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A synoptic approach to weather conditions discloses a relationship with ambulatory blood pressure in hypertensives
- Source :
- American journal of hypertension 21 (2008): 748–752. doi:10.1038/ajh.2008.177, info:cnr-pdr/source/autori:Morabito M, Crisci A, Orlandini S, Maracchi G, Gensini GF, Modesti PA./titolo:A synoptic approach to weather conditions discloses a relationship with ambulatory blood pressure in hypertensives./doi:10.1038%2Fajh.2008.177/rivista:American journal of hypertension/anno:2008/pagina_da:748/pagina_a:752/intervallo_pagine:748–752/volume:21, American journal of hypertension 21 (2006): 748–752. doi:10.1038/ajh.2008.177, info:cnr-pdr/source/autori:M.Morabito, A.Crisci, S. Orlandini, G.Maracchi, G. F. Gensini and P. A. Modesti,/titolo:A Synoptic Approach to Weather Conditions Discloses a Relationship With Ambulatory Blood Pressure in Hypertensives/doi:10.1038%2Fajh.2008.177/rivista:American journal of hypertension/anno:2006/pagina_da:748/pagina_a:752/intervallo_pagine:748–752/volume:21
- Publication Year :
- 2008
-
Abstract
- BACKGROUND Higher blood pressure (BP) values in cold than in hot months has been documented in hypertensives. These changes may potentially contribute to the observed excess winter cardiovascular mortality. However, the association with weather has always been investigated by considering the relationship with a single variable rather than considering the combination of ground weather variables characterizing a specific weather pattern (air mass (AM)). METHODS We retrospectively investigate in Florence (Italy) the relationship between BP and specific AMs in hypertensive subjects (n = 540) referred to our Hypertension Unit for 24-h ambulatory BP monitoring during the period of the year characterized by the highest weather variability (winter). Five different winter daily AMs were classified according to the combination of ground weather data (air temperature, cloud cover, relative humidity, atmospheric pressure, wind speed, and direction). RESULTS Multiple variable analysis selected the AM as a significant predictor of mean 24-h BP (P < 0.01 for diastolic BP (DBP) and P < 0.05 for systolic BP (SBP)), daytime DBP (P < 0.001) and nighttime BP (P < 0.01 for both SBP and DBP), with higher BP values observed in cyclonic (unstable, cloudy, and mild weather) than in anticyclonic (settled, cloudless, and cold weather) days. When the association with 2-day sequences of AMs was considered, an increase in ambulatory BP followed a sudden day-to-day change of weather pattern going from anticyclonic to cyclonic days. CONCLUSIONS The weather considered as a combination of different weather variables may affect BP. The forecast of a sudden change of AM could provide important information helpful for hypertensives during winter.
- Subjects :
- Adult
Male
Ambulatory blood pressure
Cyclonic
Blood Pressure
Wind speed
Animal science
Heart Rate
Heart rate
Internal Medicine
Medicine
Humans
Relative humidity
Weather
Air mass
Aged
Retrospective Studies
weather change
business.industry
Anticyclonic
Blood Pressure Monitoring, Ambulatory
Middle Aged
Circadian Rhythm
Blood pressure
Italy
Anticyclone
Ambulatory
Hypertension
Female
Ambulatory blood pressure monitoring
Seasons
business
air mass
Subjects
Details
- ISSN :
- 08957061
- Volume :
- 21
- Issue :
- 7
- Database :
- OpenAIRE
- Journal :
- American journal of hypertension
- Accession number :
- edsair.doi.dedup.....f84fe549184c855f7c849bd59e4752b1