We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola marina) on the surficial biomass of microphytobenthos (MPB) in permeable marine sediments. Within days to weeks after the addition of a lugworm to a homogenized and recomposed sediment, the average surficial MPB biomass and its spatial heterogeneity were, respectively, 150 - 250% and 280% higher than in sediments without lugworms. The surficial sediment area impacted by a single medium-sized lugworm (~4 g wet weight) over this time-scale was at least 340 cm**2. While sediment reworking was the primary cause of the increased spatial heterogeneity, experiments with lugworm-mimics together with modeling showed that bioadvective porewater transport ...
The slipper limpet Crepidula fornicata is an emblematic invasive species along the northeast Atlanti...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
International audienceEarthworm bioturbation (both biogenic structure constructing and particle rewo...
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...
<div><p>We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (<i>Ar...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
Large-scale experimental exclusion of lugworms (Arenicola marina) from 400 m2 intertidal fine sand r...
Benthic ecosystem engineering organisms attenuate hydrodynamic or biogeochemical stress to ameliorat...
Large-scale permanent experimental exclusion of bioturbating lugworms (Arenicola marina) from intert...
Objectives of this study were to (1) determine whether feeding by the lugworm, Arenicola marina, red...
We describe a novel, field-deployable hyperspectral imaging system, called Hypersub, that allows non...
The slipper limpet Crepidula fornicata is an emblematic invasive species along the northeast Atlanti...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
The slipper limpet Crepidula fornicata is an emblematic invasive species along the northeast Atlanti...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
International audienceEarthworm bioturbation (both biogenic structure constructing and particle rewo...
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...
<div><p>We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (<i>Ar...
We used hyperspectral imaging to study short-term effects of bioturbation by lugworms (Arenicola mar...
Large-scale experimental exclusion of lugworms (Arenicola marina) from 400 m2 intertidal fine sand r...
Benthic ecosystem engineering organisms attenuate hydrodynamic or biogeochemical stress to ameliorat...
Large-scale permanent experimental exclusion of bioturbating lugworms (Arenicola marina) from intert...
Objectives of this study were to (1) determine whether feeding by the lugworm, Arenicola marina, red...
We describe a novel, field-deployable hyperspectral imaging system, called Hypersub, that allows non...
The slipper limpet Crepidula fornicata is an emblematic invasive species along the northeast Atlanti...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
The slipper limpet Crepidula fornicata is an emblematic invasive species along the northeast Atlanti...
Ecosystem engineers change abiotic conditions, community assembly and ecosystem functioning. Consequ...
International audienceEarthworm bioturbation (both biogenic structure constructing and particle rewo...