Virology Journal, ISSN 1743-422X, 2013, Volume 10, Issue 1, pp. 311 - 311
Background: Zika virus (ZIKV), a mosquito borne flavivirus is a pathogen affecting humans in Asia and Africa. ZIKV infection diagnosis relies on serology-which...
SOUTHEASTERN SENEGAL | FEDERATED STATES | INFECTIONS | MICRONESIA | ASSAY | VIROLOGY | YAP STATE | FLAVIVIRUS | EXPRESSION | YELLOW-FEVER | RAPID DETECTION | Culicidae - virology | Zika Virus Infection - virology | Molecular Diagnostic Techniques - methods | Animals | Zika Virus - genetics | Zika Virus Infection - diagnosis | Time Factors | Sensitivity and Specificity | Real-Time Polymerase Chain Reaction - methods | Zika Virus - isolation & purification | Polymerase chain reaction | Disease transmission | Arbovirus diseases | Genomics | Biological diversity
SOUTHEASTERN SENEGAL | FEDERATED STATES | INFECTIONS | MICRONESIA | ASSAY | VIROLOGY | YAP STATE | FLAVIVIRUS | EXPRESSION | YELLOW-FEVER | RAPID DETECTION | Culicidae - virology | Zika Virus Infection - virology | Molecular Diagnostic Techniques - methods | Animals | Zika Virus - genetics | Zika Virus Infection - diagnosis | Time Factors | Sensitivity and Specificity | Real-Time Polymerase Chain Reaction - methods | Zika Virus - isolation & purification | Polymerase chain reaction | Disease transmission | Arbovirus diseases | Genomics | Biological diversity
Journal Article
Annual Review of Entomology, ISSN 0066-4170, 01/2020, Volume 65, Issue 1
Chikungunya virus (CHIKV), a re-emerging mosquito-borne arbovirus, has caused millions of cases of severe, often chronic arthralgia during recent outbreaks. In...
Journal Article
PLoS ONE, ISSN 1932-6203, 10/2014, Volume 9, Issue 10, p. e109442
Background: Zika virus (ZIKV; genus Flavivirus, family Flaviviridae) is maintained in a zoonotic cycle between arboreal Aedes spp. mosquitoes and nonhuman...
ISOLATIONS | TRANSMISSION | DIPTERA | AMPLIFICATION | MULTIDISCIPLINARY SCIENCES | YELLOW-FEVER VIRUS | SURVEILLANCE | CULICIDAE | AEDES | CHIKUNGUNYA VIRUS | VECTOR | Senegal - epidemiology | Culicidae - virology | Zika Virus Infection - virology | Aedes - virology | Animals | Zika Virus Infection - epidemiology | Disease Outbreaks | Humans | Male | Zika Virus - isolation & purification | Insect Vectors - virology | Virus diseases | Health aspects | Epidemics | Forests | Spatial discrimination | Viruses | Infections | Zika virus | Males | Land cover | Aquatic insects | Epidemiology | Pest outbreaks | Tropical diseases | Humidity | Primates | Villages | Public health | Vector-borne diseases | Vectors | Land use | Polymerase chain reaction | Amplification | Barren lands | Mosquitoes | Disease transmission | Laboratory animals
ISOLATIONS | TRANSMISSION | DIPTERA | AMPLIFICATION | MULTIDISCIPLINARY SCIENCES | YELLOW-FEVER VIRUS | SURVEILLANCE | CULICIDAE | AEDES | CHIKUNGUNYA VIRUS | VECTOR | Senegal - epidemiology | Culicidae - virology | Zika Virus Infection - virology | Aedes - virology | Animals | Zika Virus Infection - epidemiology | Disease Outbreaks | Humans | Male | Zika Virus - isolation & purification | Insect Vectors - virology | Virus diseases | Health aspects | Epidemics | Forests | Spatial discrimination | Viruses | Infections | Zika virus | Males | Land cover | Aquatic insects | Epidemiology | Pest outbreaks | Tropical diseases | Humidity | Primates | Villages | Public health | Vector-borne diseases | Vectors | Land use | Polymerase chain reaction | Amplification | Barren lands | Mosquitoes | Disease transmission | Laboratory animals
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Why is Zika virus so rarely detected during outbreaks and how can detection be improved?
