These tools will no longer be maintained as of December 31, 2024. Archived website can be found here. PubMed4Hh GitHub repository can be found here. Contact NLM Customer Service if you have questions.
172 related articles for article (PubMed ID: 38791773)
1. The Impact of Climatic Factors on Temporal Mosquito Distribution and Population Dynamics in an Area Targeted for Sterile Insect Technique Pilot Trials. Mazarire TT; Lobb L; Newete SW; Munhenga G Int J Environ Res Public Health; 2024 Apr; 21(5):. PubMed ID: 38791773 [TBL] [Abstract][Full Text] [Related]
2. Estimates of the population size and dispersal range of Anopheles arabiensis in Northern KwaZulu-Natal, South Africa: implications for a planned pilot programme to release sterile male mosquitoes. Kaiser ML; Wood OR; Damiens D; Brooke BD; Koekemoer LL; Munhenga G Parasit Vectors; 2021 Apr; 14(1):205. PubMed ID: 33874984 [TBL] [Abstract][Full Text] [Related]
3. Population Dynamics and Plasmodium falciparum (Haemosporida: Plasmodiidae) Infectivity Rates for the Malaria Vector Anopheles arabiensis (Diptera: Culicidae) at Mamfene, KwaZulu-Natal, South Africa. Dandalo LC; Brooke BD; Munhenga G; Lobb LN; Zikhali J; Ngxongo SP; Zikhali PM; Msimang S; Wood OR; Mofokeng M; Misiani E; Chirwa T; Koekemoer LL J Med Entomol; 2017 Nov; 54(6):1758-1766. PubMed ID: 28968846 [TBL] [Abstract][Full Text] [Related]
4. Exploring the Influence of Daily Climate Variables on Malaria Transmission and Abundance of Abiodun GJ; Njabo KY; Witbooi PJ; Adeola AM; Fuller TL; Okosun KO; Makinde OS; Botai JO J Environ Public Health; 2018; 2018():3143950. PubMed ID: 30584427 [TBL] [Abstract][Full Text] [Related]
5. Mating competitiveness of sterile genetic sexing strain males (GAMA) under laboratory and semi-field conditions: Steps towards the use of the Sterile Insect Technique to control the major malaria vector Anopheles arabiensis in South Africa. Munhenga G; Brooke BD; Gilles JR; Slabbert K; Kemp A; Dandalo LC; Wood OR; Lobb LN; Govender D; Renke M; Koekemoer LL Parasit Vectors; 2016 Mar; 9():122. PubMed ID: 26934869 [TBL] [Abstract][Full Text] [Related]
6. Optimization of mosquito egg production under mass rearing setting: effects of cage volume, blood meal source and adult population density for the malaria vector, Anopheles arabiensis. Mamai W; Bimbile-Somda NS; Maiga H; Juarez JG; Muosa ZA; Ali AB; Lees RS; Gilles JR Malar J; 2017 Jan; 16(1):41. PubMed ID: 28118825 [TBL] [Abstract][Full Text] [Related]
7. Isolation and characterization of a temperature-sensitive lethal strain of Anopheles arabiensis for SIT-based application. Ndo C; Poumachu Y; Metitsi D; Awono-Ambene HP; Tchuinkam T; Gilles JLR; Bourtzis K Parasit Vectors; 2018 Dec; 11(Suppl 2):659. PubMed ID: 30583745 [TBL] [Abstract][Full Text] [Related]
8. A review on the progress of sex-separation techniques for sterile insect technique applications against Anopheles arabiensis. Mashatola T; Ndo C; Koekemoer LL; Dandalo LC; Wood OR; Malakoane L; Poumachu Y; Lobb LN; Kaiser M; Bourtzis K; Munhenga G Parasit Vectors; 2018 Dec; 11(Suppl 2):646. PubMed ID: 30583746 [TBL] [Abstract][Full Text] [Related]
9. Modelling the influence of temperature and rainfall on the population dynamics of Anopheles arabiensis. Abiodun GJ; Maharaj R; Witbooi P; Okosun KO Malar J; 2016 Jul; 15():364. PubMed ID: 27421769 [TBL] [Abstract][Full Text] [Related]
