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首页> 外文期刊>American Journal of Physiology >Spontaneous beat-by-beat fluctuations of total peripheral and cerebrovascular resistance in response to tilt.
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Spontaneous beat-by-beat fluctuations of total peripheral and cerebrovascular resistance in response to tilt.

机译:总的外周和脑血管阻力的自发搏动波动响应倾斜。

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Beat-by-beat estimates of total peripheral resistance (TPR) can be obtained from continuous measurements of cardiac output by using Doppler ultrasound and noninvasive mean arterial blood pressure (MAP). We employed transfer function analysis to study the heart rate (HR) and vascular response to spontaneous changes in blood pressure from the relationships of systolic blood pressure (SBP) to HR (SBP-->HR), MAP to total peripheral resistance (TPR) and cerebrovascular resistance index (CVRi) (MAP-->TPR and MAP-->CVRi), as well as stroke volume (SV) to TPR in nine healthy subjects in supine and 45 degrees head-up tilt positions. The gain of the SBP-->HR transfer function was reduced with tilt in both the low- (0.03-0.15 Hz) and high-frequency (0.15-0.35 Hz) regions. In contrast, MAP-->TPR transfer function gain was not affected by head-up tilt, but it did increase from low- to high-frequency regions. The phase relationships between MAP-->TPR were unaffected by head-up tilt, but, consistent with an autoregulatory system, changes in MAP were followed by directionally similar changes in TPR, just as observed for the MAP-->CVRi. The SV-->TPR had high coherence with a constant phase of 150-160 degrees. Together, these data that showed changes in MAP preceded changes in TPR, as well as a possible link between SV and TPR, are consistent with complex interactions between the vascular component of the arterial and cardiopulmonary baroreflexes and intrinsic properties such as the myogenic response of the resistance arteries.
机译:可以通过使用多普勒超声和无创平均动脉血压(MAP)对心输出量进行连续测量来获得总外周阻力(TPR)的逐节拍估计值。我们采用传递函数分析来研究心率(HR)和血管对自发性血压变化的反应,从收缩压(SBP)与HR(SBP-> HR),MAP与总外周阻力(TPR)的关系仰卧和仰角45度倾斜的九名健康受试者的脑血管阻力指数(CVRi)(MAP-> TPR和MAP-> CVRi)以及对TPR的中风量(SV)。在低(0.03-0.15 Hz)和高频(0.15-0.35 Hz)区域中,SBP-> HR传递函数的增益均随倾斜而降低。相反,MAP-> TPR传递函数增益不受抬头倾斜的影响,但从低频到高频区域确实有所增加。 MAP-> TPR之间的相位关系不受抬头倾斜的影响,但是与自动调节系统一致,MAP的变化之后是TPR的方向相似的变化,就像MAP-> CVRi所观察到的那样。 SV-> TPR具有高相干性,且相位恒定在150-160度之间。总之,这些数据表明MAP的变化先于TPR的变化,以及SV和TPR之间的可能联系,与动脉和心肺压力反射的血管成分与内在特性(例如肌原性肌反应)之间的复杂相互作用相一致。阻力动脉。

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