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1.
Parasit Vectors ; 11(1): 256, 2018 04 19.
Article in English | MEDLINE | ID: mdl-29673392

ABSTRACT

BACKGROUND: Extra-Amazonian malaria mortality is 60 times higher than the Amazon malaria mortality. Imported cases correspond to approximately 90% of extra-Amazonian cases. Imported malaria could be a major problem if it occurs in areas with receptivity, because it can favor the occurrence of outbreaks or reintroductions of malaria in those areas. This study aimed to model territorial receptivity for malaria to serve as an entomological surveillance tool in the State of Rio de Janeiro, Brazil. Geomorphology, rainfall, temperature, and vegetation layers were used in the AHP process for the receptivity stratification of Rio de Janeiro State territory. RESULTS: The model predicted five receptivity classes: very low, low, medium, high and very high. The 'very high' class is the most important in the receptivity model, corresponding to areas with optimal environmental and climatological conditions to provide suitable larval habitats for Anopheles (Nyssorhynchus) vectors. This receptivity class covered 497.14 km2 or 1.18% of the state's area. The 'high' class covered the largest area, 17,557.98 km2, or 41.62% of the area of Rio de Janeiro State. CONCLUSIONS: We used freely available databases for modeling the distribution of receptive areas for malaria transmission in the State of Rio de Janeiro. This was a new and low-cost approach to support entomological surveillance efforts. Health workers in 'very high' and 'high' receptivity areas should be prepared to diagnose all febrile individuals and determine the cause of the fever, including malaria. Each malaria case must be treated and epidemiological studies must be conducted to prevent the reintroduction of the disease.


Subject(s)
Animal Distribution , Anopheles/growth & development , Geographic Information Systems , Malaria/transmission , Mosquito Vectors/growth & development , Topography, Medical , Animals , Brazil , Epidemiological Monitoring , Humans , Malaria/epidemiology , Spatial Analysis
2.
Mem Inst Oswaldo Cruz ; 102(5): 617-23, 2007 Aug.
Article in English | MEDLINE | ID: mdl-17710307

ABSTRACT

Aedes aegypti and Ae. albopictus are vectors of dengue viruses, which cause endemic disease in the city of Manaus, capital of the state of Amazonas, Brazil. More than 53 thousand cases have been registered in this city since the first epidemic in 1998. We evaluated the hypothesis that different ecological conditions result in different patterns of vector infestation in Manaus, by measuring the infestation level in four neighborhoods with different urbanization patterns, during the rainy (April), dry (August), and transitional (November) seasons. Ae. aegypti predominated throughout the study areas and sampling periods, representing 86% of all specimens collected in oviposition traps. High frequencies of houses positive for both species were observed in all studied sites, with Ae. aegypti present in more than 84% of the houses in all seasons. Ae. albopictus, on the other hand, showed more spatial and temporal variation in abundance. We found no association between infestation level and house traits. This study highlights the homogeneity of dengue vector distribution in Manaus.


Subject(s)
Aedes/classification , Insect Vectors/classification , Animals , Brazil , Dengue/transmission , Humans , Population Density , Seasons , Urban Population
3.
Mem. Inst. Oswaldo Cruz ; 102(5): 617-623, Aug. 2007. mapas, tab, graf
Article in English | LILACS | ID: lil-458634

ABSTRACT

Aedes aegypti and Ae. albopictus are vectors of dengue viruses, which cause endemic disease in the city of Manaus, capital of the state of Amazonas, Brazil. More than 53 thousand cases have been registered in this city since the first epidemic in 1998. We evaluated the hypothesis that different ecological conditions result in different patterns of vector infestation in Manaus, by measuring the infestation level in four neighborhoods with different urbanization patterns, during the rainy (April), dry (August), and transitional (November) seasons. Ae. aegypti predominated throughout the study areas and sampling periods, representing 86 percent of all specimens collected in oviposition traps. High frequencies of houses positive for both species were observed in all studied sites, with Ae. aegypti present in more than 84 percent of the houses in all seasons. Ae. albopictus, on the other hand, showed more spatial and temporal variation in abundance. We found no association between infestation level and house traits. This study highlights the homogeneity of dengue vector distribution in Manaus.


Subject(s)
Animals , Humans , Aedes/classification , Insect Vectors/classification , Brazil , Dengue/transmission , Population Density , Seasons , Urban Population
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