BMC Research Notes, ISSN 1756-0500, 10/2017, Volume 10, Issue 1, pp. 524 - 5
Even during outbreaks, detection of Zika virus (ZIKV; genus Flavivirus, family Flaviviridae) in its mosquito vectors is surprisingly uncommon. Here we explore...
Outbreaks, vectors | Arbovirus | Field-collected mosquitoes | Zika | Physiological aspects | Mosquitoes | Research | Prevalence studies (Epidemiology) | Epidemics | Houses | Guillain-Barre syndrome | Surveillance | Laboratories | West Nile virus | Spraying | Zika virus | Adults | Vectors | Pest outbreaks
Outbreaks, vectors | Arbovirus | Field-collected mosquitoes | Zika | Physiological aspects | Mosquitoes | Research | Prevalence studies (Epidemiology) | Epidemics | Houses | Guillain-Barre syndrome | Surveillance | Laboratories | West Nile virus | Spraying | Zika virus | Adults | Vectors | Pest outbreaks
Journal Article
BMC Infectious Diseases, ISSN 1471-2334, 11/2015, Volume 15, Issue 1, p. 492
Background: Zika virus (ZIKV; genus Flavivirus, family Flaviviridae) is an emerging virus of medical importance maintained in a zoonotic cycle between arboreal...
Oral infection | Senegal | Vector competence | West Africa | Arboviruses | Zika virus | Aedes | INFECTIOUS DISEASES | EQUINE ENCEPHALITIS-VIRUS | SUSCEPTIBILITY | AEGYPTI | CHIKUNGUNYA VIRUS | YELLOW-FEVER | VECTOR | SOUTHEASTERN SENEGAL | GEOGRAPHIC STRAINS | ALBOPICTUS | Saliva - virology | Zika Virus Infection - transmission | Zika Virus Infection - virology | Aedes - virology | Animals | Zika Virus - genetics | Humans | Female | Zika Virus - isolation & purification | Insect Vectors - virology | Real-Time Polymerase Chain Reaction | Mosquitoes | Genetic aspects | Research | Diptera | Infectious diseases
Oral infection | Senegal | Vector competence | West Africa | Arboviruses | Zika virus | Aedes | INFECTIOUS DISEASES | EQUINE ENCEPHALITIS-VIRUS | SUSCEPTIBILITY | AEGYPTI | CHIKUNGUNYA VIRUS | YELLOW-FEVER | VECTOR | SOUTHEASTERN SENEGAL | GEOGRAPHIC STRAINS | ALBOPICTUS | Saliva - virology | Zika Virus Infection - transmission | Zika Virus Infection - virology | Aedes - virology | Animals | Zika Virus - genetics | Humans | Female | Zika Virus - isolation & purification | Insect Vectors - virology | Real-Time Polymerase Chain Reaction | Mosquitoes | Genetic aspects | Research | Diptera | Infectious diseases
Journal Article
BMC genomics, ISSN 1471-2164, 09/2019, Volume 20, Issue 1, pp. 698 - 2
Following the publication of this article [1], the authors reported that the original shading in columns 3 and 4 of Table 3, which indicated the presence or...
Vector-borne diseases | RNA viruses | Mosquitoes | Profiling | Malaria | Viruses | Aquatic insects
Vector-borne diseases | RNA viruses | Mosquitoes | Profiling | Malaria | Viruses | Aquatic insects
Journal Article
BMC GENOMICS, ISSN 1471-2164, 08/2019, Volume 20, Issue 1, pp. 664 - 27
Background Mosquitoes are colonized by a large but mostly uncharacterized natural virome of RNA viruses, and the composition and distribution of the natural...
