HistoricEpi · Quantiative Study of Major Historic Epidemics and Transitions to longer, healthier lives
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2015-10-01 → 2017-09-30
- EU contribution
- €212,195
- Participants
- 1
- Scheme
- MSCA-IF-EF-RI
Lines connect the coordinator with its partners.
Results in brief
Quantiative Study of Major Historic Epidemics and Transitions to longer, healthier lives
Just 150 years ago, one in five Europeans died in infancy, life expectancy was ~40 years, and infectiosu diseases were the leading causes of death. But during 1880-1910 life expectancy rose dramatically as infectious disease mortality plummeted. This “2nd epidemiological transition,” occurred well before antibiotics and most vaccines. Many factors have been proposed to explain it, including better nutrition, hygiene, sanitation, and the emergence of social support systems. Although medical historians have made great strides, little had been done to quantitatively study historical data using modern mathematical/statistical tools. As a MC professor, I undertook just that task, taking advantage of uniquely detailed Danish health data and found that the path to longevity went through broad hygiene measures that reduced childhood infectious diseases mortality. Understanding what factors drove this phenomenon will offer helpful lessons to contemporary efforts to combat these “ancient disease” outbreaks that continue to occur following disasters and in low-income settings globally. I also studied the most serious “killer” epidemic diseases in the pre-vaccination period, including cholera, pandemic influenza. The work involved finding, digitalizing historical epidemiological data and will be used to map the phenomenon of infectious disease mortality decline. The main results of the completed or nearly completed work are as follows:
Data: CORDIS, © European Union
Project objective
Only 150 years ago, one in five Europeans died in infancy, life expectancy was 40 years, and the leading causes of death were infectious diseases: tuberculosis, smallpox, measles, pertussis, diphtheria, cholera, typhoid fever, scarlet fever. But in just a few decades beginning about 1880, life expectancy rose dramatically as infectious disease mortality plummeted. This “2nd epidemiologic transition”, in which chronic diseases began replacing infections as leading causes of death, occurred well in advance of antibiotics and most vaccines. Many factors have been proposed to explain it, including improved nutrition, sanitation, clean drinking water, better housing and the emergence of social support systems.Little has been done, however, to systematically rescue and quantitatively study historic health data and rigorously investigate the epidemiologic transition. I lay out here an ambitious, novel, interdisciplinary and feasible proposal to do just that. In the process, I will broaden my research scope from statistical modeling of historic pandemic influenza to all historic infections, understand the historical context in which the transition occurred, and master new concepts in dynamic disease modeling. Danish historic medical data are uniquely detailed and reach far back in time, and are uniquely suited for quantitative studies of long time series of morbidity and mortality, with the promise to further illuminate the epidemiology of important diseases including smallpox, cholera, and measles. After 25 years abroad as a senior researcher at the National Institutes of Health and Professor of Global Health in the U.S., I now wish to return to my native Denmark. I had the honor this year to be elected to the Royal Danish Academy of Sciences and Letters, and receive funding to be a visiting professor at the University of Copenhagen, and trust this signals the beginning of my successful re-integration to European academia.
Original text from CORDIS.
Participants
- KOBENHAVNS UNIVERSITET · KOBENHAVNCoordinatorDenmark
Links
Data: CORDIS, © European Union
