Journal of Applied Ecology, ISSN 0021-8901, 02/2017, Volume 54, Issue 1, pp. 205 - 215
Summary The invasive yellow‐legged hornet was first discovered in Europe, in south‐western France, in 2004. It has since spread very rapidly and has caused...
spread model | biological invasion | CLIMEX | long distance | insect | Vespa velutina | dispersal | nest | pest management | reaction–diffusion model | LONG-DISTANCE DISPERSAL | NIGRITHORAX | reaction-diffusion model | CLIMATE-CHANGE | EUROPE | VESPA-VELUTINA LEPELETIER | HYMENOPTERA VESPIDAE | EXPANSION | ECOLOGY | BIOLOGICAL-CONTROL | ASIAN HORNET | BIODIVERSITY CONSERVATION | HYM | Honeybee | Wasps | Pests | Analysis | Biological control | Pest control | Mathematical models | Insects | Wildlife management | Dispersal | Nonnative species
spread model | biological invasion | CLIMEX | long distance | insect | Vespa velutina | dispersal | nest | pest management | reaction–diffusion model | LONG-DISTANCE DISPERSAL | NIGRITHORAX | reaction-diffusion model | CLIMATE-CHANGE | EUROPE | VESPA-VELUTINA LEPELETIER | HYMENOPTERA VESPIDAE | EXPANSION | ECOLOGY | BIOLOGICAL-CONTROL | ASIAN HORNET | BIODIVERSITY CONSERVATION | HYM | Honeybee | Wasps | Pests | Analysis | Biological control | Pest control | Mathematical models | Insects | Wildlife management | Dispersal | Nonnative species
Journal Article
Biological Invasions, ISSN 1387-3547, 4/2018, Volume 20, Issue 4, pp. 905 - 922
Reticulitermes flavipes is an invasive termite from North America that is found in several European countries, including France from north to south. It feeds...
Biological invasion | Freshwater & Marine Ecology | Spatial analysis | Ecology | Modeling | Life Sciences | Climate change | Compartmental model | Dispersal | Termites | Population dynamics | Developmental Biology | Plant Sciences | Reticulitermes flavipes | GENETIC-ANALYSIS | MANAGEMENT | MITOCHONDRIAL | URBAN | EUROPE | SUBTERRANEAN TERMITES | BIOLOGY | ECOLOGY | ISOPTERA RHINOTERMITIDAE | BIODIVERSITY CONSERVATION | COLONY BREEDING STRUCTURE | SANTONENSIS | Urbanization | Climate | Global temperature changes | Analysis | Population biology | Range extension | Temperature | Habitats | Colonies | Human influences | Spatial discrimination | Pests | Swarming | Castes | Dispersion | Ecological monitoring | Global warming | Social organization | Budding | Lumber | Biodiversity and Ecology | Environmental Sciences | Global Changes
Biological invasion | Freshwater & Marine Ecology | Spatial analysis | Ecology | Modeling | Life Sciences | Climate change | Compartmental model | Dispersal | Termites | Population dynamics | Developmental Biology | Plant Sciences | Reticulitermes flavipes | GENETIC-ANALYSIS | MANAGEMENT | MITOCHONDRIAL | URBAN | EUROPE | SUBTERRANEAN TERMITES | BIOLOGY | ECOLOGY | ISOPTERA RHINOTERMITIDAE | BIODIVERSITY CONSERVATION | COLONY BREEDING STRUCTURE | SANTONENSIS | Urbanization | Climate | Global temperature changes | Analysis | Population biology | Range extension | Temperature | Habitats | Colonies | Human influences | Spatial discrimination | Pests | Swarming | Castes | Dispersion | Ecological monitoring | Global warming | Social organization | Budding | Lumber | Biodiversity and Ecology | Environmental Sciences | Global Changes
Journal Article
International Journal of Pest Management, ISSN 0967-0874, 07/2019, Volume 65, Issue 3, pp. 258 - 267
Invasive species can spread locally on their own and can be introduced at long distance by humans. Here, we show how a spread model can be used to explore the...
Vespa velutina | dispersal | Biological invasion | pest management | island | introduction | MIGRATION | PATHWAYS | LONG-DISTANCE DISPERSAL | VESPA-VELUTINA-NIGRITHORAX | PATTERNS | ENTOMOLOGY | INVASION | HYMENOPTERA VESPIDAE | FOREST INSECT | ASIAN HORNET | CLIMATE
Vespa velutina | dispersal | Biological invasion | pest management | island | introduction | MIGRATION | PATHWAYS | LONG-DISTANCE DISPERSAL | VESPA-VELUTINA-NIGRITHORAX | PATTERNS | ENTOMOLOGY | INVASION | HYMENOPTERA VESPIDAE | FOREST INSECT | ASIAN HORNET | CLIMATE
Journal Article
Integrative and Comparative Biology, ISSN 1540-7063, 07/2016, Volume 56, Issue 1, pp. 85 - 97
Synopsis Most tropical ectotherms live near their physiological limits for temperature. Substantial ecological effects of global change are predicted in the...
THERMOREGULATION | THERMAL LIMITS | ZOOLOGY | TOLERANCE | GLOBAL ANALYSIS | DIVERSITY | LANDSCAPES | BODY-TEMPERATURE | INSELBERGS | LATITUDE | CHALLENGES | Temperature | French Guiana | Reptiles - physiology | Ants - physiology | Clusia - physiology | Hot Temperature | Microclimate | Animals | Climate Change | Tropical Climate | Amphibians - physiology | Insecta - physiology | Plant Leaves - physiology | Research | Poikilotherms | Microclimatology | Alternate generation | Life Sciences
THERMOREGULATION | THERMAL LIMITS | ZOOLOGY | TOLERANCE | GLOBAL ANALYSIS | DIVERSITY | LANDSCAPES | BODY-TEMPERATURE | INSELBERGS | LATITUDE | CHALLENGES | Temperature | French Guiana | Reptiles - physiology | Ants - physiology | Clusia - physiology | Hot Temperature | Microclimate | Animals | Climate Change | Tropical Climate | Amphibians - physiology | Insecta - physiology | Plant Leaves - physiology | Research | Poikilotherms | Microclimatology | Alternate generation | Life Sciences
Journal Article
Functional Ecology, ISSN 0269-8463, 12/2014, Volume 28, Issue 6, pp. 1449 - 1458
Summary Ectotherms rely heavily on the spatial variance of environmental conditions to thermoregulate. Theoretically, their fitness is maximized when they can...
lethal temperature | microclimate | microhabitat | ectotherms | temperature | thermal stress | thermography | spatial variance | aggregation index | climate change | Microhabitat | Thermal stress | Climate change | Temperature | Ectotherms | Spatial variance | Aggregation index | Microclimate | Lethal temperature | Thermography | AVOIDANCE | CHALLENGES | TRANSPIRATION | STOMATAL CONDUCTANCE | MICROCLIMATES | TETRANYCHUS-URTICAE | ECOLOGY | LANDSCAPES | STRESS | PHOTOSYNTHESIS | Agricultural pests | Global temperature changes | Organic gardening | Life Sciences | Invertebrate Zoology | Symbiosis | Animal biology | Ecology, environment
lethal temperature | microclimate | microhabitat | ectotherms | temperature | thermal stress | thermography | spatial variance | aggregation index | climate change | Microhabitat | Thermal stress | Climate change | Temperature | Ectotherms | Spatial variance | Aggregation index | Microclimate | Lethal temperature | Thermography | AVOIDANCE | CHALLENGES | TRANSPIRATION | STOMATAL CONDUCTANCE | MICROCLIMATES | TETRANYCHUS-URTICAE | ECOLOGY | LANDSCAPES | STRESS | PHOTOSYNTHESIS | Agricultural pests | Global temperature changes | Organic gardening | Life Sciences | Invertebrate Zoology | Symbiosis | Animal biology | Ecology, environment
Journal Article
Journal of Mathematical Biology, ISSN 0303-6812, 9/2017, Volume 75, Issue 3, pp. 543 - 575
Analytical modeling of predator–prey systems has shown that specialist natural enemies can slow, stop and even reverse pest invasions, assuming that the prey...
Prey–predator interaction | Mathematical and Computational Biology | Biological control | Traveling wave | Mathematics | Generalist predator | 35K57 | Long time dynamics | 92B99 | 92D25 | Invasion process | Applications of Mathematics | 35B40 | Reaction diffusion system | 92D40 | SYSTEM | PREDATOR-PREY MODEL | EQUATIONS | INSECT | FUNCTIONAL-RESPONSE | SPATIOTEMPORAL COMPLEXITY | TRAVELING-WAVE SOLUTIONS | COMPETITION | BIOLOGY | MATHEMATICAL & COMPUTATIONAL BIOLOGY | DYNAMICS | iological control | BIOLOGICAL-CONTROL | Prey-predator interaction | Pest Control | Predatory Behavior | Introduced Species | Animals | Models, Biological | Population Dynamics | Usage | Mathematical models | Models | Pests | Methods | Populations | Partial differential equations | Spatial discrimination | Bistability | Prey | Predators | Differential equations | Reaction-diffusion equations | Invasions | Predictive control | Natural enemies
Prey–predator interaction | Mathematical and Computational Biology | Biological control | Traveling wave | Mathematics | Generalist predator | 35K57 | Long time dynamics | 92B99 | 92D25 | Invasion process | Applications of Mathematics | 35B40 | Reaction diffusion system | 92D40 | SYSTEM | PREDATOR-PREY MODEL | EQUATIONS | INSECT | FUNCTIONAL-RESPONSE | SPATIOTEMPORAL COMPLEXITY | TRAVELING-WAVE SOLUTIONS | COMPETITION | BIOLOGY | MATHEMATICAL & COMPUTATIONAL BIOLOGY | DYNAMICS | iological control | BIOLOGICAL-CONTROL | Prey-predator interaction | Pest Control | Predatory Behavior | Introduced Species | Animals | Models, Biological | Population Dynamics | Usage | Mathematical models | Models | Pests | Methods | Populations | Partial differential equations | Spatial discrimination | Bistability | Prey | Predators | Differential equations | Reaction-diffusion equations | Invasions | Predictive control | Natural enemies
Journal Article
Functional Ecology, ISSN 0269-8463, 2014, Volume 28, p. 1449–1458
A common approach in global change biology is to relatethe average change of a climate signal to biological processes(Whittaker 2001). However, focusing on...
