Literature DB >> 11590637

The applications of capture-recapture models to epidemiological data.

A Chao1, P K Tsay, S H Lin, W Y Shau, D Y Chao.   

Abstract

Capture-recapture methodology, originally developed for estimating demographic parameters of animal populations, has been applied to human populations. This tutorial reviews various closed capture-recapture models which are applicable to ascertainment data for estimating the size of a target population based on several incomplete lists of individuals. Most epidemiological approaches merging different lists and eliminating duplicate cases are likely to be biased downwards. That is, the final merged list misses those who are in the population but were not ascertained in any of the lists. If there are no matching errors, then the duplicate information collected from a capture-recapture experiment can be used to estimate the number of missed under proper assumptions. Three approaches and their associated estimation procedures are introduced: ecological models; log-linear models, and the sample coverage approach. Each approach has its unique way of incorporating two types of source dependencies: local (list) dependence and dependence due to heterogeneity. An interactive program, CARE (for capture-recapture) developed by the authors is demonstrated using four real data sets. One set of data deals with infection by the acute hepatitis A virus in an outbreak in Taiwan; the other three sets are ascertainment data on diabetes, spina bifida and infants' congenital anomaly discussed in the literature. These data sets provide examples to show the usefulness of the capture-recapture method in correcting for under-ascertainment. The limitations of the methodology and some cautionary remarks are also discussed. Copyright 2001 John Wiley & Sons, Ltd.

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Year:  2001        PMID: 11590637     DOI: 10.1002/sim.996

Source DB:  PubMed          Journal:  Stat Med        ISSN: 0277-6715            Impact factor:   2.373


  65 in total

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3.  Socioeconomic conditions and type 1 diabetes in childhood in North Rhine-Westphalia, Germany.

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4.  Estimating infectious diseases incidence: validity of capture-recapture analysis and truncated models for incomplete count data.

Authors:  N A H van Hest; A D Grant; F Smit; A Story; J H Richardus
Journal:  Epidemiol Infect       Date:  2007-03-12       Impact factor: 2.451

5.  Incidence and completeness of notification of Legionnaires' disease in The Netherlands: covariate capture-recapture analysis acknowledging regional differences.

Authors:  N A H Van Hest; C J P A Hoebe; J W Den Boer; J K Vermunt; E P F Ijzerman; W G Boersma; J H Richardus
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6.  Estimating the World Trade Center tower population on September 11, 2001: a capture-recapture approach.

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Authors:  Chelsea G Major; Emilio Dirlikov; Nicole A Medina; Roberta Lugo-Robles; Desiree Matos; Jorge Muñoz-Jordán; Candimar Colón-Sánchez; Myriam García-Negrón; Marangely Olivero-Segarra; Graciela Malavé-González; Dana L Thomas; Carlos A Luciano; Stephen H Waterman; James Sejvar; Tyler M Sharp; Brenda Rivera-García
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8.  Estimation of the population size of Canadian commercial poultry farms by log-linear capture-recapture analysis.

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Journal:  Can J Vet Res       Date:  2014-10       Impact factor: 1.310

9.  Approaches to Recruiting 'Hard-To-Reach' Populations into Re-search: A Review of the Literature.

Authors:  Abdolreza Shaghaghi; Raj S Bhopal; Aziz Sheikh
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10.  Completeness of hepatitis, brucellosis, syphilis, measles and HIV/AIDS surveillance in Izmir, Turkey.

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