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January 1, 1995Clinical Science290 citations

Physiology and Pathophysiology of Heart Rate and Blood Pressure Variability in Humans: Is Power Spectral Analysis Largely An Index of Baroreflex Gain?

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PSPeter SleightMRMaria Teresa La RovereAMAndrea Mortara

Key Points

  • The study investigates whether power spectral analysis accurately reflects autonomic balance or mainly indicates baroreflex gain.
  • Applied the De Boer model to analyze spectral power in heart rate and blood pressure variability.

Structured PICO

Does power spectral analysis of cardiovascular variables reflect baroreflex gain rather than simple autonomic balance in normal subjects and heart failure patients?

P
Population
Normal subjects and heart failure patients with varying baroreflex sensitivity (including sensitive or poor baroreflex control)
I
Intervention
Neck suction to stimulate carotid baroreceptors at 0.1 and 0.2 Hz
C
Comparator
Rest conditions with controlled respiration rate (0.25 Hz)
O
Outcome
Power spectrum of R-R interval and blood pressure variabilitysurrogate

Power spectral analysis of heart rate and blood pressure variability may be a more sensitive indicator of baroreflex control, particularly vagal control, than a direct measure of autonomic balance.

Abstract

It is often assumed that the power in the low-(around 0.10 Hz) and high-frequency (around 0.25 Hz) bands obtained by power spectral analysis of cardiovascular variables reflects vagal and sympathetic tone respectively. An alternative model attributes the low-frequency band to a resonance in the control system that is produced by the inefficiently slow time constant of the reflex response to beat-to-beat changes in blood pressure effected by the sympathetic (with or without the parasympathetic) arm(s) of the baroreflex (De Boer model). 2. We have applied the De Boer model of circulatory variability to patients with varying baroreflex sensitivity and one normal subject, and have shown that the main differences in spectral power (for both low and high frequency) between and within subjects are caused by changes in the arterial baroreflex gain, particularly for vagal control of heart rate (R—R interval) and left ventricular stroke output. We have computed the power spectrum at rest and during neck suction (to stimulate carotid baroreceptors). We stimulated the baroreceptors at two frequencies (0.1 and 0.2 Hz), which were both distinct from the controlled respiration rate (0.25 Hz), in both normal subjects and heart failure patients with either sensitive or poor baroreflex control. 3. The data broadly confirm the De Boer model. The low-frequency (0.1 Hz) peak in either R—R or blood pressure variability) was spontaneously generated only if the baroreflex control of the autonomic outflow was relatively intact. With a large stimulus to the carotid baroreceptor it was possible to influence the low-frequency R—R but not low-frequency blood pressure variability. This implies that it is too simplistic to use power spectral analysis as a simple measure of autonomic balance its underlying modulation is more complex than generally believed. 4. It may be that power spectral analysis is more a sensitive indicator of baroreflex control, particularly of vagal control, than direct evidence of autonomic balance. of course, there is often a correlation between the gain of the reflex and the autonomic balance of vagus and sympathetic. These considerations may help our understanding of some conditions, such as exercise or heart failure, when the power spectral analysis method fails to identify increased sympathetic discharge; this failure may partly be explained by the decrease in baroreflex sensitivity which occurs in these two conditions.

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Cite This Study

Sleight et al. (1995) studied this question.

synapsesocial.com/papers/6a0fcb71d12fb77703193c7dhttps://doi.org/10.1042/cs0880103
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1IDENTIFICATION OF BLOOD PRESSURE CONTROL MECHANISMS BY POWER SPECTRAL ANALYSIS2007 · 232 citations
  2. 2Impact of Changes in Respiratory Frequency and Posture on Power Spectral Analysis of Heart Rate and Systolic Blood Pressure Variability in Normal Subjects and Patients with Heart Failure1996 · 92 citations
  3. 3Determination of Baroreceptor‐Stroke Volume Reflex Sensitivity by Power Spectral Analysis: A Quantitative Probe of Baroreceptor‐Cardiac Reflex2004 · 7 citations
  4. 4Low-frequency power of heart rate variability is not a measure of cardiac sympathetic tone but may be a measure of modulation of cardiac autonomic outflows by baroreflexes2011 · 843 citations
  5. 5Spectral Analysis of Blood Pressure and Heart Rate Variability in Evaluating Cardiovascular Regulation1995 · 852 citations