Literature DB >> 7874855

Low-frequency spontaneous fluctuations of R-R interval and blood pressure in conscious humans: a baroreceptor or central phenomenon?

L Bernardi1, S Leuzzi, A Radaelli, C Passino, J A Johnston, P Sleight.   

Abstract

1. We have tested the hypothesis that the non-respiratory, low-frequency (around 0.1 Hz) fluctuations of heart rate variability are generated by the baroreflexes, but with a delay caused by the slower response of the efferent sympathetic arm, (compared with the vagus), in 11 healthy subjects (mean age +/- SD 27 +/- 5 years). 2. In random order, at the onset of 20 s of apnoea starting at end expiration, we applied either 600 ms neck suction (-40 mmHg) to the carotid sinus region, or no stimulus (anticipation control), or a loud whistle (alerting control), every 60 s, for 30 min. (i.e. 10 of each 'stimulus'). We recorded neck pressure, blood pressure (Finapres), R-R interval (ECG), infra-red plethysmographic skin blood flow and respiration (impedance). By subtracting the alerting response from the neck suction response we obtained the responses caused purely by baroreceptor stimulation. 3. The initial reflex bradycardia and hypotension was followed by arteriolar vasoconstriction, presumably due to recompensation by the baroreflex, and then by a further reflex bradycardia-producing a decaying oscillation of the R-R interval about the control R-R. The period of this damped oscillation was 0.103 +/- 0.024 Hz, similar to the frequency of the low-frequency peak obtained by power spectral analysis of heart rate variability (0.093 +/- 0.016 Hz, not significant) at rest. These two values were significantly correlated in individual subjects (r = 0.715, P < 0.025). 4. These findings support the hypothesis that the low-frequency waves of heart rate variability can be generated from baroreceptor sensed blood pressure fluctuations.

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Year:  1994        PMID: 7874855     DOI: 10.1042/cs0870649

Source DB:  PubMed          Journal:  Clin Sci (Lond)        ISSN: 0143-5221            Impact factor:   6.124


  21 in total

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3.  Arterial baroreflex modulation influences postural sway.

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4.  A comparison of two Hilbert spectral analyses of heart rate variability.

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Journal:  Med Biol Eng Comput       Date:  2009-06-12       Impact factor: 2.602

5.  Autonomic control of the cerebral circulation during normal and impaired peripheral circulatory control.

Authors:  S Cencetti; A Lagi; M Cipriani; L Fattorini; G Bandinelli; L Bernardi
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7.  Evaluation of 5-year risk of cardiovascular events in patients after acute myocardial infarction using synchronization of 0.1-Hz rhythms in cardiovascular system.

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8.  Heart rate recovery after exercise and neural regulation of heart rate variability in 30-40 year old female marathon runners.

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9.  Perturbed and spontaneous regional cerebral blood flow responses to changes in blood pressure after high-level spinal cord injury: the effect of midodrine.

Authors:  Aaron A Phillips; Andrei V Krassioukov; Philip N Ainslie; Darren E R Warburton
Journal:  J Appl Physiol (1985)       Date:  2014-01-16

10.  Impaired baroreflex function in temporal lobe epilepsy.

Authors:  Mathias Dütsch; Max J Hilz; Orrin Devinsky
Journal:  J Neurol       Date:  2006-10-13       Impact factor: 4.849

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