Key result
Cosmic ray intensity was significantly negatively correlated with human heart rate, demonstrating a regression coefficient of -0.025 during the ascending phase of solar cycle 24.
Why the study?
Many scientific investigations have focused on how space weather phenomena taking place near Earth may influence aspects of life and human health.
Do space weather phenomena (cosmic ray intensity and geomagnetic activity) affect heart rate in humans?
Observational (n=1,318)
Yes
Do space weather phenomena (cosmic ray intensity and geomagnetic activity) affect heart rate in humans?
Effect estimate: Regression coefficient -0.025 (95% CI -0.179, -0.025)
p-value: p=0.009
Variations in cosmic ray intensity and geomagnetic activity are statistically significantly associated with changes in heart rate.
No practice change warranted from this observational link; leaves open whether cosmic rays causally influence heart rate variability.
Many scientific investigations have focused on how space weather phenomena, taking place in the vicinity of the Earth, may influence different aspects of life on Earth and presumably human health itself. From 2005, the National and Kapodistrian University of Athens has established an important position in the field of these investigations by collaborating with various scientists and Institutes, both international and domestic, in different heliobiological projects. In this work, the Cosmic Ray Group of the National and Kapodistrian University of Athens has co-operated with the medical staff from different hospitals and clinics around the country so as to develop large records of medical data (heart rate) which covers a long time period. These data are analyzed in regard to physical activity, either on a daily basis or on different levels of geomagnetic disturbances and variations of the cosmic ray intensity using the ANalysis Of Variance (ANOVA) and the multiple linear regression analysis. Results suggest that space weather phenomena may be related to heart rate variability, i.e., heart rate is statistically significantly effected either by variations of cosmic rays intensity or geomagnetic activity.
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Papailiou et al. (2022) conducted an observational in Patients undergoing Holter ECG monitoring (n=1,318). Cosmic ray intensity and geomagnetic activity vs. Quiet periods / baseline activity was evaluated on Heart rate variation associated with cosmic ray intensity (Regression coefficient -0.025, 95% CI -0.179, -0.025, p=0.009). Cosmic ray intensity was significantly negatively correlated with human heart rate, demonstrating a regression coefficient of -0.025 during the ascending phase of solar cycle 24.
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