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Latent-class Methods to Evaluate Diagnostics Tests for Echinococcus Infections in Dogs

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Date 2013 Mar 6
PMID 23459420
Citations 11
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Abstract

Background: The diagnosis of canine echinococcosis can be a challenge in surveillance studies because there is no perfect gold standard that can be used routinely. However, unknown test specificities and sensitivities can be overcome using latent-class analysis with appropriate data.

Methodology: We utilised a set of faecal and purge samples used previously to explore the epidemiology of canine echinococcosis on the Tibetan plateau. Previously only the purge results were reported and analysed in a largely deterministic way. In the present study, additional diagnostic tests of copro-PCR and copro-antigen ELISA were undertaken on the faecal samples. This enabled a Bayesian analysis in a latent-class model to examine the diagnostic performance of a genus specific copro-antigen ELISA, species-specific copro-PCR and arecoline purgation. Potential covariates including co-infection with Taenia, age and sex of the dog were also explored. The dependence structure of these diagnostic tests could also be analysed.

Principle Findings: The most parsimonious result, indicated by deviance-information criteria, suggested that co-infection with Taenia spp. was a significant covariate with the Echinococcus infection. The copro-PCRs had estimated sensitivities of 89% and 84% respectively for the diagnoses of Echinococcus multilocularis and E. granulosus. The specificities for the copro-PCR were estimated at 93 and 83% respectively. Copro-antigen ELISA had sensitivities of 55 and 57% for the diagnosis of E. multilocularis and E. granulosus and specificities of 71 and 69% respectively. Arecoline purgation with an assumed specificity of 100% had estimated sensitivities of 76% and 85% respectively.

Significance: This study also shows that incorporating diagnostic uncertainty, in other words assuming no perfect gold standard, and including potential covariates like sex or Taenia co-infection into the epidemiological analysis may give different results than if the diagnosis of infection status is assumed to be deterministic and this approach should therefore be used whenever possible.

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References
1.
Torgerson P, Deplazes P . Echinococcosis: diagnosis and diagnostic interpretation in population studies. Trends Parasitol. 2009; 25(4):164-70. DOI: 10.1016/j.pt.2008.12.008. View

2.
Budke C, Jiamin Q, Craig P, Torgerson P . Modeling the transmission of Echinococcus granulosus and Echinococcus multilocularis in dogs for a high endemic region of the Tibetan plateau. Int J Parasitol. 2005; 35(2):163-70. DOI: 10.1016/j.ijpara.2004.10.026. View

3.
Gemmell M . Australasian contributions to an understanding of the epidemiology and control of hydatid disease caused by Echinococcus granulosus--past, present and future. Int J Parasitol. 1990; 20(4):431-56. DOI: 10.1016/0020-7519(90)90192-p. View

4.
Gardner I, Greiner M, Dubey J . Statistical evaluation of test accuracy studies for Toxoplasma gondii in food animal intermediate hosts. Zoonoses Public Health. 2009; 57(1):82-94. DOI: 10.1111/j.1863-2378.2009.01281.x. View

5.
Hui S, Walter S . Estimating the error rates of diagnostic tests. Biometrics. 1980; 36(1):167-71. View