Hot weather associated with increased stroke risk in older people

extreme heat
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Emergency visits for stroke are elevated after a heatwave, according to research presented today at ESC Asia, a scientific congress organized by the European Society of Cardiology (ESC), the Asian Pacific Society of Cardiology (APSC), and the Asean Federation of Cardiology (AFC).

"Climate change and are worldwide problems, and is a leading cause of death," said study author Dr. Ryohei Fujimoto of Tsuyama Central Hospital and Department of Epidemiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, Japan. "Our study indicates that may be more susceptible to stroke after exposure to hot weather. Preventative measures such as insulated housing and should be considered a public health priority to protect people from this debilitating and life-threatening disease."

There is little information on the effects of high temperatures on the risk of stroke. This study examined the association between heat exposure and emergency visits for stroke in older adults. The study included 3,367 residents of Okayama, a city in western Japan. Participants were aged 65 years or older and were transported to emergency hospitals between 2012 and 2019 for the onset of stroke during and several months after the rainy season.

The researchers obtained hourly data on , relative humidity, , and the average atmospheric concentration of particulate matter less than 2.5 μm in diameter (PM2.5) from the Okayama weather station, which is managed by the Japan Meteorological Agency and the Okayama Prefectural Government.

The association between temperature and stroke was analyzed during the rainy season, one month after, two months after, and three months after. A time-stratified case-crossover study design was used where for each participant, the researchers compared the temperature on the day of the week a stroke occurred (e.g., Monday) with the temperature on the same day of the week with no strokes (e.g., all remaining Mondays) within the same month. This avoided the potential confounding effects of individual characteristics, long-term time trends, seasonality, and day of the week.

The researchers found that the relationship between temperature and stroke was strongest one month after the rainy season. For each 1°C increase in temperature, there was a 35% greater risk of emergency visits for stroke after adjusting for , barometric pressure, and PM2.5 concentration. When each type of stroke was analyzed separately, each 1°C increase in temperature was associated with a 24% elevated likelihood of hemorrhagic stroke, 36% increased risk of ischemic stroke, and 56% raised risk of transient ischemic attack.

In a second analysis, the researchers evaluated whether there was a possible "effect modification" according to the rainy season. Effect modification means that the association between exposure (hot air temperature) and outcome (emergency visit for stroke) may be different depending on a third variable (during and after the rainy season). For this analysis, the reference period was the rainy season. Again, the relationship was strongest one month after the rainy season. Compared with the reference period, there was a 31% elevated likelihood of stroke for each 1°C rise in temperature.

Dr. Fujimoto explained, "The results of the second analysis suggest that environmental conditions immediately after the intensify the relationship between hot weather and stroke. In addition to high temperatures, this period is characterized by an increase in sunshine duration and less rain, which may explain the findings."

He concluded, "Our study suggests that older adults should try to keep cool during hot spells, for example by staying indoors during peak temperatures. Public health systems can help by providing cool spaces for members of the public to escape the heat during the hottest months of the year."

More information: Conference: … a-2022-with-apsc-afc

Citation: Hot weather associated with increased stroke risk in older people (2022, December 1) retrieved 16 July 2024 from
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