Models for temporal variation in cancer rates. I: Age–period and age–cohort models
- 1 June 1987
- journal article
- research article
- Published by Wiley in Statistics in Medicine
- Vol. 6 (4) , 449-467
- https://doi.org/10.1002/sim.4780060405
Abstract
A main concern of descriptive epidemiologists is the presentation and interpretation of temporal variations in cancer rates. In its simplest form, this problem is that of the analysis of a set of rates arranged in a two‐way table by age group and calendar period. We review the modern approach to the analysis of such data which justifies traditional methods of age standardization in terms of the multiplicative risk model. We discuss the use of this model when the temporal variations are due to purely secular (period) influences and when they are attributable to generational (cohort) influences. Finally we demonstrate the serious difficulties which attend the interpretation of regular trends. The methods described are illustrated by examples for incidence rates of bladder cancer in Birmingham, U.K., mortality from bladder cancer in Italy, and mortality from lung cancer in Belgium.Keywords
This publication has 16 references indexed in Scilit:
- Models for temporal variation in cancer rates. II: Age–period–cohort modelsStatistics in Medicine, 1987
- Extra-Poisson Variation in Log-Linear ModelsJournal of the Royal Statistical Society Series C: Applied Statistics, 1984
- Multiplicative Models and Cohort AnalysisJournal of the American Statistical Association, 1983
- Age, period and cohort models applied to cancer mortality ratesStatistics in Medicine, 1982
- Cohort mortality and prostate cancerJournal of Biosocial Science, 1980
- The redundant factor method and bladder cancer mortality.Journal of Epidemiology and Community Health, 1978
- Indirect standardization and multiplicative models for rates, with reference to the age adjustment of cancer incidence and relative frequency dataJournal of Chronic Diseases, 1975
- Generalized Linear ModelsJournal of the Royal Statistical Society. Series A (General), 1972
- Computation of Indirect-Adjusted Rates in the Presence of ConfoundingBiometrics, 1968
- Occupational mortality indicesPopulation Studies, 1962