup> MSNA-SAP(LF)。 svBRS被评估为MSNA与舒张动脉压(DAP)之间的回归线斜率。在REST的无症状和晕厥前期间对数据进行了分析。与REST和无症状倾斜相比,在晕厥前svBRS有所下降。与无症状期相比,晕厥前期的特征是RR间隔,LFMSNA,LFSAP和K 2 MSNA-SAP(LF)值降低,而MSNA爆发率没有变化。 svBRS的降低会在0.1 Hz的MSNA和SAP变异性之间产生改变的耦合,这可能会引起循环变化,从而导致晕厥。

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