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February 1, 1990Circulation735 citations

Continuous 24-hour assessment of the neural regulation of systemic arterial pressure and RR variabilities in ambulant subjects.

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RFRaffaello FurlanSGStefano GuzzettiWCWilma Crivellaro

Structured PICO

Does the neural control of circulation undergo continuous and predictable changes throughout the day and night in ambulant subjects?

P
Population
46 ambulant subjects (18 hospitalized patients free to move, 28 nonhospitalized subjects)
I
Intervention
Dynamic 24-hour recordings of electrocardiograms (and direct high-fidelity arterial pressures in the 18 hospitalized subjects) with spectral analysis
O
Outcome
Changes in markers of sympathetic and vagal activity (low-frequency and high-frequency components of RR interval and systolic arterial pressure variabilities) over 24 hourssurrogate

The early morning rise in sympathetic activity and reduction in vagal tone may explain the increased rate of cardiovascular events during morning hours.

Abstract

In this study, we tested the hypothesis that the neural control of circulation in humans undergoes continuous but in part predictable changes throughout the day and night. Dynamic 24-hour recordings were obtained in two groups of ambulant subjects. In 18 hospitalized patients free to move, direct high-fidelity arterial pressures and electrocardiograms were recorded, and in an additional 28 nonhospitalized subjects, only electrocardiograms were obtained. Spectral analysis of systolic arterial pressure and of RR interval variabilities provided quantitative markers of sympathetic and vagal control of the sinus node and of sympathetic modulation of vasomotor tone. With this approach, the low-frequency (approximately 0.1 Hz) component of RR interval and systolic arterial pressure variabilities is considered a marker primarily of sympathetic activity, whereas the high-frequency (approximately 0.25 Hz) component of RR interval variability, related to respiration, seems to be a marker primarily of vagal activity. We observed a pronounced and consistent reduction in the markers of sympathetic activity and an increase in those of vagal activity during the night. In the invasive studies, while the subjects were still lying in bed after waking up, the markers of sympathetic activity rose rapidly and concomitantly with a simultaneous vagal withdrawal. Noninvasive studies confirmed the early morning rise of the markers of sympathetic activity and the circadian pattern of sympathovagal balance. These data indicate that the ominously increased rate of cardiovascular events in the morning hours may reflect the sudden rise of sympathetic activity and the reduction of vagal tone.

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Cite This Study

Furlan et al. (1990) studied this question.

synapsesocial.com/papers/6a03dd183d6d59b43e4d23d2https://doi.org/10.1161/01.cir.81.2.537
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