Saltar al contenido principal
General Health

High-Throughput Geocoding to Assess Short-Term Air Pollution in Correlation With Mortality in a French Cancer Patient Cohort

Air pollution significantly affects human health and mortality, including cancer-related deaths. However, methodological approaches and spatial precision often vary across studies. Implementing geomatic tools to investigate mortality in vulnerable populations such as cancer patie

EC
EuroClinics Editorial 9 July 2026
2 min read 316 words
Air pollution significantly affects human health and mortality, including cancer-related deaths. However, methodological approaches and spatial precision often vary across studies. Implementing geomatic tools to investigate mortality in vulnerable populations such as cancer patients may enhance understanding of environmental impacts. This study aimed to assess the relationship between short-term air pollution exposure and mortality among cancer patients in France. A retrospective cohort of 44,268 consecutive cancer patients (2017-2020) was analyzed using a geomatic framework at fine spatial granularity. Air quality data (PM(2.5), PM(10), NO(2), O(3), temperature) were linked to each patient. Principal component analysis (PCA) identified exposure groups, and a random forest algorithm was applied to predict mortality. Overall, 9% of patients died during follow-up. Four clusters of patients with distinct air quality profiles were identified. Clusters with the highest particulate matter levels (PM(2.5), PM(10), NO(2)) showed increased mortality (12%-13%), whereas the cluster with the lowest pollution showed reduced mortality (8%) (chi-square test, p < 0.001). The prediction algorithm achieved a recall of 80%. The main predictors of death included higher temperature and elevated PM(2.5) within the previous 31 days, as well as older age, male sex, and thoracic cancer. Short-term exposure to degraded air quality, captured at an infra-communal scale, is associated with excess mortality among cancer patients. The identification of a 31-day lag window for predictive algorithm highlights opportunities for targeted prevention and timely public health interventions.

Auteur(s) : Pokam Loice, Bocquet Joséphine, Hégarat Nadia, Perlbarg-Samson Julie, Balezeau Thomas, Milder Maud, Rance Bastien, Countouris Hector, Guerin Julien, Gilles Flavien, Gaudart Jean, Girard Nicolas, Basse Clémence

Année de publication : 2026

Pages : Online ahead of print

Site web de l'éditeur

En relation avec

Nos dernières actualités

actualité

10 juillet 2026

Se baigner en toute sécurité en adoptant les bons gestes

actualité

9 juillet 2026

Santé publique France publie son Rapport annuel 2025 : 10 ans d’engagement...

actualité

3 juillet 2026

Point de situation sur la mortalité toutes causes confondues sur la période...

EC

EuroClinics Editorial

Patient-facing healthcare guidance

Our editorial team distils the latest from European medical authorities (WHO Europe, ECDC, EMA, NHS, AEMPS, HAS) into plain-language guides for patients. Every article is reviewed against authoritative sources.

🏥

Need general health in Europe?

Browse verified clinics with transparent pricing and real reviews across 30+ countries.

Find a clinic →
Source. Santé publique France — Santé publique France, sous licence ouverte 2.0
Medical disclaimer. Articles are general information aggregated from third-party medical sources. They are NOT a substitute for in-person diagnosis or treatment. For personal medical guidance, consult a verified clinician or call your local emergency line (112 in the EU).