Harrysone Atieli
Overview
Explore the profile of Harrysone Atieli including associated specialties, affiliations and a list of published articles.
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Articles
43
Citations
655
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0
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Recent Articles
1.
Machani M, Onyango S, Nzioki I, Milanoi S, Nattoh G, Githure J, et al.
Malar J
. 2025 Mar;
24(1):85.
PMID: 40089759
Background: Increasing unplanned urbanization in tropical Africa may create new niches for malaria vectors, raising transmission risk, yet control efforts focus on rural ecosystems. Understanding mosquito diversity, ecology and biting...
2.
Hemming-Schroeder E, Hubbard A, Ebhodaghe F, Vorontsova T, Zhong D, Zhou G, et al.
Mol Ecol
. 2025 Mar;
:e17713.
PMID: 40087832
Anti-malaria interventions typically reduce the intensity of Plasmodium transmission, but the effects of reduced transmission on P. falciparum population biology remain unclear. Highly polymorphic microsatellite markers in P. falciparum were...
3.
Machani M, Nzioki I, Onyango S, Onyango B, Githure J, Atieli H, et al.
PLoS One
. 2024 Nov;
19(11):e0303921.
PMID: 39536003
Background: The rise of insecticide resistance poses a growing challenge to the effectiveness of vector control tools, particularly in rural areas. However, the urban setting has received comparatively less focus...
4.
Machani M, Onyango S, Nzioki I, Milanoi S, Nattoh G, Githure J, et al.
Res Sq
. 2024 Oct;
PMID: 39372941
Background: Increasing urbanization in tropical Africa may create new niches for malaria vectors, potentially leading to higher disease transmission rates. Vector control efforts remain largely targeted at ecologically rural bio-complexities...
5.
Zhou G, Githure J, Lee M, Zhong D, Wang X, Atieli H, et al.
Malar J
. 2024 Mar;
23(1):74.
PMID: 38475793
Background: Understanding of malaria ecology is a prerequisite for designing locally adapted control strategies in resource-limited settings. The aim of this study was to utilize the spatial heterogeneity in malaria...
6.
Jeang B, Zhong D, Lee M, Atieli H, Yewhalaw D, Yan G
Malar J
. 2024 Jan;
23(1):36.
PMID: 38287365
Background: Timely molecular surveillance of Plasmodium falciparum kelch 13 (k13) gene mutations is essential for monitoring the emergence and stemming the spread of artemisinin resistance. Widespread artemisinin resistance, as observed...
7.
Orondo P, Zhou G, Ochwedo K, Wang X, Ondeto B, Lee M, et al.
Malar J
. 2023 Oct;
22(1):298.
PMID: 37798779
Background: The rise of insecticide resistance against malaria vectors in sub-Saharan Africa has resulted in the need to consider other methods of vector control. The potential use of biological methods,...
8.
Orondo P, Ochwedo K, Atieli H, Yan G, Githeko A, Nyanjom S
PLoS One
. 2023 Jun;
18(6):e0286509.
PMID: 37267284
Gravid Anopheles malaria vectors depend on both chemical and physical (including microbial) cues for selection of preferred habitats for oviposition. This study focused on assessing the effects of bacterial composition...
9.
Lokamar P, Kutwah M, Munde E, Oloo D, Atieli H, Gumo S, et al.
PLOS Glob Public Health
. 2023 Mar;
2(8):e0000682.
PMID: 36962768
Brucellosis is widely distributed in more than 170 countries around the world, where it poses a huge threat to animal husbandry and human health. Brucellosis is a worldwide re-emerging zoonotic...
10.
Otambo W, Ochwedo K, Omondi C, Lee M, Wang C, Atieli H, et al.
Malar J
. 2023 Mar;
22(1):83.
PMID: 36890544
Background: In western Kenya, not all malaria cases are reported as stipulated in the community case management of malaria (CCMm) strategy. This underreporting affects the equity distribution of malaria commodities...