Biodiversity and habitat face increasing pressures due to human and natural influences that alter vegetation structure. Because of the inherent difficulty of measuring forested vegetation three-dimensional (3-D) structure on the ground, this important component of biodiversity and habitat has been, until recently, largely restricted to local measurements, or at larger scales to generalizations. New lidar and radar remote sensing instruments such as those proposed for spaceborne missions will provide the capability to fill this gap. This paper reviews the state of the art for incorporatinginformation on vegetation 3-D structure into biodiversity and habitat science and management approaches, with emphasis on use of lidar and radar data. Firs...
"Understanding patterns of biodiversity and the linkage to forest structure is a key issue in ecolog...
The change, reduction, or extinction of species is a major issue currently facing the Earth. Efforts...
Integrating multisource Earth observation (EO) data and methods allows studying forest biodiversity ...
The advent of lidar has revolutionized the way we observe and measure vegetation structure from the ...
Global biodiversity is threatened by unprecedented and increasing anthropogenic pressures, including...
Key is the challenge to develop a biodiversity observation system that is transmissible and cost eff...
Three-dimensional structure is a fundamental physical element of habitat. Because of the well-recogn...
Vegetation structure is an important factor that influences wildlife-habitat selection, reproduction...
Human and natural forces are rapidly modifying the global distribution and structure of terrestrial ...
FORESTS are important ecosystems to all life on Earth. They provide shelter for many flora and fauna...
Insights into vegetation and aboveground biomass dynamics within terrestrial ecosystems have come al...
The use of lidars and radars to measure forest structure attributes such as height and biomass are b...
Forest ecosystems are a significant faction of the Earth’s landscape, and accurate estimates of fore...
This research concentrates on using multiple platforms of lidar remote sensing for assessing vegetat...
Ecosystem structure, especially vertical vegetation structure, is one of the six essential biodivers...
"Understanding patterns of biodiversity and the linkage to forest structure is a key issue in ecolog...
The change, reduction, or extinction of species is a major issue currently facing the Earth. Efforts...
Integrating multisource Earth observation (EO) data and methods allows studying forest biodiversity ...
The advent of lidar has revolutionized the way we observe and measure vegetation structure from the ...
Global biodiversity is threatened by unprecedented and increasing anthropogenic pressures, including...
Key is the challenge to develop a biodiversity observation system that is transmissible and cost eff...
Three-dimensional structure is a fundamental physical element of habitat. Because of the well-recogn...
Vegetation structure is an important factor that influences wildlife-habitat selection, reproduction...
Human and natural forces are rapidly modifying the global distribution and structure of terrestrial ...
FORESTS are important ecosystems to all life on Earth. They provide shelter for many flora and fauna...
Insights into vegetation and aboveground biomass dynamics within terrestrial ecosystems have come al...
The use of lidars and radars to measure forest structure attributes such as height and biomass are b...
Forest ecosystems are a significant faction of the Earth’s landscape, and accurate estimates of fore...
This research concentrates on using multiple platforms of lidar remote sensing for assessing vegetat...
Ecosystem structure, especially vertical vegetation structure, is one of the six essential biodivers...
"Understanding patterns of biodiversity and the linkage to forest structure is a key issue in ecolog...
The change, reduction, or extinction of species is a major issue currently facing the Earth. Efforts...
Integrating multisource Earth observation (EO) data and methods allows studying forest biodiversity ...