Water motion, because of its potential to dislodge intertidal organisms, plays a crucial role in shaping marine communities as it creates available spaces suitable for interactions, settlement and colonization. To understand how water flow influences the behavioural ecology of benthic species such as echinoids, we investigated how these a urchin Paracentrotus lividus (Lamark, 1816) can cope with increasing flow velocities through a biomechanical and behavioural approach. Whereas sea urchins maintained in static conditions for several weeks showed weak adhesive properties, they immediately reacted to increasing hydrodynamic forces. Sea urchins were dislodged at a flow velocity of about 70 cm s−1, with a few individuals enduring up to 90 cm s...
The marine intertidal is subject to challenging hydrodynamic forces. Organisms that reside within t...
© The Author(s), 2015. This article is distributed under the terms of the Creative Commons Attributi...
The trophic interactions of sea urchins are known to be the agents of phase shifts in benthic marine...
Intertidal rocky shores are stressful environments where benthic invertebrates experience large wave...
This study investigates the biomechanics, behavior, and distribution of urchin species in Mo’orea, F...
Ocean warming (OW) and acidification (OA) are intensively investigated as they pose major threats to...
Ocean warming (OW) and acidification (OA) are intensively investigated as they pose major threats to...
Ocean warming (OW) and acidification (OA) are intensively investigated as they pose major threats to...
Many benthic marine invertebrates have a planktonic larval stage in their life cycle. Larval growth ...
To withstand hydrodynamic forces, sea urchins rely on their oral tube feet, which are specialised fo...
Este artículo contiene 12 páginas, 4 figuras, 1 tabla.Background: Classic ecological formulations of...
© The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attributi...
We examined whether adults of three species of sea urchins species (Diadema antillarum, Arbacia lixu...
Many organisms that lack vision rely on chemical signals to glean information from their environment...
1. While the study of dispersal and connectivity in the ocean typically centers on pelagic species a...
The marine intertidal is subject to challenging hydrodynamic forces. Organisms that reside within t...
© The Author(s), 2015. This article is distributed under the terms of the Creative Commons Attributi...
The trophic interactions of sea urchins are known to be the agents of phase shifts in benthic marine...
Intertidal rocky shores are stressful environments where benthic invertebrates experience large wave...
This study investigates the biomechanics, behavior, and distribution of urchin species in Mo’orea, F...
Ocean warming (OW) and acidification (OA) are intensively investigated as they pose major threats to...
Ocean warming (OW) and acidification (OA) are intensively investigated as they pose major threats to...
Ocean warming (OW) and acidification (OA) are intensively investigated as they pose major threats to...
Many benthic marine invertebrates have a planktonic larval stage in their life cycle. Larval growth ...
To withstand hydrodynamic forces, sea urchins rely on their oral tube feet, which are specialised fo...
Este artículo contiene 12 páginas, 4 figuras, 1 tabla.Background: Classic ecological formulations of...
© The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attributi...
We examined whether adults of three species of sea urchins species (Diadema antillarum, Arbacia lixu...
Many organisms that lack vision rely on chemical signals to glean information from their environment...
1. While the study of dispersal and connectivity in the ocean typically centers on pelagic species a...
The marine intertidal is subject to challenging hydrodynamic forces. Organisms that reside within t...
© The Author(s), 2015. This article is distributed under the terms of the Creative Commons Attributi...
The trophic interactions of sea urchins are known to be the agents of phase shifts in benthic marine...