Benthic ecosystem engineering organisms attenuate hydrodynamic or biogeochemical stress to ameliorate living conditions. Bioturbating infauna, like the lugworm Arenicola marina, determine intertidal process dynamics by maintaining the sediment oxygenated and sandy. Maintaining the permeability of the surrounding sediment enables them to pump water through the interstitial spaces, greatly increasing the oxygen availability. In a field experiment, both lugworm presence and siltation regime were manipulated to investigate to what extent lugworms are able to cope with sedimentation of increasing mud percentage and how this would affect its ecosystem engineering. Fluorescent tracers were added to experimentally deposited mud to visualise bioturb...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
International audienceMicrophytobenthos-macrofauna sediment interactions and their effects on sedime...
International audience1. Invertebrate bioturbation can strongly affect water-sediment exchanges in a...
Benthic ecosystem engineering organisms attenuate hydrodynamic or biogeochemical stress to ameliorat...
Large-scale permanent experimental exclusion of bioturbating lugworms (Arenicola marina) from intert...
Large-scale experimental exclusion of lugworms (Arenicola marina) from 400 m2 intertidal fine sand r...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
<div><p>We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (<i>Ar...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
Ecosystem engineers are organisms that strongly modify abiotic conditions and in the process alter a...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
International audienceMicrophytobenthos-macrofauna sediment interactions and their effects on sedime...
International audience1. Invertebrate bioturbation can strongly affect water-sediment exchanges in a...
Benthic ecosystem engineering organisms attenuate hydrodynamic or biogeochemical stress to ameliorat...
Large-scale permanent experimental exclusion of bioturbating lugworms (Arenicola marina) from intert...
Large-scale experimental exclusion of lugworms (Arenicola marina) from 400 m2 intertidal fine sand r...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
<div><p>We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (<i>Ar...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
Ecosystem engineers are organisms that strongly modify abiotic conditions and in the process alter a...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
International audienceMicrophytobenthos-macrofauna sediment interactions and their effects on sedime...
International audience1. Invertebrate bioturbation can strongly affect water-sediment exchanges in a...