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Field
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three functional prototypes that can be used in participatory workshops. Adaptation of existing models - re-formulation of the socio-ecological system under study: Dynamics of mosquito and bird
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Utilized Physical Demands and Work Environment PHYSICAL DEMANDS: Standing, sitting, walking, talking, or hearing. No special vision requirement. No allergy to rodents or mosquitoes. WORK ENVIRONMENT: Lab
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to, organizing and conducting field research such as collecting mosquito specimens, community engagement, identifying trapping sites, and collecting environmental data. Field work will include driving to field
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mosquito tranAsmission, identification of novel transmission-blocking vaccine antigens, and translational efforts aimed at improving whole-parasite and subunit malaria vaccines. UMB is a public university
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/Associate Professor of Public Health Entomology with 70% research, 30% Extension assignment. Candidates with expertise in arthropods affecting humans including such pests as ticks, bedbugs, mosquitoes, and/or
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operations of a vector-borne infectious disease research laboratory with a focus on mosquito and tick biology. Responsibilities include tick and mosquito rearing, molecular biology research, animal studies
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communities. For more information on our EDI strategy and values click here The Role and Department You will join the InsectNeuroLab in the Department of Biosciences, Durham University (http
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#2 Job Description: The successful applicant will undertake part of the microbial biopesticide discovery pipeline against mosquitoes and pathogens they transmit. He/She will work on Public Health
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methodological comparison between mechanistic vector control models and macroscopic SIR-type models calibrated on serological survey data. Currently, risk indicators (e.g., R₀ estimation) derived from mosquito
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will help develop a machine learning framework that accurately captures the features of genetic data from any population. Specifically, we will focus on human and mosquito data from a variety of