Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

Calculating Deaths Attributable to Obesity

Bibliographic Data

ID11029467
AuthorsFrank B Hu (0000-0002-8233-6274, Frank B. Hu, Walter C. Willett, and Meir J. Stampfer are with the Departments of Nutrition and Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of Medicine, Harvard Medical School and Brigham and Women’s Hospital, Boston, Mass. Donna Spiegelman is with the Departments of Epidemiology and Statistics, Harvard School of Public Health. Graham A. Colditz is with the Department of Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of...), Walter C Willett (0000-0003-1458-7597, Frank B. Hu, Walter C. Willett, and Meir J. Stampfer are with the Departments of Nutrition and Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of Medicine, Harvard Medical School and Brigham and Women’s Hospital, Boston, Mass. Donna Spiegelman is with the Departments of Epidemiology and Statistics, Harvard School of Public Health. Graham A. Colditz is with the Department of Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of...), Meir J Stampfer (0000-0001-8865-935X, Frank B. Hu, Walter C. Willett, and Meir J. Stampfer are with the Departments of Nutrition and Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of Medicine, Harvard Medical School and Brigham and Women’s Hospital, Boston, Mass. Donna Spiegelman is with the Departments of Epidemiology and Statistics, Harvard School of Public Health. Graham A. Colditz is with the Department of Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of...), Donna Spiegelman (0000-0003-4006-4650, Frank B. Hu, Walter C. Willett, and Meir J. Stampfer are with the Departments of Nutrition and Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of Medicine, Harvard Medical School and Brigham and Women’s Hospital, Boston, Mass. Donna Spiegelman is with the Departments of Epidemiology and Statistics, Harvard School of Public Health. Graham A. Colditz is with the Department of Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of...), Graham A Colditz (0000-0002-7307-0291, Frank B. Hu, Walter C. Willett, and Meir J. Stampfer are with the Departments of Nutrition and Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of Medicine, Harvard Medical School and Brigham and Women’s Hospital, Boston, Mass. Donna Spiegelman is with the Departments of Epidemiology and Statistics, Harvard School of Public Health. Graham A. Colditz is with the Department of Epidemiology, Harvard School of Public Health, and the Channing Laboratory, Department of...)
Year2005
Volume95
Issue6
Pages932-932
Publication date2005-06-01
Peer ReviewedYes
Open AccessNo
TypeARTICLE
VenueAmerican Journal of Public Health (JOURNAL)
Journal identifiersISSN: 0090-0036 • E-ISSN: 1541-0048
PublisherAmerican Public Health Association (PUBLISHER • US)
DOI10.2105/ajph.2005.062836
PMID15914810
PMCIDPMC1449281
OpenAlexW2004198307
LanguageEN
Citations received8
References cited3

In their hypothetical examples, Flegal et al.1,2 applied the weighted-sum method3 to calculate deaths attributable to obesity. Our main concern about these calculations is that they did not take into account the chronic long-term effects of obesity or its dynamic nature. One obvious logical problem is that, although most people die after 75 years of age, it is cumulative obesity exposure rather than weight at a specific older age that contributes the most to the higher mortality rates associated with obesity. Obesity is a chronic condition, and it takes years for obese individuals to develop conditions that are major causes of death, such as cardiovascular disease and cancer. Moreover, even with later weight loss, not all of the adverse effects can be reversed. Thus, the relative risks calculated from the oldest age groups do not reflect the true long-term impact of obesity on mortality. As a simple example, suppose someone was obese at age 45, had a heart attack at age 65, then lost a lot of weight and died at age 70. Most likely, obesity at age 45 rather than body mass index (BMI) at age 70 contributed to this person’s death. The essence of the population-attributable risk is to determine the number of premature deaths that could be prevented if obesity were avoided; and in the previous example, avoiding obesity at age 45 probably would have prevented the premature death at age 70. This scenario is analogous to the relationship between smoking and mortality; cumulative smoking history is more likely a better predictor of cancer and all-cause mortality than a snapshot of smoking status at a single older age (say, 75 years). Flegal et al. argued that exclusion of participants with cardiovascular disease and cancer at baseline would make the estimates of attributable deaths misleading because the resulting cohorts would not reflect the US population. However, these exclusions are necessary to obtain valid relative risks associated with obesity, because these conditions can lead to artifacts by reverse causation (i.e., a low BMI is sometimes the result, rather than the cause, of underlying illness). Similarly, in a study on cigarette smoking, if patients with cardiovascular disease and cancer at baseline were included, the effects of smoking in the general population would be seriously underestimated, as many patients would have stopped smoking because of their illness but still be at higher risk for death

Body mass index · Environmental health · Obesity · Obesity paradox · Overweight · Population · Demography · Insurance, Mortality, Demography, Risk Management · Internal Medicine · Medicine · Gerontology

  • Obesidad e hipertensión en los adultos mayores uruguayos

    Open Access•Pagano Juan Pablo, M Rossi et al.•Revista Desarrollo y Sociedad•2009

  • Estimating Deaths Attributable to Obesity in the United States

    Katherine M Flegal, David F Williamson et al.•American Journal of Public Health•2004

  • Cause-Specific Excess Deaths Associated With Underweight, Overweight, and Obesity

    Katherine M Flegal, Barry I Graubard et al.•JAMA•2007

  • Are passive smoking, air pollution and obesity a greater mortality risk than major radiation incidents

    Open Access•J T Smith•BMC Public Health•2007

  • BMI, auto use, and the urban environment in San Francisco

    Open Access•Rocco Pendola, Sheldon Gen•Health & Place•2006

  • BMI and all-cause mortality among middle-aged and older adults in Taiwan

    Open Access•Wei-Sheng Chung, Wei‐Sheng Chung et al.•Public Health Nutrition•2015

  • Body Mass Index Categories and Mortality Risk in US Adults

    Luisa N Borrell, Lalitha Samuel•American Journal of Public Health•2014

  • A multistate model to project elderly disability in case of limited data

    Open Access•Nicole L Van Der Gaag, Nicole Van Der Gaag et al.•Demographic Research•2015

  • Estimating Deaths Attributable to Obesity in the United States

    Katherine M Flegal, David F Williamson et al.•American Journal of Public Health•2004

Unique citing works8
Citations per year0,36
Citation span2004 - 2015 (12)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 6

Tools

Open DOISci-HubOpen Access
Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae