This chapter describes the application of ILCYM (Insect Life Cycle Modelling) software, which supports the development of process-oriented temperature-driven and age-stage structured insect phenology/population models. ILCYM interactively leads the user through the steps for developing insect phenology models, for conducting simulations, and for producing potential population distribution and risk mapping under current or future temperature (climate change) scenarios. The phenology model developed for the potato tuber moth Phthorimaea operculella (Lepidoptera: Gelechiidae) is used to demonstrate the resulting modelling outputs
<p>Degree-day models have long been used to predict events in the life cycle of insects and therewit...
Originating from the Andean region and co-evolved with its food plant, the potato (Solanum sp.), the...
Not AvailableS. litura is a polyphagous pest on agri-horticultural systems and reported to feed on m...
This book describes the application of ILCYM software, which supports the development of process-ori...
Climate change is expected to exacerbate the already serious challenges to food security and economi...
Not AvailableStudies were conducted to develop temperature-based phenology model for Spodoptera litu...
International audienceInsect development is heavily impacted by temperature and the development time...
This chapter discusses the theoretical basis and application of phenology models for poikilothermic ...
Liriomyza huidobrensis (Blanchard) is an economically important and highly polyphagous worldwide pes...
The common cutworm, Spodoptera litura, has become a major pest of soybean (Glycine max) throughout i...
In the context of plant protection strategies against insect pests, the role of modelling is arousin...
The current eBook collection includes substantial scientific work in describing how insect species a...
A comprehensive phenology/voltinism model was developed for Phratora vulgatissima, an important pest...
13 pagesInternational audienceThe physiological development of insect pests is driven by temperature...
Temperature-dependent population growth of diamondback moth (DBM) Plutella xylostella (L.), a prolif...
<p>Degree-day models have long been used to predict events in the life cycle of insects and therewit...
Originating from the Andean region and co-evolved with its food plant, the potato (Solanum sp.), the...
Not AvailableS. litura is a polyphagous pest on agri-horticultural systems and reported to feed on m...
This book describes the application of ILCYM software, which supports the development of process-ori...
Climate change is expected to exacerbate the already serious challenges to food security and economi...
Not AvailableStudies were conducted to develop temperature-based phenology model for Spodoptera litu...
International audienceInsect development is heavily impacted by temperature and the development time...
This chapter discusses the theoretical basis and application of phenology models for poikilothermic ...
Liriomyza huidobrensis (Blanchard) is an economically important and highly polyphagous worldwide pes...
The common cutworm, Spodoptera litura, has become a major pest of soybean (Glycine max) throughout i...
In the context of plant protection strategies against insect pests, the role of modelling is arousin...
The current eBook collection includes substantial scientific work in describing how insect species a...
A comprehensive phenology/voltinism model was developed for Phratora vulgatissima, an important pest...
13 pagesInternational audienceThe physiological development of insect pests is driven by temperature...
Temperature-dependent population growth of diamondback moth (DBM) Plutella xylostella (L.), a prolif...
<p>Degree-day models have long been used to predict events in the life cycle of insects and therewit...
Originating from the Andean region and co-evolved with its food plant, the potato (Solanum sp.), the...
Not AvailableS. litura is a polyphagous pest on agri-horticultural systems and reported to feed on m...