The correlations between skeletal parameters (bulk density, micro-density and porosity), coral age and sea surface temperature were assessed along a latitudinal gradient in the zooxanthellate coral Balanophyllia europaea and in the azooxanthellate coral Leptopsammia pruvoti. In both coral species, the variation of bulk density was more influenced by the variation of porosity than of micro-density. With increasing polyp age, B. europaea formed denser and less porous skeletons while L. pruvoti showed the opposite trend, becoming less dense and more porous. B. europaea skeletons were generally less porous (more dense) than those of L. pruvoti, probably as a consequence of the different habitats colonized by the two species. Increasing temperat...
<div><p>Reductions in calcification in reef-building corals occur when thermal conditions are subopt...
Mediterranean corals are a natural model for studying global warming, as the Mediterranean basin is ...
As oceans continue to warm under climate change, understanding the differential growth responses of ...
open9siNome progetto: Corals and global warming: the Mediterranean versus the Red Sea (CoralWarm)Thi...
The correlation between two environmental factors (solar radiation and sea surface temperature), b...
Introduction: Correlations between sea surface temperature (SST) and growth parameters of the solita...
This paper explores inter-specific variation in the density of coral skeletons. I present new data o...
In collaborazione con: The Mina & Everard Goodman Faculty of Life Sciences, Bar-Ilan University, R...
Reductions in calcification in reef-building corals occur when thermal conditions are suboptimal, bu...
none4siStudying coral populations along depth gradients is important to find out if deeper habitats...
none17siThis study investigates the effects of long-term exposure to OA on skeletal parameters of fo...
open10siGlobal environmental change, in marine ecosystems, is associated with concurrent shifts in w...
Global environmental change, in marine ecosystems, is associated with concurrent shifts in water tem...
Correlations between solar radiation, sea surface temperature (SST), biometry, and population densit...
Reef-building corals provide critical ecosystem functions but are under pressure from a range of str...
<div><p>Reductions in calcification in reef-building corals occur when thermal conditions are subopt...
Mediterranean corals are a natural model for studying global warming, as the Mediterranean basin is ...
As oceans continue to warm under climate change, understanding the differential growth responses of ...
open9siNome progetto: Corals and global warming: the Mediterranean versus the Red Sea (CoralWarm)Thi...
The correlation between two environmental factors (solar radiation and sea surface temperature), b...
Introduction: Correlations between sea surface temperature (SST) and growth parameters of the solita...
This paper explores inter-specific variation in the density of coral skeletons. I present new data o...
In collaborazione con: The Mina & Everard Goodman Faculty of Life Sciences, Bar-Ilan University, R...
Reductions in calcification in reef-building corals occur when thermal conditions are suboptimal, bu...
none4siStudying coral populations along depth gradients is important to find out if deeper habitats...
none17siThis study investigates the effects of long-term exposure to OA on skeletal parameters of fo...
open10siGlobal environmental change, in marine ecosystems, is associated with concurrent shifts in w...
Global environmental change, in marine ecosystems, is associated with concurrent shifts in water tem...
Correlations between solar radiation, sea surface temperature (SST), biometry, and population densit...
Reef-building corals provide critical ecosystem functions but are under pressure from a range of str...
<div><p>Reductions in calcification in reef-building corals occur when thermal conditions are subopt...
Mediterranean corals are a natural model for studying global warming, as the Mediterranean basin is ...
As oceans continue to warm under climate change, understanding the differential growth responses of ...