a heuristic solution of the identifiability problem of the age-period-cohort analysis of cancer occurrence lung cancer example可识别性问题的启发式解决age-period-cohort分析癌症发生肺癌的例子.pdfVIP

a heuristic solution of the identifiability problem of the age-period-cohort analysis of cancer occurrence lung cancer example可识别性问题的启发式解决age-period-cohort分析癌症发生肺癌的例子.pdf

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a heuristic solution of the identifiability problem of the age-period-cohort analysis of cancer occurrence lung cancer example可识别性问题的启发式解决age-period-cohort分析癌症发生肺癌的例子

A Heuristic Solution of the Identifiability Problem of the Age-Period-Cohort Analysis of Cancer Occurrence: Lung Cancer Example Tengiz Mdzinarishvili, Simon Sherman* Eppley Institute, University of Nebraska Medical Center, Omaha, Nebraska, United States of America Abstract Background: The Age–Period–Cohort (APC) analysis is aimed at estimating the following effects on disease incidence: (i) the age of the subject at the time of disease diagnosis; (ii) the time period, when the disease occurred; and (iii) the date of birth of the subject. These effects can help in evaluating the biological events leading to the disease, in estimating the influence of distinct risk factors on disease occurrence, and in the development of new strategies for disease prevention and treatment. Methodology/Principal Findings: We developed a novel approach for estimating the APC effects on disease incidence rates in the frame of the Log-Linear Age-Period-Cohort (LLAPC) model. Since the APC effects are linearly interdependent and cannot be uniquely estimated, solving this identifiability problem requires setting four redundant parameters within a set of unknown parameters. By setting three parameters (one of the time-period and the birth-cohort effects and the corresponding age effect) to zero, we reduced this problem to the problem of determining one redundant parameter and, used as such, the effect of the time-period adjacent to the anchored time period. By varying this identification parameter, a family of estimates of the APC effects can be obtained. Using a heuristic assumption that the differences between the adjacent birth-cohort effects are small, we developed a numerical method for determining the optimal value of the identification parameter, by which a unique set of all APC effects is

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