10. Spatial and temporal distribution of the malaria mosquito Anopheles arabiensis in northern Sudan: influence of environmental factors and implications for vector control. Ageep TB; Cox J; Hassan MM; Knols BG; Benedict MQ; Malcolm CA; Babiker A; El Sayed BB Malar J; 2009 Jun; 8():123. PubMed ID: 19500425 [TBL] [Abstract][Full Text] [Related]
11. A rapid quality control test to foster the development of the sterile insect technique against Anopheles arabiensis. Culbert NJ; Somda NSB; Hamidou M; Soma DD; Caravantes S; Wallner T; Wadaka M; Yamada H; Bouyer J Malar J; 2020 Jan; 19(1):44. PubMed ID: 31973756 [TBL] [Abstract][Full Text] [Related]
12. Anopheles arabiensis hotspots along intermittent rivers drive malaria dynamics in semi-arid areas of Central Ethiopia. Eba K; Habtewold T; Yewhalaw D; Christophides GK; Duchateau L Malar J; 2021 Mar; 20(1):154. PubMed ID: 33731115 [TBL] [Abstract][Full Text] [Related]
13. Longevity of mass-reared, irradiated and packed male Anopheles arabiensis and Aedes aegypti under simulated environmental field conditions. Culbert NJ; Maiga H; Somda NSB; Gilles JRL; Bouyer J; Mamai W Parasit Vectors; 2018 Nov; 11(1):603. PubMed ID: 30463624 [TBL] [Abstract][Full Text] [Related]
14. "Maskandi experience": exploring the use of a cultural song for community engagement in preparation for a pilot Sterile Insect Technique release programme for malaria vector control in KwaZulu-Natal Province, South Africa 2019. Manana PN; Jewett S; Zikhali J; Dlamini D; Mabaso N; Mlambo Z; Ngobese R; Munhenga G Malar J; 2021 Apr; 20(1):204. PubMed ID: 33910575 [TBL] [Abstract][Full Text] [Related]
15. Evaluation of human-baited double net trap and human-odour-baited CDC light trap for outdoor host-seeking malaria vector surveillance in Kenya and Ethiopia. Degefa T; Yewhalaw D; Zhou G; Atieli H; Githeko AK; Yan G Malar J; 2020 May; 19(1):174. PubMed ID: 32381009 [TBL] [Abstract][Full Text] [Related]
16. Field study site selection, species abundance and monthly distribution of anopheline mosquitoes in the northern Kruger National Park, South Africa. Munhenga G; Brooke BD; Spillings B; Essop L; Hunt RH; Midzi S; Govender D; Braack L; Koekemoer LL Malar J; 2014 Jan; 13():27. PubMed ID: 24460920 [TBL] [Abstract][Full Text] [Related]
17. Predicting and mapping malaria under climate change scenarios: the potential redistribution of malaria vectors in Africa. Tonnang HE; Kangalawe RY; Yanda PZ Malar J; 2010 Apr; 9():111. PubMed ID: 20416059 [TBL] [Abstract][Full Text] [Related]
18. Impact of irradiation on the reproductive traits of field and laboratory An. arabiensis mosquitoes. Poda SB; Guissou E; Maïga H; Bimbile-Somda SN; Gilles J; Rayaisse JB; Lefèvre T; Roux O; Dabiré RK Parasit Vectors; 2018 Dec; 11(1):641. PubMed ID: 30558681 [TBL] [Abstract][Full Text] [Related]
19. Evaluating the potential of the sterile insect technique for malaria control: relative fitness and mating compatibility between laboratory colonized and a wild population of Anopheles arabiensis from the Kruger National Park, South Africa. Munhenga G; Brooke BD; Chirwa TF; Hunt RH; Coetzee M; Govender D; Koekemoer LL Parasit Vectors; 2011 Oct; 4():208. PubMed ID: 22041133 [TBL] [Abstract][Full Text] [Related]
20. Laboratory rearing of Anopheles arabiensis: impact on genetic variability and implications for Sterile Insect Technique (SIT) based mosquito control in northern Sudan. Azrag RS; Ibrahim K; Malcolm C; Rayah EE; El-Sayed B Malar J; 2016 Aug; 15(1):432. PubMed ID: 27799066 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]