VISUALIZATION | Insect specific virus | RNA virus | PHYLOGENETIC ANALYSIS | PERFORMANCE | PIRNAS | AEDES-AEGYPTI | Malaria vector | Anopheles | TRANSMISSION | Virome | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ARBOVIRUS | Virus genome assembly | GENETICS & HEREDITY | DIVERSITY | FLAVIVIRUSES | RNA viruses | Testing | Genetic vectors | RNA | Malaria | Analysis | Genomics | Health aspects | Life Sciences | Invertebrate Zoology | Microbiology and Parasitology | Animal biology | Virology
VISUALIZATION | Insect specific virus | RNA virus | PHYLOGENETIC ANALYSIS | PERFORMANCE | PIRNAS | AEDES-AEGYPTI | Malaria vector | Anopheles | TRANSMISSION | Virome | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ARBOVIRUS | Virus genome assembly | GENETICS & HEREDITY | DIVERSITY | FLAVIVIRUSES | RNA viruses | Testing | Genetic vectors | RNA | Malaria | Analysis | Genomics | Health aspects | Life Sciences | Invertebrate Zoology | Microbiology and Parasitology | Animal biology | Virology
Journal Article
PLoS Neglected Tropical Diseases, ISSN 1935-2727, 2014, Volume 8, Issue 1, p. 36
Zika virus (ZIKV) is a mosquito-borne flavivirus first isolated in Uganda in 1947. Although entomological and virologic surveillance have reported ZIKV...
RECOMBINANT SEQUENCES | MOSAIC STRUCTURE | SEQUENCE ALIGNMENT | PHYLOGENETIC ANALYSIS | GENUS FLAVIVIRUS | MISSING DATA | ENVELOPE PROTEINS | RNA VIRUSES | DENGUE VIRUS | YELLOW-FEVER | PARASITOLOGY | TROPICAL MEDICINE | Vector-borne diseases | Distribution | Prevalence studies (Epidemiology) | Proteins | Mosquitoes | West Nile virus | Infections | Genomes | RNA polymerase | Fever
RECOMBINANT SEQUENCES | MOSAIC STRUCTURE | SEQUENCE ALIGNMENT | PHYLOGENETIC ANALYSIS | GENUS FLAVIVIRUS | MISSING DATA | ENVELOPE PROTEINS | RNA VIRUSES | DENGUE VIRUS | YELLOW-FEVER | PARASITOLOGY | TROPICAL MEDICINE | Vector-borne diseases | Distribution | Prevalence studies (Epidemiology) | Proteins | Mosquitoes | West Nile virus | Infections | Genomes | RNA polymerase | Fever
Journal Article
Parasites and Vectors, ISSN 1756-3305, 02/2016, Volume 9, Issue 1, p. 71
Background: Malaria vector control in Africa relies on insecticides targeting adult mosquito vectors via insecticide treated nets or indoor residual spraying....
Anopheles coluzzii | An. gambiae | Insecticide resistance | kdr resistance | Anopheles arabiensis | 1ST EVIDENCE | BURKINA-FASO | SODIUM-CHANNEL GENE | WEST | MOLECULAR-FORMS | ANOPHELES-GAMBIAE | PYRETHROID KNOCK | TROPICAL MEDICINE | DOWN-RESISTANCE | MUTATION | INCIPIENT SPECIATION | PARASITOLOGY | Insecticides - pharmacology | Animals | Parasitic Sensitivity Tests | Insect Vectors - drug effects | Insecticide Resistance | Senegal | Anopheles - drug effects | Polymerase Chain Reaction | Mutation Rate | Anopheles | Genetic aspects | Gene mutations | Identification and classification
Anopheles coluzzii | An. gambiae | Insecticide resistance | kdr resistance | Anopheles arabiensis | 1ST EVIDENCE | BURKINA-FASO | SODIUM-CHANNEL GENE | WEST | MOLECULAR-FORMS | ANOPHELES-GAMBIAE | PYRETHROID KNOCK | TROPICAL MEDICINE | DOWN-RESISTANCE | MUTATION | INCIPIENT SPECIATION | PARASITOLOGY | Insecticides - pharmacology | Animals | Parasitic Sensitivity Tests | Insect Vectors - drug effects | Insecticide Resistance | Senegal | Anopheles - drug effects | Polymerase Chain Reaction | Mutation Rate | Anopheles | Genetic aspects | Gene mutations | Identification and classification
Journal Article
PLoS ONE, ISSN 1932-6203, 05/2016, Volume 11, Issue 5, p. e0153881
Mosquitoes of the Anopheles gambiae complex display strong preference for human blood-meals and are major malaria vectors in Africa. However, their interaction...