Life Sciences
Life Sciences
Journal Article
Mathematical Medicine and Biology, ISSN 1477-8599, 2014, Volume 31, Issue 3, pp. 284 - 301
We model the conditions for pest eradication in a reaction-diffusion system made of a prey and a generalist predator through spatial impulsive control within a...
Pest control | Eigenvalue problem | Generalist predator | Host-parasitoid | Impulsive control | Invasion biology | Integro-partial differential equations | LEAFMINER CAMERARIA-OHRIDELLA | MANAGEMENT | STABILIZATION | PATTERNS | EMERGENCE | LEAF-LITTER | GRACILLARIIDAE | PREDICTION | integro-partial differential equations | PARASITOIDS | BIOLOGY | MATHEMATICAL & COMPUTATIONAL BIOLOGY | host-parasitoid | invasion biology | SYSTEMS | pest control | impulsive control | generalist predator | eigenvalue problem | Models, Theoretical | Predatory Behavior | Animals | Lepidoptera - growth & development | Plant Leaves - parasitology | Pest Control, Biological - methods | Aesculus - parasitology | Life Sciences | Invertebrate Zoology | Symbiosis | Animal biology | Ecology, environment
Pest control | Eigenvalue problem | Generalist predator | Host-parasitoid | Impulsive control | Invasion biology | Integro-partial differential equations | LEAFMINER CAMERARIA-OHRIDELLA | MANAGEMENT | STABILIZATION | PATTERNS | EMERGENCE | LEAF-LITTER | GRACILLARIIDAE | PREDICTION | integro-partial differential equations | PARASITOIDS | BIOLOGY | MATHEMATICAL & COMPUTATIONAL BIOLOGY | host-parasitoid | invasion biology | SYSTEMS | pest control | impulsive control | generalist predator | eigenvalue problem | Models, Theoretical | Predatory Behavior | Animals | Lepidoptera - growth & development | Plant Leaves - parasitology | Pest Control, Biological - methods | Aesculus - parasitology | Life Sciences | Invertebrate Zoology | Symbiosis | Animal biology | Ecology, environment
Journal Article
Proceedings of the Royal Society of London. Series B: Biological Sciences, ISSN 0962-8452, 08/2000, Volume 267, Issue 1452, pp. 1575 - 1582
In a previous study, three of the authors designed a one–dimensional model to simulate the propagation of rabies within a growing fox population; the influence...
Foxes | Population growth | Disease models | Rabies | Vaccination | Mortality | Reproductive sterilization | Contraception | Birth rates | Modeling | Discrete modelling | Oral vaccination | oral vaccination | discrete modelling | DISTANCE | DISPERSION | rabies | RED FOX | foxes | contraception | FERTILITY | EUROPE | DENSITY | EVOLUTIONARY BIOLOGY | BIOLOGY | WILDLIFE | ECOLOGY | VULPES-VULPES | EPIDEMIOLOGY | Rabies - prevention & control | Animals | Rabies - veterinary | Models, Biological | Computer Simulation | Rabies - immunology
Foxes | Population growth | Disease models | Rabies | Vaccination | Mortality | Reproductive sterilization | Contraception | Birth rates | Modeling | Discrete modelling | Oral vaccination | oral vaccination | discrete modelling | DISTANCE | DISPERSION | rabies | RED FOX | foxes | contraception | FERTILITY | EUROPE | DENSITY | EVOLUTIONARY BIOLOGY | BIOLOGY | WILDLIFE | ECOLOGY | VULPES-VULPES | EPIDEMIOLOGY | Rabies - prevention & control | Animals | Rabies - veterinary | Models, Biological | Computer Simulation | Rabies - immunology
Journal Article
Cybergeo, ISSN 1278-3366, 06/2017
Journal Article
CyberGeo, 2017, Volume 2017
Journal Article
Cybergeo : revue européenne de géographie / European journal of geography, 06/2017
Cet article présente une recherche sur les termites souterrains en région Centre-Val de Loire. Très peu étudiée en sciences humaines et sociales, la géographie...
