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An evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying

BACKGROUND: Prospective malaria public health interventions are initially tested for entomological impact using standardised experimental hut trials. In some cases, data are collated as aggregated counts of potential outcomes from mosquito feeding attempts given the presence of an insecticidal inter...

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Autores principales: Green, Nathan, Agossa, Fiacre, Yovogan, Boulais, Oxborough, Richard, Kitau, Jovin, Müller, Pie, Constant, Edi, Rowland, Mark, Tchacaya, Emile F. S., Benjamin, Koudou G., Churcher, Thomas S., Betancourt, Michael, Sherrard-Smith, Ellie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8947499/
https://www.ncbi.nlm.nih.gov/pubmed/35324929
http://dx.doi.org/10.1371/journal.pone.0263446
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author Green, Nathan
Agossa, Fiacre
Yovogan, Boulais
Oxborough, Richard
Kitau, Jovin
Müller, Pie
Constant, Edi
Rowland, Mark
Tchacaya, Emile F. S.
Benjamin, Koudou G.
Churcher, Thomas S.
Betancourt, Michael
Sherrard-Smith, Ellie
author_facet Green, Nathan
Agossa, Fiacre
Yovogan, Boulais
Oxborough, Richard
Kitau, Jovin
Müller, Pie
Constant, Edi
Rowland, Mark
Tchacaya, Emile F. S.
Benjamin, Koudou G.
Churcher, Thomas S.
Betancourt, Michael
Sherrard-Smith, Ellie
author_sort Green, Nathan
collection PubMed
description BACKGROUND: Prospective malaria public health interventions are initially tested for entomological impact using standardised experimental hut trials. In some cases, data are collated as aggregated counts of potential outcomes from mosquito feeding attempts given the presence of an insecticidal intervention. Comprehensive data i.e. full breakdowns of probable outcomes of mosquito feeding attempts, are more rarely available. Bayesian evidence synthesis is a framework that explicitly combines data sources to enable the joint estimation of parameters and their uncertainties. The aggregated and comprehensive data can be combined using an evidence synthesis approach to enhance our inference about the potential impact of vector control products across different settings over time. METHODS: Aggregated and comprehensive data from a meta-analysis of the impact of Pirimiphos-methyl, an indoor residual spray (IRS) product active ingredient, used on wall surfaces to kill mosquitoes and reduce malaria transmission, were analysed using a series of statistical models to understand the benefits and limitations of each. RESULTS: Many more data are available in aggregated format (N = 23 datasets, 4 studies) relative to comprehensive format (N = 2 datasets, 1 study). The evidence synthesis model had the smallest uncertainty at predicting the probability of mosquitoes dying or surviving and blood-feeding. Generating odds ratios from the correlated Bernoulli random sample indicates that when mortality and blood-feeding are positively correlated, as exhibited in our data, the number of successfully fed mosquitoes will be under-estimated. Analysis of either dataset alone is problematic because aggregated data require an assumption of independence and there are few and variable data in the comprehensive format. CONCLUSIONS: We developed an approach to combine sources from trials to maximise the inference that can be made from such data and that is applicable to other systems. Bayesian evidence synthesis enables inference from multiple datasets simultaneously to give a more informative result and highlight conflicts between sources. Advantages and limitations of these models are discussed.
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spelling pubmed-89474992022-03-25 An evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying Green, Nathan Agossa, Fiacre Yovogan, Boulais Oxborough, Richard Kitau, Jovin Müller, Pie Constant, Edi Rowland, Mark Tchacaya, Emile F. S. Benjamin, Koudou G. Churcher, Thomas S. Betancourt, Michael Sherrard-Smith, Ellie PLoS One Research Article BACKGROUND: Prospective malaria public health interventions are initially tested for entomological impact using standardised experimental hut trials. In some cases, data are collated as aggregated counts of potential outcomes from mosquito feeding attempts given the presence of an insecticidal intervention. Comprehensive data i.e. full breakdowns of probable outcomes of mosquito feeding attempts, are more rarely available. Bayesian evidence synthesis is a framework that explicitly combines data sources to enable the joint estimation of parameters and their uncertainties. The aggregated and comprehensive data can be combined using an evidence synthesis approach to enhance our inference about the potential impact of vector control products across different settings over time. METHODS: Aggregated and comprehensive data from a meta-analysis of the impact of Pirimiphos-methyl, an indoor residual spray (IRS) product active ingredient, used on wall surfaces to kill mosquitoes and reduce malaria transmission, were analysed using a series of statistical models to understand the benefits and limitations of each. RESULTS: Many more data are available in aggregated format (N = 23 datasets, 4 studies) relative to comprehensive format (N = 2 datasets, 1 study). The evidence synthesis model had the smallest uncertainty at predicting the probability of mosquitoes dying or surviving and blood-feeding. Generating odds ratios from the correlated Bernoulli random sample indicates that when mortality and blood-feeding are positively correlated, as exhibited in our data, the number of successfully fed mosquitoes will be under-estimated. Analysis of either dataset alone is problematic because aggregated data require an assumption of independence and there are few and variable data in the comprehensive format. CONCLUSIONS: We developed an approach to combine sources from trials to maximise the inference that can be made from such data and that is applicable to other systems. Bayesian evidence synthesis enables inference from multiple datasets simultaneously to give a more informative result and highlight conflicts between sources. Advantages and limitations of these models are discussed. Public Library of Science 2022-03-24 /pmc/articles/PMC8947499/ /pubmed/35324929 http://dx.doi.org/10.1371/journal.pone.0263446 Text en © 2022 Green et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Green, Nathan
Agossa, Fiacre
Yovogan, Boulais
Oxborough, Richard
Kitau, Jovin
Müller, Pie
Constant, Edi
Rowland, Mark
Tchacaya, Emile F. S.
Benjamin, Koudou G.
Churcher, Thomas S.
Betancourt, Michael
Sherrard-Smith, Ellie
An evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying
title An evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying
title_full An evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying
title_fullStr An evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying
title_full_unstemmed An evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying
title_short An evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying
title_sort evidence synthesis approach for combining different data sources illustrated using entomological efficacy of insecticides for indoor residual spraying
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8947499/
https://www.ncbi.nlm.nih.gov/pubmed/35324929
http://dx.doi.org/10.1371/journal.pone.0263446
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