ONYONG-NYONG VIRUS | ANTIVIRAL RESPONSE | IMMUNE-RESPONSE | ALPHAVIRUS | DIPTERA | MULTIDISCIPLINARY SCIENCES | CULICIDAE | HOST | INTERFERENCE | INFECTION | ADULT DROSOPHILA | Animals | Dicistroviridae - isolation & purification | Dicistroviridae - physiology | Reoviridae - physiology | Reoviridae - isolation & purification | Anopheles - virology | Host Specificity | Phylogeny | RNA viruses | Anopheles | Malaria | Physiological aspects | Causes of | Genetic aspects | Research | Epidemics | Animal models | Laboratories | Genomics | Viruses | Genomes | Infections | Parasites | Security | Aquatic insects | Immunity | Gene sequencing | Taxa | Next-generation sequencing | Immunology | Genetics | Bioinformatics | Species | Vector-borne diseases | Nucleotide sequence | Colonies | Vectors | Ribonucleic acid--RNA | Mosquitoes | Disease transmission | Insects | Viral infections | Life Sciences | Invertebrate Zoology | Microbiology and Parasitology | Animal biology | Virology | RNA | Ribonucleic acid
ONYONG-NYONG VIRUS | ANTIVIRAL RESPONSE | IMMUNE-RESPONSE | ALPHAVIRUS | DIPTERA | MULTIDISCIPLINARY SCIENCES | CULICIDAE | HOST | INTERFERENCE | INFECTION | ADULT DROSOPHILA | Animals | Dicistroviridae - isolation & purification | Dicistroviridae - physiology | Reoviridae - physiology | Reoviridae - isolation & purification | Anopheles - virology | Host Specificity | Phylogeny | RNA viruses | Anopheles | Malaria | Physiological aspects | Causes of | Genetic aspects | Research | Epidemics | Animal models | Laboratories | Genomics | Viruses | Genomes | Infections | Parasites | Security | Aquatic insects | Immunity | Gene sequencing | Taxa | Next-generation sequencing | Immunology | Genetics | Bioinformatics | Species | Vector-borne diseases | Nucleotide sequence | Colonies | Vectors | Ribonucleic acid--RNA | Mosquitoes | Disease transmission | Insects | Viral infections | Life Sciences | Invertebrate Zoology | Microbiology and Parasitology | Animal biology | Virology | RNA | Ribonucleic acid
Journal Article
Parasites and Vectors, ISSN 1756-3305, 2012, Volume 5, Issue 1, pp. 238 - 238
Background: Two concomitant dengue 3 (DEN-3) epidemics occurred in Cape Verde Archipelago and Senegal between September and October 2009. Aedes aegypti was...
Cape Verde | Insecticides | Aedes aegypti | Senegal | Susceptibility | DENGUE VECTOR | WEST-AFRICA | PYRETHROID RESISTANCE | TROPICAL MEDICINE | MARTINIQUE | THAILAND | AREA | GENE | ALBOPICTUS | UPDATE | SELECTION | PARASITOLOGY | Insecticides - pharmacology | Animals | Insecticide Resistance | Female | Aedes - drug effects | Cabo Verde | Disease Vectors | Epidemics | Insecticide resistance | Organochlorine compounds | Dengue viruses | Analysis | Carbamates
Cape Verde | Insecticides | Aedes aegypti | Senegal | Susceptibility | DENGUE VECTOR | WEST-AFRICA | PYRETHROID RESISTANCE | TROPICAL MEDICINE | MARTINIQUE | THAILAND | AREA | GENE | ALBOPICTUS | UPDATE | SELECTION | PARASITOLOGY | Insecticides - pharmacology | Animals | Insecticide Resistance | Female | Aedes - drug effects | Cabo Verde | Disease Vectors | Epidemics | Insecticide resistance | Organochlorine compounds | Dengue viruses | Analysis | Carbamates
Journal Article
Nature Communications, ISSN 2041-1723, 12/2018, Volume 9, Issue 1, pp. 1046 - 10
Arboviruses spillover into humans either as a one-step jump from a reservoir host species into humans or as a two-step jump from the reservoir to an...
