0000000000370855

AUTHOR

Alberto Pérez-huerta

showing 5 related works from this author

Effects of ocean acidification on the shells of four Mediterranean gastropod species near a CO2 seep

2017

Marine CO2seeps allow the study of the long-term effects of elevated pCO2(ocean acidification) on marine invertebrate biomineralization. We investigated the effects of ocean acidification on shell composition and structure in four ecologically important species of Mediterranean gastropods (two limpets, a top-shell snail, and a whelk). Individuals were sampled from three sites near a volcanic CO2seep off Vulcano Island, Italy. The three sites represented ambient (8.15 pH), moderate (8.03 pH) and low (7.73 pH) seawater mean pH. Shell mineralogy, microstructure, and mechanical strength were examined in all four species. We found that the calcite/aragonite ratio could vary and increased signifi…

Settore BIO/07 - Ecologia0106 biological sciences010504 meteorology & atmospheric sciencesMediterraneanAquatic Scienceengineering.materialOceanography01 natural scienceschemistry.chemical_compoundWhelkCO2 seepShellGastropodMineral0105 earth and related environmental sciencesCalcitebiologyOcean acidification010604 marine biology & hydrobiologyLimpetAragoniteOcean acidificationMarine invertebratesbiology.organism_classificationPollutionPetroleum seepOceanographychemistryengineeringSeawaterGeologyMarine Pollution Bulletin
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Preliminary assessment of coupling the analysis of shell microstructures and microtextures as palaeoecological indicator in fossil brachiopods

2018

Brachiopods are one of the most successful groups of marine invertebrates throughout the Phanerozoic. Despite their abundance and importance in the fossil record, there are numerous gaps in our understanding of their palaeoecology. In particular, there is little information about their mode of life in relation to the substrate, which can be important in palaeontological and sedimentological studies involving brachiopod faunas. The aim of this study is to test the combination of analyzing shell microstructures (with SEM) and microtextures (with EBSD) to elucidate palaeoecological aspects for three extinct species belonging to the Order Athyridida. Results indicate that Athyris spiriferoides …

AthyrisbiologyPaleontologyMarine invertebratesTest (biology)biology.organism_classificationQE701-760Substrate (marine biology)PaleontologyAthyrididaAbundance (ecology)PhanerozoicPaleoecologyGeologySpanish Journal of Palaeontology
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Isotopic ordering in eggshells reflects body temperatures and suggests differing thermophysiology in two Cretaceous dinosaurs

2015

International audience; Our understanding of the evolutionary transitions leading to the modern endothermic state of birds and mammals is incomplete, partly because tools available to study the thermo-physiology of extinct vertebrates are limited. Here we show that clumped isotope analysis of eggshells can be used to determine body temperatures of females during periods of ovulation. Late Cretaceous titanosaurid eggshells yield temperatures similar to large modern endo-therms. In contrast, oviraptorid eggshells yield temperatures lower than most modern endotherms but B6 °C higher than co-occurring abiogenic carbonates, implying that this taxon did not have thermoregulation comparable to mod…

OvulationRange (biology)General Physics and AstronomyBiologyPHOSPHORIC-ACIDGeneral Biochemistry Genetics and Molecular BiologyOXYGENBody TemperatureCalcium CarbonateDinosaursCALCITEIsotopes[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryAnimalsCARBONATEEggshellCLUMPED ISOTOPEOvumIsotope analysisENDOTHERMYMultidisciplinaryBIRDSFossilsEcologyFRACTIONATIONACLGeneral ChemistryThermoregulationCretaceousEVOLUTIONAbiogenic petroleum originTaxonEctothermMAMMALSFemale[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Preliminary assessment of coupling the analysis of shell microstructures and microtextures as paleoecological indicator in fossil brachiopods.

2018

UNESCO::CIENCIES DE LA VIDAArtículo:CIENCIES DE LA VIDA [UNESCO]
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Seawater carbonate chemistry and shell mineralogy, microstructure, and mechanical strength of four Mediterranean gastropod species near a CO2 seep

2017

Marine CO2 seeps allow the study of the long-term effects of elevated pCO2 (ocean acidification) on marine invertebrate biomineralization. We investigated the effects of ocean acidification on shell composition and structure in four ecologically important species of Mediterranean gastropods (two limpets, a top-shell snail, and a whelk). Individuals were sampled from three sites near a volcanic CO2 seep off Vulcano Island, Italy. The three sites represented ambient (8.15 pH), moderate (8.03 pH) and low (7.73 pH) seawater mean pH. Shell mineralogy, microstructure, and mechanical strength were examined in all four species. We found that the calcite/aragonite ratio could vary and increased sign…

Ocean Acidification International Coordination Centre (OA-ICC)IdentificationRegistration number of speciesSalinityTemperateinorganicAlkalinityExperimentTemperature waterCarbon inorganic dissolvedCalculated using seacarb after Nisumaa et al 2010Aragonite saturation stateAlkalinity totalSalinity standard errorPatella caeruleatotalCO2 ventpHCalciteTemperaturePartial pressure of carbon dioxide (water) at sea surface temperature (wet air) standard errordissolvedCarbonate ionPartial pressure of carbon dioxide (water) at sea surface temperature (wet air)standard errorEarth System ResearchField observationUniform resource locator link to referencePotentiometric titrationCalcite saturation stateLengthLocationPotentiometricwaterGrowth MorphologyHexaplex trunculusAlkalinity total standard errorBenthosUniform resource locator/link to referenceOsilinus turbinatusOther studied parameter or processMediterranean SeaOcean Acidification International Coordination Centre OA ICCAnimaliaBicarbonate ionTypeTemperature water standard errorCalculated using seacarb after Nisumaa et al. (2010)ForceSpeciespH standard errorCalculated using CO2SYSCarbonate system computation flagFugacity of carbon dioxide (water) at sea surface temperature (wet air)CarbonElasticityTreatmentAragonite saturation state standard errorPartial pressure of carbon dioxide water at sea surface temperature wet airAragoniteCarbon dioxideMolluscaGrowth/MorphologySingle speciesBenthic animalsFugacity of carbon dioxide water at sea surface temperature wet airPatella rusticaToughnessCoast and continental shelf
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