Space-time clustering of childhood malaria at the household level: a dynamic cohort in a Mali village
Open Access
- 21 November 2006
- journal article
- research article
- Published by Springer Nature in BMC Public Health
- Vol. 6 (1) , 1-13
- https://doi.org/10.1186/1471-2458-6-286
Abstract
Spatial and temporal heterogeneities in the risk of malaria have led the WHO to recommend fine-scale stratification of the epidemiological situation, making it possible to set up actions and clinical or basic researches targeting high-risk zones. Before initiating such studies it is necessary to define local patterns of malaria transmission and infection (in time and in space) in order to facilitate selection of the appropriate study population and the intervention allocation. The aim of this study was to identify, spatially and temporally, high-risk zones of malaria, at the household level (resolution of 1 to 3 m). This study took place in a Malian village with hyperendemic seasonal transmission as part of Mali-Tulane Tropical Medicine Research Center (NIAID/NIH). The study design was a dynamic cohort (22 surveys, from June 1996 to June 2001) on about 1300 children (<12 years) distributed between 173 households localized by GPS. We used the computed parasitological data to analyzed levels of Plasmodium falciparum, P. malariae and P. ovale infection and P. falciparum gametocyte carriage by means of time series and Kulldorff's scan statistic for space-time cluster detection. The time series analysis determined that malaria parasitemia (primarily P. falciparum) was persistently present throughout the population with the expected seasonal variability pattern and a downward temporal trend. We identified six high-risk clusters of P. falciparum infection, some of which persisted despite an overall tendency towards a decrease in risk. The first high-risk cluster of P. falciparum infection (rate ratio = 14.161) was detected from September 1996 to October 1996, in the north of the village. This study showed that, although infection proportions tended to decrease, high-risk zones persisted in the village particularly near temporal backwaters. Analysis of this heterogeneity at the household scale by GIS methods lead to target preventive actions more accurately on the high-risk zones identified. This mapping of malaria risk makes it possible to orient control programs, treating the high-risk zones identified as a matter of priority, and to improve the planning of intervention trials or research studies on malaria.Keywords
This publication has 45 references indexed in Scilit:
- Clusters of autochthonous hepatitis A cases in a low endemicity areaEpidemiology and Infection, 2005
- Phase 1 Clinical Trial of Apical Membrane Antigen 1: an Asexual Blood-Stage Vaccine for Plasmodium falciparum MalariaInfection and Immunity, 2005
- A human phase 1 vaccine clinical trial of the Plasmodium falciparum malaria vaccine candidate apical membrane antigen 1 in Montanide ISA720 adjuvantVaccine, 2005
- A Space–Time Permutation Scan Statistic for Disease Outbreak DetectionPLoS Medicine, 2005
- GLOBAL VOICES OF SCIENCE: It Takes a Village: Medical Research and Ethics in MaliScience, 2005
- Dead Bird Clusters as an Early Warning System for West Nile Virus ActivityEmerging Infectious Diseases, 2003
- Spatial Analysis of Human Granulocytic Ehrlichiosis near Lyme, ConnecticutEmerging Infectious Diseases, 2002
- Efficacy of RTS,S/AS02 malaria vaccine against Plasmodium falciparum infection in semi-immune adult men in The Gambia: a randomised trialThe Lancet, 2001
- A spatial scan statisticCommunications in Statistics - Theory and Methods, 1997
- Mapping the densities of malaria vectors within a single villageActa Tropica, 1995