Literature DB >> 1561018

Heart rate variability in congenital central hypoventilation syndrome.

M S Woo1, M A Woo, D Gozal, M T Jansen, T G Keens, R M Harper.   

Abstract

Heart rate variability was assessed in 12 patients with congenital central hypoventilation syndrome (CCHS) and in age- and sex-matched controls using SD of time intervals between R waves (R-R intervals), R-R interval histograms, spectral analysis, and Poincaré plots of sequential R-R intervals over a 24-h period using ambulatory monitoring. Mean heart rates in patients with CCHS were 103.3 +/- 17.7 SD and in controls were 98.8 +/- 21.6 SD (p greater than 0.5, NS). SD analysis of R-R intervals showed similar results in both groups (CCHS 102.2 +/- 36.0 ms versus controls 126.1 +/- 43.3 ms; p greater than 0.1, NS). Spectral analysis revealed that, for similar epochs sampled during quiet sleep and wakefulness, the ratios of low-frequency band to high-frequency band spectral power were increased for 11 of 12 patients with CCHS during sleep, whereas a decrease in these ratios was consistently observed in all controls during comparable sleep states (chi 2 = 20.31; p less than 0.000007). During wakefulness, the ratios of low-frequency band to high-frequency band spectral power were similar in both patients with CCHS and controls. Poincaré plots displayed significantly reduced beat-to-beat changes at slower heart rates in the CCHS patients (chi 2 = 24.0; p less than 0.000001). The scatter of points in CCHS Poincaré plots was easily distinguished from controls. All CCHS patients showed disturbed variability with one or more measures. The changes in moment-to-moment heart rate variability suggest that, in addition to a loss of ventilatory control, CCHS patients exhibit a dysfunction in autonomic nervous system control of the heart.

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Year:  1992        PMID: 1561018     DOI: 10.1203/00006450-199203000-00020

Source DB:  PubMed          Journal:  Pediatr Res        ISSN: 0031-3998            Impact factor:   3.756


  24 in total

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2.  Novel neuropathologic findings in the Haddad syndrome.

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3.  Genotype-phenotype relationship in Japanese patients with congenital central hypoventilation syndrome.

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4.  Central autonomic regulation in congenital central hypoventilation syndrome.

Authors:  J A Ogren; P M Macey; R Kumar; M A Woo; R M Harper
Journal:  Neuroscience       Date:  2010-03-06       Impact factor: 3.590

5.  Decreased cortical thickness in central hypoventilation syndrome.

Authors:  Paul M Macey; Ammar S Moiyadi; Rajesh Kumar; Mary A Woo; Ronald M Harper
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Review 7.  Congenital central hypoventilation syndrome: a bedside-to-bench success story for advancing early diagnosis and treatment and improved survival and quality of life.

Authors:  Debra E Weese-Mayer; Casey M Rand; Amy Zhou; Michael S Carroll; Carl E Hunt
Journal:  Pediatr Res       Date:  2016-09-27       Impact factor: 3.756

8.  The divergent ventilatory and heart rate response to moderate hypercapnia in infants with apnoea of infancy.

Authors:  M Katz-Salamon; J Milerad
Journal:  Arch Dis Child       Date:  1998-09       Impact factor: 3.791

9.  Cardiac arrhythmias imprint specific signatures on Lorenz plots.

Authors:  Hans D Esperer; Chris Esperer; Richard J Cohen
Journal:  Ann Noninvasive Electrocardiol       Date:  2008-01       Impact factor: 1.468

10.  Hippocampal volume reduction in congenital central hypoventilation syndrome.

Authors:  Paul M Macey; Christopher A Richard; Rajesh Kumar; Mary A Woo; Jennifer A Ogren; Christina Avedissian; Paul M Thompson; Ronald M Harper
Journal:  PLoS One       Date:  2009-07-30       Impact factor: 3.240

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