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The influence of seasonality and weather changes on premature birth incidence
Daniel Muresan1, Adelina Staicu1, Gabriela Zaharie2
11 Obstetrics and Gynecology Department, Iuliu Hatieganu University of Medicine and Pharmacy Cluj-Napoca, Romania.
Insights
Weather variations, particularly temperature fluctuations, are linked to an increased incidence of preterm births. This study highlights the impact of atmospheric conditions on pregnancy outcomes, suggesting further research into meteorological influences.
Area of Science:
- Environmental Health
- Perinatology
- Meteorology
Background:
- Meteorological factors are known to affect general population health.
- Limited understanding exists regarding the influence of atmospheric conditions on human pregnancy and birth outcomes.
Purpose of the Study:
- To analyze the influence of atmospheric conditions on premature births.
- To investigate the relationship between weather variables and preterm birth incidence.
Main Methods:
- A study included 189 cases of premature births (24-37 weeks gestation).
- Weekly weather data (temperature, humidity, pressure, wind, precipitation) were collected.
- Pearson's correlation assessed relationships between weekly preterm birth incidence and meteorological factors.
Main Results:
- Approximately 7.7% of births were preterm; premature rupture of membranes was the main reason for hospitalization.
- A moderate positive correlation was found between weekly preterm birth incidence and average temperature (r=0.306, p=0.027).
- A moderate positive correlation was observed between weekly preterm birth incidence and temperature variation (r=0.307, p=0.007).
- No significant correlations were found with humidity, pressure, or wind speed variations.
Conclusions:
- Variations in specific weather factors, especially temperature fluctuations, can influence the incidence of premature births.
- Findings suggest the need for multicenter studies to explore adverse meteorological effects on pregnancy outcomes.
Background:
Although the effects of meteorological factors on the general population health are widely documented, little is known about their influence on human pregnancy and birth. The present study aims at analyzing the influence of the atmospheric conditions on premature births.
Method:
One hundred and eight nine cases of premature births were included in the study, with a gestational age between 24 to 37 weeks of amenorrhea. Cases with antepartum fetal death and those with uncertain gestational age have been excluded. Daily weather data were obtained using http://www.wunderground.com site. A Pearson's product-moment correlation was run to assess the relationship between weekly preterm birth incidence and the total number of premature births and the mean maximum and minimum temperature (Tmax, Tmin), maximum and minimum average humidity (Umax, Umin), maximum and minimum atmospheric pressure mean (P max, P min), average wind speed and average quantity precipitations, calculated for one calendar week.
Results:
Approximately 7.7% of all births during the study period occurred before 37 weeks of gestation, the main reason for hospitalization being premature rupture of membranes (45%). The analysis revealed a moderate positive correlation between weekly preterm birth incidence and the average temperature (r=0.306, n=52, p=0.027) and a moderate positive correlation between weekly preterm birth incidence and temperature variation (r=0.307, n=52, p=0.007). Our study found no significant statistic correlation between the humidity variation, pressure variation, and wind speed.
Conclusions:
The incidence of premature births can be influenced by variations of specific weather factors, especially during the weeks characterized by large fluctuations in temperature. The results obtained might inspire the construction of multicenter studies to investigate more thoroughly the adverse effects of some meteorological factors that can influence the outcomes of human pregnancy.
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