Literature DB >> 12018004

A method for spatial analysis of risk in a population-based case-control study.

Verónica Vieira1, Thomas Webster, Ann Aschengrau, David Ozonoff.   

Abstract

Spatial distributions of disease occurrence and risk have traditionally served as a tool for identifying exposures of public health concern. Current software for manipulating geographic data (GIS) now allows many kinds of analyses not feasible before. This paper presents a method for producing a "picture" of disease risks based on residential history data from a population based case-control study. We illustrate the method using geographically coded data on individual-level risk factors, such as age and smoking, from a cancer study of the Upper Cape Cod region of Massachusetts for 1983-1986. Our results show the association between lung cancer and residential location as an indicator of exposure. Crude and adjusted odds ratios were estimated by adaptive rate stabilization and mapped using kriging as an interpolation method to examine the risk of lung cancer in the region. The crude and adjusted surfaces for various smoothing parameters were compared to identify areas of increased lung cancer not explained by standard risk factors. Such spatial patterns of disease risk may provide clues to exposures of importance or confirm associations with previously suspected exposures.

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Mesh:

Year:  2002        PMID: 12018004     DOI: 10.1078/1438-4639-00136

Source DB:  PubMed          Journal:  Int J Hyg Environ Health        ISSN: 1438-4639            Impact factor:   5.840


  12 in total

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2.  Methods for retrospective geocoding in population studies: the Jackson Heart Study.

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3.  Spatial variation in mortality risk for hematological malignancies near a petrochemical refinery: A population-based case-control study.

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4.  Combining area-based and individual-level data in the geostatistical mapping of late-stage cancer incidence.

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Journal:  Spat Spatiotemporal Epidemiol       Date:  2009 Oct-Dec

5.  Incidence of oral cancer in relation to nickel and arsenic concentrations in farm soils of patients' residential areas in Taiwan.

Authors:  Che-Chun Su; Yo-Yu Lin; Tsun-Kuo Chang; Chi-Ting Chiang; Jian-An Chung; Yun-Ying Hsu; Ie-Bin Lian
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6.  Cluster analysis of social and environment inequalities of infant mortality. A spatial study in small areas revealed by local disease mapping in France.

Authors:  Cindy M Padilla; Severine Deguen; Benoit Lalloue; Olivier Blanchard; Charles Beaugard; Florence Troude; Denis Zmirou Navier; Verónica M Vieira
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7.  Bayesian importance parameter modeling of misaligned predictors: soil metal measures related to residential history and intellectual disability in children.

Authors:  Georgiana Onicescu; Andrew B Lawson; Suzanne McDermott; C Marjorie Aelion; Bo Cai
Journal:  Environ Sci Pollut Res Int       Date:  2014-06-03       Impact factor: 4.223

8.  Method for mapping population-based case-control studies: an application using generalized additive models.

Authors:  Thomas Webster; Verónica Vieira; Janice Weinberg; Ann Aschengrau
Journal:  Int J Health Geogr       Date:  2006-06-09       Impact factor: 3.918

9.  Global, local and focused geographic clustering for case-control data with residential histories.

Authors:  Geoffrey M Jacquez; Andy Kaufmann; Jaymie Meliker; Pierre Goovaerts; Gillian AvRuskin; Jerome Nriagu
Journal:  Environ Health       Date:  2005-03-22       Impact factor: 5.984

10.  Geo-relationship between cancer cases and the environment by GIS: a case study of Trabzon in Turkey.

Authors:  Tahsin Yomralioglu; Ebru H Colak; Arif C Aydinoglu
Journal:  Int J Environ Res Public Health       Date:  2009-12-11       Impact factor: 3.390

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