Literature DB >> 10710362

Cardiorespiratory interactions during periodic breathing in awake chronic heart failure patients.

G D Pinna1, R Maestri, A Mortara, M T La Rovere.   

Abstract

We applied spectral techniques to the analysis of cardiorespiratory signals [instantaneous lung volume (ILV), instantaneous tidal volume (ITV), arterial O(2) saturation (Sa(O(2))) at the ear, heart rate (HR), systolic (SAP), and diastolic (DAP) arterial pressure] during nonapneic periodic breathing (PB) in 29 awake chronic heart failure (CHF) patients and estimated the timing relationships between respiratory and slow cardiovascular (<0.04 Hz) oscillations. Our aim was 1) to elucidate major mechanisms involved in cardiorespiratory interactions during PB and 2) to test the hypothesis of a central vasomotor origin of PB. All cardiovascular signals were characterized by a dominant (>/=84% of total power) oscillation at the frequency of PB (mean +/- SE: 0.022 +/- 0.0008 Hz), highly coherent (>/=0.89), and delayed with respect to ITV (ITV-HR, 2.4 +/- 0.72 s; ITV-SAP, 6.7 +/- 0.65 s; ITV-DAP, 3.2 +/- 0.61 s; P < 0.01). Sa(O(2)) was highly coherent with (coherence function = 0.96 +/- 0. 009) and almost opposite in phase to ITV. These findings demonstrate the existence of a generalized cardiorespiratory rhythm led by the ventilatory oscillation and suggest that 1) the cyclic increase in inspiratory drive and cardiopulmonary reflexes and 2) mechanical effects of PB-induced changes in intrathoracic pressure are the more likely sources of the HR and blood pressure oscillations, respectively. The timing relationship between ITV and blood pressure signals excludes the possibility that PB represents the effect of a central vasomotor rhythm.

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Year:  2000        PMID: 10710362     DOI: 10.1152/ajpheart.2000.278.3.H932

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  12 in total

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5.  Spectral analysis of respiratory-related hemodynamic variables in simulated hypovolemia: a study in healthy volunteers with spontaneous breathing using a paced breathing activity.

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6.  Sleep apnea in heart failure increases heart rate variability and sympathetic dominance.

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7.  Pathophysiological and clinical relevance of simplified monitoring of nocturnal breathing disorders in heart failure patients.

Authors:  Gian Domenico Pinna; Roberto Maestri; Andrea Mortara; Paul Johnson; David Andrews; Piotr Ponikowski; Tomasz Witkowski; Elena Robbi; Maria Teresa La Rovere; Peter Sleight
Journal:  Eur J Heart Fail       Date:  2009-02-03       Impact factor: 15.534

8.  Ventilatory oscillations at exercise: effects of hyperoxia, hypercapnia, and acetazolamide.

Authors:  Eric Hermand; François J Lhuissier; Julie Larribaut; Aurélien Pichon; Jean-Paul Richalet
Journal:  Physiol Rep       Date:  2015-06

9.  Distinctive Steady-State Heart Rate and Blood Pressure Responses to Passive Robotic Leg Exercise during Head-Up Tilt: A Pilot Study in Neurological Patients.

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Journal:  Front Physiol       Date:  2017-06-02       Impact factor: 4.566

10.  The physiological effects of slow breathing in the healthy human.

Authors:  Marc A Russo; Danielle M Santarelli; Dean O'Rourke
Journal:  Breathe (Sheff)       Date:  2017-12
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