Biodiversity includes multiscalar and multitemporal structures and processes, with different levels of functional organization, from genetic to ecosystemic levels. One of the mostly used methods to infer biodiversity is based on taxonomic approaches and community ecology theories. However, gathering extensive data in the field is difficult due to logistic problems, especially when aiming at modelling biodiversity changes in space and time, which assumes statistically sound sampling schemes. In this context, airborne or satellite remote sensing allows information to be gathered over wide areas in a reasonable time. Most of the biodiversity maps obtained from remote sensing have been based on the inference of species richness by regression an...
Assessing biodiversity from field-based data is difficult for a number of practical reasons: (i) est...
Field based biodiversity monitoring presents a number of issues, mainly related to time and cost ef...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceAs...
Biodiversity includes multiscalar and multitemporal structures and processes, with different levels ...
Biodiversity includes multiscalar and multitemporal structures and processes, with different levels ...
1. Biodiversity includes multiscalar and multitemporal structures and processes, with different leve...
1. Biodiversity includes multiscalar and multitemporal structures and processes, with different lev...
1. Biodiversity includes multiscalar and multitemporal structures and processes, with different leve...
In the light of unprecedented planetary changes in biodiversity, real-time and accurate ecosystem an...
Remote sensing represents a powerful tool to derive quantitative and qualitative information about e...
Assessing the level of diversity in plant communities from field-based data is difficult for a numbe...
Biodiversity is organized hierarchically from individuals to populations to major lineages in the tr...
In the face of the growing challenges brought about by human activities, effective planning and deci...
Understanding biodiversity changes in time is crucial to promptly provide management practices again...
Assessing biodiversity from field-based data is difficult for a number of practical reasons: (i) est...
Field based biodiversity monitoring presents a number of issues, mainly related to time and cost ef...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceAs...
Biodiversity includes multiscalar and multitemporal structures and processes, with different levels ...
Biodiversity includes multiscalar and multitemporal structures and processes, with different levels ...
1. Biodiversity includes multiscalar and multitemporal structures and processes, with different leve...
1. Biodiversity includes multiscalar and multitemporal structures and processes, with different lev...
1. Biodiversity includes multiscalar and multitemporal structures and processes, with different leve...
In the light of unprecedented planetary changes in biodiversity, real-time and accurate ecosystem an...
Remote sensing represents a powerful tool to derive quantitative and qualitative information about e...
Assessing the level of diversity in plant communities from field-based data is difficult for a numbe...
Biodiversity is organized hierarchically from individuals to populations to major lineages in the tr...
In the face of the growing challenges brought about by human activities, effective planning and deci...
Understanding biodiversity changes in time is crucial to promptly provide management practices again...
Assessing biodiversity from field-based data is difficult for a number of practical reasons: (i) est...
Field based biodiversity monitoring presents a number of issues, mainly related to time and cost ef...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceAs...