Paul O. Abuom
Maseno University
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Featured researches published by Paul O. Abuom.
SpringerPlus | 2015
Gabriel O. Dida; Frank B. Gelder; Douglas N. Anyona; Paul O. Abuom; Jackson H. O. Onyuka; Ally-Said Matano; Samson O. Adoka; Canisius Kabungo Kanangire; Philip O. Owuor; Collins Ouma; Ayub V. Ofulla
Among all the malaria controlling measures, biological control of mosquito larvae may be the cheapest and easiest to implement. This study investigated baseline predation of immature mosquitoes by macroinvertebrate predators along the Mara River, determined the diversity of predators and mosquito larvae habitats and the range of their adaptive capacity to water physico-chemical parameters. Between July and August 2011, sampling sites (n=39) along the Mara River were selected and investigated for the presence of macroinvertebrate predators and mosquito larvae. The selected sampling sites were geocoded and each dipped 20 times using standard mosquito larvae dipper to sample mosquito larvae, while a D-frame dip net was used to capture the macroinvertebrate predators. Water physico-chemical parameters (dissolved oxygen, temperature, pH, conductivity, salinity and turbidity) were taken in situ at access points, while hardness and alkalinity were measured titrimetically. The influence of macroinvertebrate predator occurrence was correlated with mosquito larvae and water quality parameters using Generalized Linear Model (GLM). Predators (n=297) belonging to 3 orders of Hemiptera (54.2%), Odonata (22.9%) and Coleoptera (22.9%), and mosquito larvae (n=4001) belonging to 10 species, which included An.gambiae s.l (44.9%), Culex spp. (34.8%) and An. coustani complex (13.8%), An. maculipalpis (3.6%), An. phaorensis (1.2%), An. funestus group (0.5%), An. azaniae (0.4%), An. hamoni (0.3%), An. christyi (0.3%), An. ardensis (0.08%), An. faini (0.07%), An. sergentii (0.05%) and 0.05% of Aedes mosquito larvae which were not identified to species level, due to lack of an appropriate key, were captured from different habitats along the Mara river. It was established that invasion of habitats by the macroinvertebrate predators were partially driven by the presence of mosquito larvae (p < 0.001), and the prevailing water physico-chemical parameters (DO, temperature, and turbidity, p <0.001). Understanding abiotic and biotic factors which favour mosquitoes and macroinveterbrate co-occurrence may contribute to the control of malaria.
Infection ecology & epidemiology | 2014
Gabriel O. Dida; Frank B. Gelder; Douglas N. Anyona; Ally-Said Matano; Paul O. Abuom; Samson O. Adoka; Collins Ouma; Canisius Kabungo Kanangire; P.O. Owuor; Ayub V. Ofulla
We purposively selected 39 sampling sites along the Mara River and its two perennial tributaries of Amala and Nyangores and sampled snails. In addition, water physicochemical parameters (temperature, turbidity, dissolved oxygen, conductivity, alkalinity, salinity and pH) were taken to establish their influence on the snail abundance and habitat preference. Out of the 39 sites sampled, 10 (25.6%) had snails. The snail species encountered included Biomphalaria pfeifferi Krauss – the intermediate host of Schistosoma mansoni Sambon, Bulinus africanus – the intermediate host of Schistosoma haematobium, and Lymnaea natalensis Krauss – the intermediate host of both Fasciola gigantica and F. hepatica Cobbold. Ceratophallus spp., a non-vector snail was also encountered. Most (61.0%) of the snails were encountered in streamside pools. Schistosomiasis-transmitting host snails, B. pfeifferi and B. africanus, were fewer than fascioliasis-transmitting Lymnaea species. All the four different snail species were found to be attached to different aquatic weeds, with B. pfeifferi accounting for over half (61.1%) of the snails attached to the sedge, followed by B. africanus and Lymnaea spp., accounting for 22.2 and 16.7%, respectively. Ceratophallus spp. were non-existent in sedge. The results from this preliminary study show that snails intermediate hosts of schistosomiasis and fascioliasis exists in different habitats, in few areas along the Mara River, though their densities are still low to have any noticeable impacts on disease transmission in case they are infected. The mere presence of the vector snails in these focal regions calls for their immediate control and institution of proper regulations, management, and education among the locals that can help curtail the spread of the snails and also schistosomiasis and fascioliasis within the Mara River basin.
Journal of Emerging Trends in Economics and Management Sciences | 2013
Samuel Kerunyu Gichere; Geoffrey Olado; Douglas N. Anyona; Ally-Said Matano; Gabriel O. Dida; Paul O. Abuom; Jairus Boston Amayi; Ayub V. Ofulla
Open Journal of Soil Science | 2015
Ally-Said Matano; Canisius Kabungo Kanangire; Douglas N. Anyona; Paul O. Abuom; Frank B. Gelder; Gabriel O. Dida; Philip O. Owuor; Ayub V. Ofulla
Lakes and Reservoirs: Research and Management | 2013
Ayub V. Ofulla; Samson O. Adoka; Douglas N. Anyona; Paul O. Abuom; Diana M. S. Karanja; John M. Vulule; Tom Okurut; Ally-Said Matano; Gabriel O. Dida; Tsuma Jembe; John W Gichuki
African Journal of Tropical Hydrobiology and Fisheries | 2013
Ally-Said Matano; Douglas N. Anyona; Philip O. Owuor; Paul O. Abuom; Gabriel O. Dida; Raphael Kapiyo; Ayub V. Ofulla
SpringerPlus | 2016
Chadwick O. Ajuang; Paul O. Abuom; Esna K. Bosire; Gabriel O. Dida; Douglas N. Anyona
Infectious Diseases of Poverty | 2018
Gabriel O. Dida; Douglas N. Anyona; Paul O. Abuom; Daniel Akoko; Samson O Adoka; Ally-Said Matano; Philip O. Owuor; Collins Ouma
Archive | 2017
Paul O. Abuom; R.C Kosonei; Huho J. M; E Bosire
Journal of Geoscience and Environment Protection | 2017
Wyclife Agumba Oluoch; Boniface Oluoch Oindo; Paul O. Abuom