Understanding patterns of biodiversity in deep sea systems is increasingly important because human activities are extending further into these areas. However, obtaining data is difficult, limiting the ability of science to inform management decisions. We have used three different methods of quantifying biodiversity to describe patterns of biodiversity in an area that includes two marine reserves in deep water off southern Australia. We used biological data collected during a recent survey, combined with extensive physical data to model, predict and map three different attributes of biodiversity: distributions of common species, beta diversity and rank abundance distributions (RAD). The distribution of each of eight common species was unique...
Diversity is one of the most frequently used attributes of ecological communities, and there is a lo...
The global imperative to sustainably manage deep-sea bottom fisheries and mitigate impacts to benthi...
The patterns and drivers of marine biodiversity and ecosystem functioning and how biological communi...
© 2017 Dr. Skipton Nicholas Charles WoolleyDeep-sea ecosystems –- from the continental shelf to the ...
Aim Mining and petroleum industries are exploring for resources in deep...
Aim Mining and petroleum industries are exploring for resources in deep...
Abstract. Until recently, quantitative data on the benthic fauna along the coast of Victoria, south-...
Most of our knowledge of biodiversity and its causes in the deep-sea benthos derives from regional-s...
Most of our knowledge of biodiversity and its causes in the deep-sea benthos derives from regional-s...
Submarine canyons are associated with increased biodiversity, including cold-water coral (CWC) colon...
Knowledge of spatial patterns of biota has become a commodity for conservation practitioners and spa...
Submarine canyons are associated with increased biodiversity, including cold-water coral (CWC) colon...
The deep sea is the largest ecosystem on our planet, but its sheer size and remoteness causes it to ...
Understanding which drivers cause diversity patterns is a key issue in conservation. Here we applied...
The deep sea is the largest biome of the biosphere. The knowledge of the spatial variability of deep...
Diversity is one of the most frequently used attributes of ecological communities, and there is a lo...
The global imperative to sustainably manage deep-sea bottom fisheries and mitigate impacts to benthi...
The patterns and drivers of marine biodiversity and ecosystem functioning and how biological communi...
© 2017 Dr. Skipton Nicholas Charles WoolleyDeep-sea ecosystems –- from the continental shelf to the ...
Aim Mining and petroleum industries are exploring for resources in deep...
Aim Mining and petroleum industries are exploring for resources in deep...
Abstract. Until recently, quantitative data on the benthic fauna along the coast of Victoria, south-...
Most of our knowledge of biodiversity and its causes in the deep-sea benthos derives from regional-s...
Most of our knowledge of biodiversity and its causes in the deep-sea benthos derives from regional-s...
Submarine canyons are associated with increased biodiversity, including cold-water coral (CWC) colon...
Knowledge of spatial patterns of biota has become a commodity for conservation practitioners and spa...
Submarine canyons are associated with increased biodiversity, including cold-water coral (CWC) colon...
The deep sea is the largest ecosystem on our planet, but its sheer size and remoteness causes it to ...
Understanding which drivers cause diversity patterns is a key issue in conservation. Here we applied...
The deep sea is the largest biome of the biosphere. The knowledge of the spatial variability of deep...
Diversity is one of the most frequently used attributes of ecological communities, and there is a lo...
The global imperative to sustainably manage deep-sea bottom fisheries and mitigate impacts to benthi...
The patterns and drivers of marine biodiversity and ecosystem functioning and how biological communi...