The lack of high-resolution measurements of 3D ecosystem structure across broad spatial extents impedes major advancements in animal ecology and biodiversity science. We aim to fill this gap by using Light Detection and Ranging (LiDAR) technology to characterize the vertical and horizontal complexity of vegetation and landscapes at high resolution across regional to continental scales. The newly LiDAR-derived 3D ecosystem structures will be applied in species distribution models for breeding birds in forests and marshlands, for insect pollinators in agricultural landscapes, and songbirds at stopover sites during migration. This will allow novel insights into the hierarchical structure of animal-habitat associations, into why animal populati...
Shrub encroachment in semi-natural grasslands threatens local biodiversity unless management is appl...
The structural heterogeneity of vegetation is a key factor for explaining animal diversity patterns ...
Airborne LiDAR (Light Detection and Ranging) is a remote sensing technology that offers the ability ...
Contains fulltext : 177112.pdf (publisher's version ) (Open Access
Figure 1 - The vertical and horizontal distribution of plants influences habitat structure ...
Global biodiversity is threatened by unprecedented and increasing anthropogenic pressures, including...
1. Light detection and ranging (LiDAR) technology provides ecologists with high-resolution data on t...
The advent of lidar has revolutionized the way we observe and measure vegetation structure from the ...
Aim: Vegetation structure is a key determinant of animal diversity and species distributions. The in...
Aim: Vegetation structure is a key determinant of animal diversity and species distributions. The in...
Ecological models require a large variety of variables in order to describe the biotic and abiotic c...
Abstract—Vegetation canopy structure is a critically important habitat characteristic for many threa...
Modernization of agricultural land use across Europe is responsible for a substantial decline of lin...
Vegetation structure is an important biodiversity indicator providing biological and physical enviro...
Modernization of agricultural land use across Europe is responsible for a substantial decline of lin...
Shrub encroachment in semi-natural grasslands threatens local biodiversity unless management is appl...
The structural heterogeneity of vegetation is a key factor for explaining animal diversity patterns ...
Airborne LiDAR (Light Detection and Ranging) is a remote sensing technology that offers the ability ...
Contains fulltext : 177112.pdf (publisher's version ) (Open Access
Figure 1 - The vertical and horizontal distribution of plants influences habitat structure ...
Global biodiversity is threatened by unprecedented and increasing anthropogenic pressures, including...
1. Light detection and ranging (LiDAR) technology provides ecologists with high-resolution data on t...
The advent of lidar has revolutionized the way we observe and measure vegetation structure from the ...
Aim: Vegetation structure is a key determinant of animal diversity and species distributions. The in...
Aim: Vegetation structure is a key determinant of animal diversity and species distributions. The in...
Ecological models require a large variety of variables in order to describe the biotic and abiotic c...
Abstract—Vegetation canopy structure is a critically important habitat characteristic for many threa...
Modernization of agricultural land use across Europe is responsible for a substantial decline of lin...
Vegetation structure is an important biodiversity indicator providing biological and physical enviro...
Modernization of agricultural land use across Europe is responsible for a substantial decline of lin...
Shrub encroachment in semi-natural grasslands threatens local biodiversity unless management is appl...
The structural heterogeneity of vegetation is a key factor for explaining animal diversity patterns ...
Airborne LiDAR (Light Detection and Ranging) is a remote sensing technology that offers the ability ...