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Spatial and Temporal Variability of the Glossina Palpalis Palpalis Population in the Mbini Focus (Equatorial Guinea)

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Publisher Biomed Central
Date 2007 Sep 1
PMID 17760953
Citations 3
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Abstract

Background: Human African Trypanosomiasis is a vector-borne parasitic disease. The geographical distribution of the disease is linked to the spatial distribution of the tsetse fly. As part of a control campaign using traps, the spatial and temporal variability is analysed of the glossina populations present in the Mbini sleeping sickness foci (Equatorial Guinea).

Results: A significant drop in the annual mean of the G. p. palpalis apparent density was noted from 2004 to 2005, although seasonal differences were not observed. The apparent density (AD) of G. p. palpalis varies significantly from one biotope to another. The fish dryers turned out to be zones with the greatest vector density, although the AD of G. p. palpalis fell significantly in all locations from 2004 to 2005.

Conclusion: Despite the tsetse fly density being relatively low in fish dryers and jetties, the population working in those zones would be more exposed to infection. The mono-pyramidal traps in the Mbini focus have been proven to be a useful tool to control G. p. palpalis, even though the activity on the banks of the River Wele needs to be intensified. The application of spatial analysis techniques and geographical information systems are very useful tools to discriminate zones with high and low apparent density of G. p. palpalis, probably associated with different potential risk of sleeping sickness transmission.

Citing Articles

Spatio-temporal distribution of Spiroplasma infections in the tsetse fly (Glossina fuscipes fuscipes) in northern Uganda.

Schneider D, Saarman N, Onyango M, Hyseni C, Opiro R, Echodu R PLoS Negl Trop Dis. 2019; 13(8):e0007340.

PMID: 31369548 PMC: 6692048. DOI: 10.1371/journal.pntd.0007340.


Glossina palpalis palpalis populations from Equatorial Guinea belong to distinct allopatric clades.

Cordon-Obras C, Cano J, Knapp J, Nebreda P, Ndong-Mabale N, Ncogo-Ada P Parasit Vectors. 2014; 7:31.

PMID: 24438585 PMC: 3898820. DOI: 10.1186/1756-3305-7-31.


Screening of Trypanosoma brucei gambiense in domestic livestock and tsetse flies from an insular endemic focus (Luba, Equatorial Guinea).

Cordon-Obras C, Garcia-Estebanez C, Ndong-Mabale N, Abaga S, Ndongo-Asumu P, Benito A PLoS Negl Trop Dis. 2010; 4(6):e704.

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References
1.
Robinson T . Geographic Information Systems and the Selection of Priority Areas for Control of Tsetse-transmitted Trypanosomiasis in Africa. Parasitol Today. 2006; 14(11):457-61. DOI: 10.1016/s0169-4758(98)01336-2. View

2.
Courtin F, Jamonneau V, Oke E, Coulibaly B, Oswald Y, Dupont S . Towards understanding the presence/absence of Human African Trypanosomosis in a focus of Côte d'Ivoire: a spatial analysis of the pathogenic system. Int J Health Geogr. 2005; 4:27. PMC: 1308845. DOI: 10.1186/1476-072X-4-27. View

3.
Gouteux J, Lancien J . [The pyramidal trap for collecting and controlling tsetse flies (Diptera: Glossinidae). Comparative trials and description of new collecting technics]. Trop Med Parasitol. 1986; 37(1):61-6. View

4.
Kitron U . Landscape ecology and epidemiology of vector-borne diseases: tools for spatial analysis. J Med Entomol. 1998; 35(4):435-45. DOI: 10.1093/jmedent/35.4.435. View

5.
Nansen C, Campbell J, Phillips T, Mullen M . The impact of spatial structure on the accuracy of contour maps of small data sets. J Econ Entomol. 2004; 96(6):1617-25. DOI: 10.1603/0022-0493-96.6.1617. View