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February 1, 2001The Journal of Physiology151 citationsOpen Access

Baroreflex and oscillation of heart period at 0.1 Hz studied by α‐blockade and cross‐spectral analysis in healthy humans

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ACAntonio CeveseGGGiosué GulliEPEnrico Polati

Key Result

Inhibition of sympathetic vasomotor activity with urapidil and angiotensin II abolished low-frequency oscillations of blood pressure and heart period in 5 of 8 healthy volunteers.

Key Points

  • To determine whether low-frequency (0.1 Hz) heart period variability depends on a baroreflex response to blood pressure fluctuations driven by alpha-sympathetic vasomotor tone.
  • Assessed 8 healthy volunteers in the supine position during metronome-paced breathing at 0.25 Hz.
  • Inhibited sympathetic vascular resistance using the peripheral alpha-blocker urapidil while maintaining baseline mean arterial pressure with angiotensin II infusion.
  • Performed spectral and cross-spectral analysis on ECG RR intervals and continuous finger arterial pressure to assess power, coherence, and phase shift.
  • Baseline cross-spectral analysis revealed significant low-frequency coherence (> 0.5) and a negative phase shift of -65.1 ± 18 degrees, showing a 1-2 second lag of heart period behind systolic pressure.
  • Infusion of urapidil and angiotensin II abolished 0.1 Hz oscillations of both blood pressure and heart period in 5 participants and substantially attenuated them in the remaining 3.

Structured PICO

Does peripheral alpha-blockade with urapidil and angiotensin II abolish low-frequency oscillations of heart period and blood pressure in healthy volunteers?

P
Population
8 healthy volunteers in the supine position
I
Intervention
Peripheral alpha-blocker (urapidil) with angiotensin II infusion to maintain mean blood pressure
C
Comparator
Control conditions (supine rest with metronome respiration at 0.25 Hz)
O
Outcome
Power of low- and high-frequency oscillations, phase shift, coherence and transfer function gain of heart period (RR) and systolic pressuresurrogate

Low-frequency oscillation of heart period at 0.1 Hz is almost entirely accounted for by a baroreflex mechanism driven by blood pressure oscillations.

Abstract

Parameters derived from frequency-domain analysis of heart period and blood pressure variability are gaining increasing importance in clinical practice. However, the underlying physiological mechanisms in human subjects are not fully understood. Here we address the question as to whether the low frequency variability (approximately 0.1 Hz) of the heart period may depend on a baroreflex-mediated response to blood pressure oscillations, induced by the alpha-sympathetic drive on the peripheral resistance. 2. Heart period (ECG), finger arterial pressure (Finapres) and respiratory airflow were recorded in eight healthy volunteers in the supine position with metronome respiration at 0.25 Hz. We inhibited the vascular response to the sympathetic vasomotor activity with a peripheral alpha-blocker (urapidil) and maintained mean blood pressure at control levels with angiotensin II. 3. We performed spectral and cross-spectral analysis of heart period (RR) and systolic pressure to quantify the power of low- and high-frequency oscillations, phase shift, coherence and transfer function gain. 4. In control conditions, spectral analysis yielded typical results. In the low-frequency range, cross-spectral analysis showed high coherence (> 0.5) and a negative phase shift (-65.1 +/- 18 deg) between RR and systolic pressure, which indicates a 1-2 s lag in heart period changes in relation to pressure. In the high-frequency region, the phase shift was close to zero, indicating simultaneous fluctuations of RR and systolic pressure. During urapidil + angiotensin II infusion the low-frequency oscillations of both blood pressure and heart period were abolished in five cases. In the remaining three cases they were substantially reduced and lost their typical cross-spectral characteristics. 5. We conclude that in supine rest conditions, the oscillation of RR at low frequency is almost entirely accounted for by a baroreflex mechanism, since it is not produced in the absence of a 0.1 Hz pressure oscillation. 6. The results provide physiological support for the use of non-invasive estimates of the closed-loop baroreflex gain from cross-spectral analysis of blood pressure and heart period variability in the 0.1 Hz range.

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Cite This Study

Cevese et al. (2001) studied Healthy volunteers (n=8). urapidil and angiotensin II vs. control conditions was evaluated on low-frequency oscillations of blood pressure and heart period. Inhibition of sympathetic vasomotor activity with urapidil and angiotensin II abolished low-frequency oscillations of blood pressure and heart period in 5 of 8 healthy volunteers.

synapsesocial.com/papers/6a129ba15a4f3a9db9a3f698https://doi.org/10.1111/j.1469-7793.2001.0235j.x
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