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1.
Vet Ophthalmol ; 24(3): 288-294, 2021 May.
Article in English | MEDLINE | ID: mdl-33834584

ABSTRACT

OBJECTIVE: To determine whether dogs are at variable risk of developing canine ocular onchocerciasis based on coat color or size, factors that may influence feeding behavior of the putative vectors of Onchocerca lupi¸ the filarial nematode parasite causing this disease. ANIMALS STUDIED: One hundred twenty-five client-owned dogs diagnosed with confirmed or suspected onchocerciasis. 1255 dogs without signs of this disease were utilized for comparison. PROCEDURES: Dogs lacking signs of canine onchocerciasis were assessed for coat color and weight. Proportions of dogs with these characteristics were used to predict signalment in a group of dogs with this disease, if the investigated characteristics were unrelated to disease risk. Predicted values were compared statistically with observed values in the diseased dog population. Black fly color preference was assessed utilizing black, brown, and white traps and statistically assessing any differences in trapping based on trap color. RESULTS: Results suggest that large, black dogs are more likely to develop canine ocular onchocerciasis than was predicted by chance alone (p = 0.012). Results for smaller dogs with other coat colors were not significant. An increased risk for black dogs was supported by trapping data, as black flies were trapped significantly more often in black traps (p < 0.001). CONCLUSION: While factors other than size and color probably also influence the likelihood of O. lupi infection and disease development, our results may assist clinicians in their diagnosis of canine ocular onchocerciasis and provide them with a tool to help educate their clients as to their dogs' risk of developing this disease.


Subject(s)
Dog Diseases/epidemiology , Onchocerciasis, Ocular/veterinary , Animals , Dog Diseases/etiology , Dog Diseases/genetics , Dogs , Female , Hair Color , Male , New Mexico/epidemiology , Onchocerciasis, Ocular/epidemiology , Pedigree , Records/veterinary , Risk Factors
2.
J Insect Sci ; 13: 75, 2013.
Article in English | MEDLINE | ID: mdl-24224615

ABSTRACT

Culex quinquefasciatus Say (Diptera: Culicidae) and Aedes vexans Meigen are two of the most abundant mosquitoes in Bernalillo County, New Mexico, USA. In this study, a polymerase chain reaction based methodology was used to identify the sources of blood meals taken by these two species. Ae. vexans was found to take a large proportion of its meals from mammals. Although less specific in terms of its blood meal preferences, Cx. quinquefasciatus was found to feed more commonly on birds. The results for Ae. vexans are similar to those reported for this species in other parts of their geographic range. Cx. quinquefasciatus appears to be more variable in terms of its host feeding under different environmental or seasonal circumstances. The implications of these results for arbovirus transmission are discussed.


Subject(s)
Aedes/physiology , Culex/physiology , Diet , Animals , Birds , Blood/metabolism , Food Chain , Mammals , New Mexico , Polymerase Chain Reaction
3.
Am J Trop Med Hyg ; 103(1_Suppl): 66-79, 2020 07.
Article in English | MEDLINE | ID: mdl-32400353

ABSTRACT

The Schistosomiasis Consortium for Operational Research and Evaluation (SCORE) was created in 2008 to answer questions of importance to program managers working to reduce the burden of schistosomiasis in Africa. In the past, intermediate host snail monitoring and control was an important part of integrated schistosomiasis control. However, in Africa, efforts to control snails have declined dramatically over the last 30 years. A resurgence of interest in the control of snails has been prompted by the realization, backed by a World Health Assembly resolution (WHA65.21), that mass drug administration alone may be insufficient to achieve schistosomiasis elimination. SCORE has supported work on snail identification and mapping and investigated how xenomonitoring techniques can aid in the identification of infected snails and thereby identify potential transmission areas. Focal mollusciciding with niclosamide was undertaken in Zanzibar and Côte d'Ivoire as a part of elimination studies. Two studies involving biological control of snails were conducted: one explored the association of freshwater riverine prawns and snail hosts in Côte d'Ivoire and the other assessed the current distribution of Procambarus clarkii, the invasive Louisiana red swamp crayfish, in Kenya and its association with snail hosts and schistosomiasis transmission. SCORE also supported modeling studies on the importance of snail control in achieving elimination and a meta-analysis of the impact of molluscicide-based snail control programs on human schistosomiasis prevalence and incidence. SCORE's snail control studies contributed to increased investment in building capacity, and specimens collected during SCORE research deposited in the Schistosomiasis Collections at the Natural History Museum (SCAN) will provide a valuable resource for the years to come.


Subject(s)
Disease Reservoirs/parasitology , Molluscacides/pharmacology , Schistosomiasis/transmission , Snails/parasitology , Animals , Astacoidea , Biological Control Agents , Biological Monitoring , Cote d'Ivoire/epidemiology , Decapoda , Fresh Water/parasitology , Humans , Incidence , Kenya/epidemiology , Models, Theoretical , Niclosamide/pharmacokinetics , Prevalence , Program Evaluation , Schistosoma/isolation & purification , Schistosoma/parasitology , Schistosomiasis/parasitology , Snails/drug effects , Tanzania/epidemiology
4.
J Vector Ecol ; 37(1): 83-9, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22548540

ABSTRACT

We assessed the post-blood meal flight distance of four mosquito species in a unique environment using blood meal analysis. Mosquitoes were trapped at the Rio Grande Zoo in Albuquerque, NM, and the blood source of blood-engorged mosquitoes was identified. The distance from the enclosure of the animal serving as a blood source to the trap site was then determined. We found that mosquitoes captured at the zoo flew no more than 170 m with an average distance of 106.7 m after taking a blood meal. This is the first study in which the flight distance of wild mosquitoes has been assessed using blood meal analysis and the first in which zoo animals have served as the exclusive source of blood meals.


Subject(s)
Culicidae/physiology , Animals , Animals, Zoo , Behavior, Animal/physiology , Postprandial Period
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