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Ambient temperature and activation of implantable cardioverter defibrillators
L McGuinn1, S Hajat, P Wilkinson
1Department of Social and Environmental Health Research, London School of Hygiene and Tropical Medicine, University of London, 15-17 Tavistock Place, London WC1H 9SH, UK. lmcguinn@live.unc.edu
Insights
Cold weather increases the risk of serious cardiac arrhythmias, particularly ventricular arrhythmias. Older adults over 65 are most vulnerable to these temperature-related cardiac events.
Area of Science:
- Cardiology
- Environmental Health
- Public Health
Background:
- The impact of ambient weather conditions on serious cardiac arrhythmias remains incompletely understood.
- Investigating environmental triggers for cardiac events is crucial for preventative strategies.
Purpose of the Study:
- To examine the association between daily outdoor temperature and the occurrence of cardiac arrhythmias.
- To identify specific temperature thresholds and patient demographics at higher risk.
Main Methods:
- A fixed stratum case-crossover study design was employed.
- Data from 5,038 implanted cardiac defibrillator (ICD) activations in London (1995-2003) were analyzed.
- Patient temperature exposure was linked to their residential postcode and nearest meteorological stations.
Main Results:
- A 1.2% increase in ventricular arrhythmia risk was observed for every 1°C decrease in ambient temperature, persisting up to 7 days.
- A significant risk increase of 11.2% per 1°C drop below 2°C was noted.
- Individuals aged over 65 years demonstrated the highest susceptibility to temperature-related arrhythmias.
Conclusions:
- There is an inverse relationship between ambient temperature and the risk of ventricular arrhythmias.
- Low temperatures, especially below 2°C, pose a significant risk, particularly for elderly patients.
- Findings suggest potential for risk reduction through behavioral modification to minimize cold exposure in vulnerable cardiac patients.
Abstract:
The degree to which weather influences the occurrence of serious cardiac arrhythmias is not fully understood. To investigate, we studied the timing of activation of implanted cardiac defibrillators (ICDs) in relation to daily outdoor temperatures using a fixed stratum case-crossover approach. All patients attending ICD clinics in London between 1995 and 2003 were recruited onto the study. Temperature exposure for each ICD patient was determined by linking each patient's postcode of residence to their nearest temperature monitoring station in London and the South of England. There were 5,038 activations during the study period. Graphical inspection of ICD activation against temperature suggested increased risk at lower but not higher temperatures. For every 1 °C decrease in ambient temperature, risk of ventricular arrhythmias up to 7 days later increased by 1.2 % (95 % CI -0.6 %, 2.9 %). In threshold models, risk of ventricular arrhythmias increased by 11.2 % (0.5 %, 23.1 %) for every 1° decrease in temperature below 2 °C. Patients over the age of 65 exhibited the highest risk. This large study suggests an inverse relationship between ambient outdoor temperature and risk of ventricular arrhythmias. The highest risk was found for patients over the age of 65. This provides evidence about a mechanism for some cases of low-temperature cardiac death, and suggests a possible strategy for reducing risk among selected cardiac patients by encouraging behaviour modification to minimise cold exposure.
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