This paper reviews the patterns observed in the diversity and structure of the macrofauna benthic community under the influence of fish farming. First, we explain the effects of organic enrichment on the sediment and the consequences for the inhabiting communities. We describe the diversity trends in spatial and temporal gradients affected by fish farming and compare them with those described by the Pearson and Rosenberg model. We found that in general terms, the trends of diversity and other community parameters followed the Pearson and Rosenberg model but they can vary to some extent due to sediment local characteristics or to secondary disturbances. We also show the different mechanisms by which wild fish can affect macrofauna diversity ...
A clear understanding of the factors affecting recovery processes is required for effective manageme...
Despite the complexity of natural systems, heterogeneity caused by the fragmentation of habitats has...
Off‐shore fish farming can increase the organic load of nearby coastal marine ecosystems due to the ...
This paper reviews the patterns observed in the diversity and structure of the macrofauna benthic co...
High organic loading deposited on the sea bottom by marine fish farming activities often eliminates ...
Sediment dynamics and the hydrodynamics of the environment cause the complexity and variability inan...
Sediment dynamics and the hydrodynamics of the environment cause the complexity and variability in ...
Following cessation of fish production at a fish farm site in Loch Creran, Scotland, a study of the ...
To study the impact of organic enrichment and high biodeposition caused by intensive fish farming in...
Recent studies in terrestrial, plant-dominated systems have shown that reductions in diversity can a...
The patterns and drivers of marine biodiversity and ecosystem functioning and how biological communi...
Increasing changes in environmental conditions are reshaping marine ecosystems and their communities...
Macrofauna play a key role in the functioning of soft sediment intertidal ecosystems via bioturbatio...
Fish farming is an important source of organic matter input in coastal waters, which contributes to ...
Continental particulate organic matter (POM) plays a major role in the functioning of coastal marine...
A clear understanding of the factors affecting recovery processes is required for effective manageme...
Despite the complexity of natural systems, heterogeneity caused by the fragmentation of habitats has...
Off‐shore fish farming can increase the organic load of nearby coastal marine ecosystems due to the ...
This paper reviews the patterns observed in the diversity and structure of the macrofauna benthic co...
High organic loading deposited on the sea bottom by marine fish farming activities often eliminates ...
Sediment dynamics and the hydrodynamics of the environment cause the complexity and variability inan...
Sediment dynamics and the hydrodynamics of the environment cause the complexity and variability in ...
Following cessation of fish production at a fish farm site in Loch Creran, Scotland, a study of the ...
To study the impact of organic enrichment and high biodeposition caused by intensive fish farming in...
Recent studies in terrestrial, plant-dominated systems have shown that reductions in diversity can a...
The patterns and drivers of marine biodiversity and ecosystem functioning and how biological communi...
Increasing changes in environmental conditions are reshaping marine ecosystems and their communities...
Macrofauna play a key role in the functioning of soft sediment intertidal ecosystems via bioturbatio...
Fish farming is an important source of organic matter input in coastal waters, which contributes to ...
Continental particulate organic matter (POM) plays a major role in the functioning of coastal marine...
A clear understanding of the factors affecting recovery processes is required for effective manageme...
Despite the complexity of natural systems, heterogeneity caused by the fragmentation of habitats has...
Off‐shore fish farming can increase the organic load of nearby coastal marine ecosystems due to the ...