Cool but dangerous: How climate change is increasing the risk of airborne infections

Author:

Nardell Edward1ORCID,Lederer Philip2,Mishra Hridesh3,Nathavitharana Ruvandhi4,Theron Grant3

Affiliation:

1. Division of Global Health Equity Brigham & Women's Hospital Boston MA USA

2. Section of Infectious Diseases Boston Medical Center Boston MA USA

3. Division of Molecular Biology and Human Genetics Faculty of Medicine and Health Sciences DST‐NRF Centre of Excellence for Biomedical Tuberculosis Research, and South African Medical Research Council Centre for Tuberculosis Research Stellenbosch University Cape Town South Africa

4. Division of Infectious Diseases Beth Israel Deaconess Medical Center Boston MA USA

Funder

South African Medical Research Council

Publisher

Wiley

Subject

Public Health, Environmental and Occupational Health,Building and Construction,Environmental Engineering

Reference10 articles.

1. Contribution of air conditioning adoption to future energy use under global warming

2. WHO.GlobaL Tuberculosis Report 2018.Geneva:World Health Oganization;2018.

3. Risk of indoor airborne infection transmission estimated from carbon dioxide concentration

4. Airborne Infection: Theoretical Limits of Protection Achievable by Building Ventilation

5. GelmanovaIY KeshavejeeS GolubchikovaVT et al.Non‐adherence default and the acquisition of multidrug resistance in a tuberculosis treatment program in Tomsk Siberia. (submitted for publication ‐ to be resolved or listed as personal communication before publication).

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