Drones have the potential to revolutionize malaria vector control initiatives through rapid and accurate mapping of potential malarial mosquito larval habitats to help direct field Larval Source Management (LSM) efforts. However, there are no clear recommendations on how these habitats can be extracted from drone imagery in an operational context. This paper compares the results of two mapping approaches: supervised image classification using machine learning and Technology-Assisted Digitising (TAD) mapping that employs a new region growing tool suitable for non-experts. These approaches were applied concurrently to drone imagery acquired at seven sites in Zanzibar, United Republic of Tanzania. Whilst the two approaches were similar in proc...
Land-use practices such as agriculture can impact mosquito vector breeding ecology, resulting in cha...
BackgroundIdentification of malaria vector breeding sites can enhance control activities. Although a...
Abstract Mosquito-borne diseases such as dengue fever and malaria are the top 10 leading causes of d...
Drones have the potential to revolutionize malaria vector control initiatives through rapid and accu...
Background Spatio-temporal trends in mosquito-borne diseases are driven by the locations and season...
Abstract Background There is a...
Disease control programs are needed to identify the breeding sites of mosquitoes, which transmit mal...
Background There is a growing awareness that if we are to achieve the ambitious goal of malaria e...
Abstract Background Larval Source Management (LSM) is an important tool for malaria vector control a...
Abstract In recent years, global health security has been threatened by the geographical expansion o...
The World Health Organization (WHO) has stated that effective vector control measures are critical t...
Interest in larval source management (LSM) as an adjunct intervention to control and eliminate malar...
Land-use practices such as agriculture can impact mosquito vector breeding ecology, resulting in cha...
This study deals with Drone based Aerial Survey in analyzing and identification of highly vulnerable...
Images generated have been compared with those obtained from Landsat. Analyses to correct existing b...
Land-use practices such as agriculture can impact mosquito vector breeding ecology, resulting in cha...
BackgroundIdentification of malaria vector breeding sites can enhance control activities. Although a...
Abstract Mosquito-borne diseases such as dengue fever and malaria are the top 10 leading causes of d...
Drones have the potential to revolutionize malaria vector control initiatives through rapid and accu...
Background Spatio-temporal trends in mosquito-borne diseases are driven by the locations and season...
Abstract Background There is a...
Disease control programs are needed to identify the breeding sites of mosquitoes, which transmit mal...
Background There is a growing awareness that if we are to achieve the ambitious goal of malaria e...
Abstract Background Larval Source Management (LSM) is an important tool for malaria vector control a...
Abstract In recent years, global health security has been threatened by the geographical expansion o...
The World Health Organization (WHO) has stated that effective vector control measures are critical t...
Interest in larval source management (LSM) as an adjunct intervention to control and eliminate malar...
Land-use practices such as agriculture can impact mosquito vector breeding ecology, resulting in cha...
This study deals with Drone based Aerial Survey in analyzing and identification of highly vulnerable...
Images generated have been compared with those obtained from Landsat. Analyses to correct existing b...
Land-use practices such as agriculture can impact mosquito vector breeding ecology, resulting in cha...
BackgroundIdentification of malaria vector breeding sites can enhance control activities. Although a...
Abstract Mosquito-borne diseases such as dengue fever and malaria are the top 10 leading causes of d...