WOS:000426027100014Seasonal shell growth patterns were analyzed using the stable oxygen and carbon isotope values of live-collected specimens of the bivalve Callista chione from two sites in the Adriatic Sea (Pag and Cetina, Croatia). Micromilling was performed on the shell surface of three shells per site and shell oxygen isotopes of the powder samples were measured. The timing and rate of seasonal shell growth was determined by aligning the delta O-18(shell)-derived temperatures so that the best fit was achieved with the instrumental temperature curve. According to the data, shells grew only at very low rates or not at all during the winter months, i.e., between January and March. Shell growth slowdown/shutdown temperatures varied among s...
Individual age is a key parameter when studying population dynamics of a species. However, accurate ...
Bivalve shells contain growth lines which are formed as a result of periodic environmental or physio...
International audienceWe investigate the environmental and biological controls on oxygen isotope rat...
WOS:000426027100014Seasonal shell growth patterns were analyzed using the stable oxygen and carbon i...
Seasonal shell growth patterns were analyzed using the stable oxygen and carbon isotope values of li...
Bivalve mollusks incorporate life-history traits in their shells during growth making them valuable ...
International audienceHigh-resolution stable-isotope ratio data (delta O-18, delta O-18) were used t...
Sclerochronology and analysis of oxygen isotopes reveal the age, growth rate, and growth patterns of...
Annual-oxygen isotope profiles from two live-collected specimens of Chione cortezi Carpenter were an...
Organisms that grow by skeletal accretion contain a geochemical record of environmental conditions--...
Shells of the extremely long-lived bivalve mollusk Arctica islandica (Linnaeus 1767) provide century...
Annual-oxygen isotope profiles from two live-collected spec-imens of Chione cortezi Carpenter were a...
Environmental factors are encoded in shells of marine bivalves in the form of geochemical properties...
Microgrowth patterns and the oxygen isotope composition of juvenile, shallow-marine bivalve mollusk ...
Sclerochronology uses shell growth lines or bands for the construction of environmental timeseries a...
Individual age is a key parameter when studying population dynamics of a species. However, accurate ...
Bivalve shells contain growth lines which are formed as a result of periodic environmental or physio...
International audienceWe investigate the environmental and biological controls on oxygen isotope rat...
WOS:000426027100014Seasonal shell growth patterns were analyzed using the stable oxygen and carbon i...
Seasonal shell growth patterns were analyzed using the stable oxygen and carbon isotope values of li...
Bivalve mollusks incorporate life-history traits in their shells during growth making them valuable ...
International audienceHigh-resolution stable-isotope ratio data (delta O-18, delta O-18) were used t...
Sclerochronology and analysis of oxygen isotopes reveal the age, growth rate, and growth patterns of...
Annual-oxygen isotope profiles from two live-collected specimens of Chione cortezi Carpenter were an...
Organisms that grow by skeletal accretion contain a geochemical record of environmental conditions--...
Shells of the extremely long-lived bivalve mollusk Arctica islandica (Linnaeus 1767) provide century...
Annual-oxygen isotope profiles from two live-collected spec-imens of Chione cortezi Carpenter were a...
Environmental factors are encoded in shells of marine bivalves in the form of geochemical properties...
Microgrowth patterns and the oxygen isotope composition of juvenile, shallow-marine bivalve mollusk ...
Sclerochronology uses shell growth lines or bands for the construction of environmental timeseries a...
Individual age is a key parameter when studying population dynamics of a species. However, accurate ...
Bivalve shells contain growth lines which are formed as a result of periodic environmental or physio...
International audienceWe investigate the environmental and biological controls on oxygen isotope rat...