Journal Article
Cybergeo, 06/2017
This study presents research concerning subterranean termites found in the Centre-Val de Loire region. More specifically, we examined the geographical...
termites | urban pest | spatial analysis | favorable area | Reticulitermes flavipes | invasive species
termites | urban pest | spatial analysis | favorable area | Reticulitermes flavipes | invasive species
Journal Article
Cybergeo : Revue européenne de géographie / European journal of geography, ISSN 1278-3366, 01/2017
Journal Article
Proceedings of the Royal Society of London. Series B: Biological Sciences, ISSN 0962-8452, 06/1997, Volume 264, Issue 1383, pp. 785 - 794
We present a deterministic model of the dynamics of two microparasites simultaneously infecting a single host population. Both microparasites are feline...
Cats | Disease transmission | Disease models | Viruses | Population size | Population dynamics | Infections | Feline leukemia virus | Epidemiology | Parasite hosts | COEXISTENCE | EVOLUTIONARY BIOLOGY | PATHOGEN | DISEASES | IMMUNODEFICIENCY-VIRUS | BIOLOGY | ECOLOGY | MODEL | LEUKEMIA-VIRUS INFECTION | Immunodeficiency Virus, Feline - isolation & purification | Leukemia Virus, Feline - isolation & purification | Feline Acquired Immunodeficiency Syndrome - transmission | Animals | Cats - virology | Leukemia, Feline - virology | Leukemia, Feline - transmission | Models, Biological | Immunodeficiency Virus, Feline - physiology | Leukemia, Feline - physiopathology | Feline Acquired Immunodeficiency Syndrome - physiopathology | Leukemia Virus, Feline - physiology | Life Sciences | Other
Cats | Disease transmission | Disease models | Viruses | Population size | Population dynamics | Infections | Feline leukemia virus | Epidemiology | Parasite hosts | COEXISTENCE | EVOLUTIONARY BIOLOGY | PATHOGEN | DISEASES | IMMUNODEFICIENCY-VIRUS | BIOLOGY | ECOLOGY | MODEL | LEUKEMIA-VIRUS INFECTION | Immunodeficiency Virus, Feline - isolation & purification | Leukemia Virus, Feline - isolation & purification | Feline Acquired Immunodeficiency Syndrome - transmission | Animals | Cats - virology | Leukemia, Feline - virology | Leukemia, Feline - transmission | Models, Biological | Immunodeficiency Virus, Feline - physiology | Leukemia, Feline - physiopathology | Feline Acquired Immunodeficiency Syndrome - physiopathology | Leukemia Virus, Feline - physiology | Life Sciences | Other
Journal Article
Ecological Modelling, ISSN 0304-3800, 1997, Volume 97, Issue 1, pp. 23 - 34
The propagation of rabies within an increasing population of foxes is studied. A one-dimensional discrete deterministic model is devised to analyze the...
Epidemic | Foxes | Discrete modelling | Oral vaccination | Rabies | oral vaccination | discrete modelling | EFFICACY | epidemic | K GU ECOLOGY | DYNAMICS | rabies | ECOLOGY | VULPES-VULPES | RED FOX | foxes
Epidemic | Foxes | Discrete modelling | Oral vaccination | Rabies | oral vaccination | discrete modelling | EFFICACY | epidemic | K GU ECOLOGY | DYNAMICS | rabies | ECOLOGY | VULPES-VULPES | RED FOX | foxes
Journal Article
09/2015
Reaction-diffusion analytical modeling of predator-prey systems has shown that specialist natural enemies can slow, stop and even reverse pest invasions,...
Mathematics - Analysis of PDEs
Mathematics - Analysis of PDEs
Journal Article
Le premier chapitre de mon HDR concerne la propagation des vibrations dans un système hôte-parasitoïde. Mais avant de pouvoir analyser les vibrations émises...
EDP | EDO | éléments finis | [SDV] Life Sciences | modélisation | communication vibratoire | système hôte-parasitoïde | espèces invasives | analyse en ondelettes | écologie physique | dynamique des populations
EDP | EDO | éléments finis | [SDV] Life Sciences | modélisation | communication vibratoire | système hôte-parasitoïde | espèces invasives | analyse en ondelettes | écologie physique | dynamique des populations
Dissertation
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