PubMed Health⌕ Search

PubMed · 43526

Epidemiology for geochemists.

Abstract

Epidemiologists study the distribution and the determinants of disease in human populations. Geochemists may be more concerned to find diseases to fit the observed patterns of geochemistry. This paper is concerned with the application of epidemiological techniques to the interrelations between health, disease and geochemistry, with particular reference to the hazards of man-made chemicals in the environment. Descriptive studies of disease in terms of person, place and time allow for crude comparison with the results of geochemical mapping and for the development of hypotheses. Analytical studies allow for the exploration of these hypotheses but demand careful sampling techniques and vigorous quality control. The epidemiological approach should be directed towards the identification of national/regional problems and of high-risk groups, the definition of priorities and the opportunities for preventative measures. The problems and possibilities for epidemiological research are illustrated from recent and current studies.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

A G Shaper. 1979-12-11. Epidemiology for geochemists.. https://doi.org/10.1098/rstb.1979.0095

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

The glomerular filtration rate in an apparently healthy population and its relation with cardiovascular mortality during 10 years.

AIMS: Moderate-to-severe chronic renal failure is an established risk factor for cardiovascular disease and mortality. However, most studies have been performed in selected populations and the impact of very small decrements of renal function on long-term cardiac morbidity and mortality has not yet been established. Also, the cut-off level of glomerular filtration rate (GFR) from which cardiovascular risk increases has not exactly been established. This study wants to address these questions. METHODS AND RESULTS: Ten year follow-up of a representative population-based cohort comprised 8913 randomly selected, apparently healthy participants. Participants were randomly drawn from Belgian voting lists. Cardiovascular risk factors were noted. Serum creatinine values were corrected to isotope dilution mass spectrometry standard, and GFR was calculated using the recently modified 'modification of diet in renal disease' equation. Participants were followed for 10 years, and cause-specific death was registered by analysis of death certificates. The probability to die from all causes or from cardiovascular causes during the 10 year follow-up period increased in each quartile of GFR, even after correction for different other comorbid conditions. CONCLUSION: Even mild renal failure is an independent risk factor for cardiovascular mortality within 10 years in an apparently healthy unselected population. This detrimental effect starts already at a relatively high GFR of 90 mL/min/1.73 m2 and remains present after correction for other established cardiovascular risk factors.

Cardiovascular Diseases↗

Quality physical intervention activity for persons with Down syndrome.

Persons with Down syndrome (DS) are at risk for a life of inactivity that can result in a multitude of medical problems including heart and vascular diseases. This review presents findings regarding the physical status of individuals with DS, as well as proper interventions found to improve the physical fitness and general health for this population. This review was written with the intent to suggest practical directions in planning and implementing quality physical intervention programs for this population.

Cardiovascular Diseases↗