Copyright © 2001 by the European Society of Cardiology.
Atrial and ventricular refractoriness in paced patients; circadian variation and its relationship to autonomic nervous system activity
Cardiology Department, University Hospital of Heraklion, Crete, Greece
revised February 20, 2001; accepted February 23, 2001
Abstract
Aims To examine whether atrial and ventricular effective refractory periods exhibit circadian variation and whether the latter is correlated with fluctuations in autonomic nervous system tone.
Methods and Results We studied 24 patients aged 67·1±9·6 years, 11 of whom were paced for complete heart block and 13 for sick sinus syndrome. Atrial and ventricular effective refractory periods were measured bihourly over a 24-h period, using the pacemaker programming capabilities, at basic cycle lengths of 600ms and 500ms. During the same time period we evaluated autonomic nervous system activity in patients paced for complete heart block, expressed by spectral power indexes in low frequency and high frequency areas of heart rate variability. Atrial and ventricular effective refractory periods showed significant circadian variation at both basic cycle lengths, with the highest values occurring between 22:00 and 06:00. At times, the atrial and ventricular effective refractory periods of the patients with sick sinus syndrome differed significantly from those with complete heart block. Furthermore, atrial and ventricular effective refractory periods in patients with complete heart block exhibited a strong negative correlation with the low frequency/high frequency ratio.
Conclusion Our data show that atrial and ventricular effective refractory periods in DDD paced patients exhibit significant circadian variation that is strongly correlated with variations in autonomic nervous system activity in patients with complete heart block.
Key Words: Circadian variation, refractoriness, autonomic nervous system
f1 Correspondence: Professor P. E. Vardas, MD, PhD (London), FESC, FACC, Cardiology Department, Heraklion University Hospital, P.O. Box 1352, Stavrakia, Heraklion, Crete, Greece.
References
- Kupari M, Koskinen P, Leinonen H. Double-peaking circadian variation in the occurrence of sustained supraventricular tachyarrhythmias. Am Heart J. 1990;120:13641369[CrossRef][ISI][Medline]
- Viskin S, Golovner M, Malov N. Circadian variation of symptomatic paroxysmal atrial fibrillation. Data from almost 10000 episodes. Eur Heart J. 1999;20:14291434
[Abstract/Free Full Text] - Lampert R, Rosenfeld L, Batsford W, Lee F, McPherson C. Circadian variation of sustained ventricular tachycardia in patients with coronary artery disease and implantable cardioverter-defibrillators. Circulation. 1994;90:241247
[Abstract/Free Full Text] - Willich SN, Levy D, Rocco MB, Tofler GH, Stone PH, Muller JE. Circadian variation in the incidence of sudden cardiac death in the Framingham Heart Study population. Am J Cardiol. 1987;60:801806[CrossRef][ISI][Medline]
- Cinca J, Moya A, Figueras J, Roma F, Rius J. Circadian variations in the electrical properties of the human heart assessed by sequential bedside electrophysiologic testing. Am Heart J. 1986;112:315321[CrossRef][ISI][Medline]
- Huikuri HV, Yli-Mayry S, Linnaluoto MK, Ikaheimo MJ. Diurnal fluctuations in human ventricular and atrial refractoriness. PACE. 1995;18:13621368
- Kong TQ Jr, Goldberger JJ, Parker M, Wang T, Kadish AH. Circadian variation in human ventricular refractoriness. Circulation. 1995;92:15071516
[Abstract/Free Full Text] - Furlan R, Guzzetti S, Crivellaro W. Continuous 24-hour assessment of the neural regulation of systemic arterial pressure and RR variabilities in ambulant subjects. Circulation. 1990;81:537547
[Abstract/Free Full Text] - Molgaard H, Sorensen KE, Bjerregaard P. Circadian variation and influence of risk factors on heart rate variability in healthy subjects. Am J Cardiol. 1991;68:777784[CrossRef][ISI][Medline]
- Huikuri HV, Kessler KM, Terracall E, Castellanos A, Linnaluoto MK, Myerburg RJ. Reproducibility and circadian rhythm of heart rate variability in healthy subjects. Am J Cardiol. 1990;65:391393[CrossRef][ISI][Medline]
- Alessi R, Nusynowitz M, Abildskov JA, Moe GK. Nonuniform distribution of vagal effects on the atrial refractory period. Am J Physiol. 1958;194:406410
[Abstract/Free Full Text] - Zipes DP, Mihalick MJ, Robbins GT. Effects of selective vagal and stellate ganglion stimulation of atrial refractoriness. Cardiovasc Res. 1974;8:647655[ISI][Medline]
- Prystowsky EN, Naccarelli GV, Jackman WM, Rinkenberger RL, Heger JJ, Zipes DP. Enhanced parasympathetic tone shortens atrial refractoriness in man. Am J Cardiol. 1983;51:96100[CrossRef][ISI][Medline]
- Inoue H, Zipes DP. Changes in atrial and ventricular refractoriness and in atrioventricular nodal conduction produced by combinations of vagal and sympathetic stimulation that result in a constant spontaneous sinus cycle length. Circ Res. 1987;60:942951
[Abstract/Free Full Text] - Takei M, Furukawa Y, Narita M. Synergistic nonuniform shortening of atrial refractory period induced by autonomic stimulation. Am J Physiol. 1991;261:H19881993
- Govier WC, Mosal NC, Whittington P, Broom AH. Myocardial alpha and beta-adrenergic receptors as demonstrated by atrial functional refractory-period changes. J Pharmacol Exp Ther. 1966;154:255263
[Abstract/Free Full Text] - Pappano AJ. Propranolol-insensitive effects of epinephrine on action potential repolarization in electrically driven atria of the guinea pig. J Pharmacol Exp Ther. 1971;177:8595
[Abstract/Free Full Text] - Giotti A, Ledda F, Mannaioni PF. Effects of noradrenaline and isoprenaline, in combination with a and b receptor blocking substances, on the action potential of cardiac Purkinje fibres. J Physiol (Lond). 1973;229:99113
[Abstract/Free Full Text] - Schwartz PJ, Verrier RL, Lown B. Effect of stellectomy and vagotomy on ventricular refractoriness in dogs. Circ Res. 1977;40:536540
[Abstract/Free Full Text] - Nattel S, Euler DE, Spear JF, Moore EN. Autonomic control of ventricular refractoriness. Am J Physiol. 1981;241:H878882
- Morady F, Kou WH, Nelson SD. Accentuated antagonism between beta-adrenergic and vagal effects on ventricular refractoriness in humans. Circulation. 1988;77:289297
[Abstract/Free Full Text] - Simantirakis EN, Prassopoulos VK, Chrysostomakis SI. Effects of asynchronous ventricular activation on myocardial adrenergic innervation in patients with permanent dual-chamber pacemakers: An I123metaiodobenzylguanidine cardiac scintigraphic study. Eur Heart J. 2001;22:323332
[Abstract/Free Full Text] - Tse HF, Lau CP. Long-term effect of right ventricular pacing on myocardial perfusion and function. J Am Coll Cardiol. 1997;29:744749[Abstract]
This article has been cited by other articles:
![]() |
S. Behrens and M. R. Franz Circadian variation of arrhythmic events, electrophysiological properties, and the autonomic nervous system Eur. Heart J., December 1, 2001; 22(23): 2144 - 2146. [PDF] |
||||
| ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