RESERVOIRS | WILD | TRANSMISSION | CERCOPITHECUS-AETHIOPS | ERYTHROCEBUS-PATAS | MULTIDISCIPLINARY SCIENCES | SUSCEPTIBILITY | PATTERNS | ANTIBODY KINETICS | INFECTION | VECTORS | Amplification | Vector-borne diseases | Mosquitoes | Anthropometry | Teeth | Dentition | Antibodies | Viruses | Monkeys | Aquatic insects | Immunity
RESERVOIRS | WILD | TRANSMISSION | CERCOPITHECUS-AETHIOPS | ERYTHROCEBUS-PATAS | MULTIDISCIPLINARY SCIENCES | SUSCEPTIBILITY | PATTERNS | ANTIBODY KINETICS | INFECTION | VECTORS | Amplification | Vector-borne diseases | Mosquitoes | Anthropometry | Teeth | Dentition | Antibodies | Viruses | Monkeys | Aquatic insects | Immunity
Journal Article
Journal of Medical Entomology, ISSN 0022-2585, 01/2019, Volume 56, Issue 1, pp. 149 - 155
Abstract An efficient trapping tool is one of the most important factors in surveillance and research on arboviruses and their vectors. In the current study,...
EFFICACY | BARKEDJI | ENTOMOLOGY | ABUNDANCE | AFRICA | mosquito vector | RIFT-VALLEY-FEVER | Usutu virus | Senegal | West Nile virus | VETERINARY SCIENCES | trap | OUTBREAK | EPIDEMIOLOGY
EFFICACY | BARKEDJI | ENTOMOLOGY | ABUNDANCE | AFRICA | mosquito vector | RIFT-VALLEY-FEVER | Usutu virus | Senegal | West Nile virus | VETERINARY SCIENCES | trap | OUTBREAK | EPIDEMIOLOGY
Journal Article
Emerging Infectious Diseases, ISSN 1080-6040, 02/2014, Volume 20, Issue 2, pp. 296 - 299
After a period of heavy rainfall, an outbreak of Rift Valley fever occurred in southern Mauritania during September-November 2012. A total of 41 human cases...
AFRICA | INFECTIOUS DISEASES | VIRUS | IMMUNOLOGY | SUDAN | Humans | Middle Aged | Child, Preschool | Male | Rift Valley fever virus - classification | Phylogeny | Insect Vectors - virology | Culicidae - virology | Rift Valley Fever - mortality | Rift Valley fever virus - genetics | Disease Outbreaks | Aged, 80 and over | Adult | Female | Seasons | Child | Mauritania - epidemiology | Viral Proteins - genetics | Viral Proteins - classification | Animals | Adolescent | Survival Analysis | Aged | Rift Valley Fever - epidemiology | Rift Valley Fever - transmission | Rift Valley Fever - virology | Research | Rift Valley fever | Demographic aspects | Distribution | viruses | Rift Valley fever virus | Faye Om | Suggested citation for this article: Sow A | Ba Y | 2012. Emerg Infect Dis [Internet]. 2014 Feb [date cited]. http | Dispatch | dx.doi.org | eid2002.131000 | Faye Os | field investigation | southern Mauritania | RVFV | Mauritania | re-emergence | 10.3201 | Ba H | outbreak | et al. Rift Valley fever outbreak | Diallo D | field investigations
AFRICA | INFECTIOUS DISEASES | VIRUS | IMMUNOLOGY | SUDAN | Humans | Middle Aged | Child, Preschool | Male | Rift Valley fever virus - classification | Phylogeny | Insect Vectors - virology | Culicidae - virology | Rift Valley Fever - mortality | Rift Valley fever virus - genetics | Disease Outbreaks | Aged, 80 and over | Adult | Female | Seasons | Child | Mauritania - epidemiology | Viral Proteins - genetics | Viral Proteins - classification | Animals | Adolescent | Survival Analysis | Aged | Rift Valley Fever - epidemiology | Rift Valley Fever - transmission | Rift Valley Fever - virology | Research | Rift Valley fever | Demographic aspects | Distribution | viruses | Rift Valley fever virus | Faye Om | Suggested citation for this article: Sow A | Ba Y | 2012. Emerg Infect Dis [Internet]. 2014 Feb [date cited]. http | Dispatch | dx.doi.org | eid2002.131000 | Faye Os | field investigation | southern Mauritania | RVFV | Mauritania | re-emergence | 10.3201 | Ba H | outbreak | et al. Rift Valley fever outbreak | Diallo D | field investigations
Journal Article
BMC Infectious Diseases, ISSN 1471-2334, 12/2018, Volume 18, Issue 1, pp. 642 - 14
BackgroundA mosquito-based arbovirus surveillance system was set up at Barkedji, Senegal after the first outbreak of Rift valley fever in West Africa in 1988....
