Variability in the period of the blood pressure circadian rhythm: In human beings

被引:13
作者
Abitbol, G
Reinberg, A
Mechkouri, M
机构
[1] FDN ADOLPHE ROTHSCHILD, CARDIOL UNIT, F-75940 PARIS 19, FRANCE
[2] FDN ADOLPHE ROTHSCHILD, CHRONOBIOL UNIT, F-75940 PARIS 19, FRANCE
关键词
ambulatory blood pressure monitoring; circadian rhythm; circadian period; hypertension; dyschronism; human beings;
D O I
10.3109/07420529709001422
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
In studies and assessments of human beings done in natural settings, it is assumed that the period tau of circadian rhythms, including ones of systolic (SEP) and diastolic (DBP) blood pressure, is equal to 24 hours. To test this hypothesis, SEP and DBP rhythms were studied in 112 medication-free, nonhospitalized subjects (62 males, 47.1 +/- 2.0 years [(x) over bar +/- SEM], and 50 females, 54.5 +/- 2.1 years) by 48h ambulatory blood pressure monitoring (ABPM). Of these, 26 were hypertensive (diurnal SEP > 140 mmHg and diurnal DBP > 90 mmHg) and 86 normotensive. All subjects were synchronized by their habitual daytime activities from similar to 08:00h to similar to 23:00h +/- Ih and by sleep at night. The BP was assessed at 15-minute intervals during a continuous 48h span using a Spacelabs model #90207 ABPM. The time series data of each subject were individually evaluated by power spectra analysis for the prominent tau of the SEP and DBP rhythms. The prominent tau differed from 24 hours in 22/112 subjects for SEP and in 16/112 subjects for DBP Generally, in these individuals the tau was less than 24 hours. The occurrence of non-24h tau's was more frequent in hypertensive than normotensive subjects; the difference between the groups in the distribution of the prominent tau's by class (tau = 24h, tau = 12, 12h > tau <24h, etc.) was statistically significant (chi(2) test = 19.1; p < 0.001). No difference in the distribution of tau's of blood pressure was detected according to the subject's age and gender. These findings suggest that ABPM done only for a duration of 24h may be too short to characterize accurately the features of the day-night variation in human BP, including the precise period of its rhythm.
引用
收藏
页码:307 / 317
页数:11
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