Villages | Mosquitoes | Surveillance | Arbovirus | Aampling methods | Ponds | INFECTIOUS DISEASES | VECTOR COMPETENCE | SENEGAL | SINDBIS VIRUS-INFECTION | BAGAZA VIRUS | NDUMU VIRUS | USUTU VIRUS | RIFT-VALLEY-FEVER | CULEX-PIPIENS | DIPTERA-CULICIDAE | WEST-NILE | Arbovirus Infections - veterinary | Senegal - epidemiology | Arboviruses - isolation & purification | Arbovirus Infections - virology | Arbovirus Infections - epidemiology | Humans | Rift Valley fever virus - isolation & purification | Chickens - virology | Columbidae - virology | Male | Goats - virology | Sheep - virology | Africa, Western - epidemiology | Culicidae - virology | Culicidae - classification | Animals | Disease Outbreaks - prevention & control | West Nile virus - isolation & purification | Seasons | Population Surveillance - methods | Research | Arbovirus diseases | Health aspects | Poultry | Carbon dioxide | Viral diseases | Viruses | Outbreaks | Infections | Veterinary medicine | Aquatic insects | Epidemiology | Coccidioidomycosis | Upgrading | Canopies | Arthropods | Rainy season | Strains (organisms) | Vector-borne diseases | Encephalitis | Pigeons | Fever | Vertebrates | Light traps | Rift Valley fever | Chickens | West Nile virus | Sheep | Sampling methods
Villages | Mosquitoes | Surveillance | Arbovirus | Aampling methods | Ponds | INFECTIOUS DISEASES | VECTOR COMPETENCE | SENEGAL | SINDBIS VIRUS-INFECTION | BAGAZA VIRUS | NDUMU VIRUS | USUTU VIRUS | RIFT-VALLEY-FEVER | CULEX-PIPIENS | DIPTERA-CULICIDAE | WEST-NILE | Arbovirus Infections - veterinary | Senegal - epidemiology | Arboviruses - isolation & purification | Arbovirus Infections - virology | Arbovirus Infections - epidemiology | Humans | Rift Valley fever virus - isolation & purification | Chickens - virology | Columbidae - virology | Male | Goats - virology | Sheep - virology | Africa, Western - epidemiology | Culicidae - virology | Culicidae - classification | Animals | Disease Outbreaks - prevention & control | West Nile virus - isolation & purification | Seasons | Population Surveillance - methods | Research | Arbovirus diseases | Health aspects | Poultry | Carbon dioxide | Viral diseases | Viruses | Outbreaks | Infections | Veterinary medicine | Aquatic insects | Epidemiology | Coccidioidomycosis | Upgrading | Canopies | Arthropods | Rainy season | Strains (organisms) | Vector-borne diseases | Encephalitis | Pigeons | Fever | Vertebrates | Light traps | Rift Valley fever | Chickens | West Nile virus | Sheep | Sampling methods
Journal Article