ANTONIO G.
CHECA GONZÁLEZ
CATEDRÁTICO DE UNIVERSIDAD
Ludwig Maximilian University of Munich
Múnich, AlemaniaPublicaciones en colaboración con investigadores/as de Ludwig Maximilian University of Munich (17)
2024
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Biomineral crystallographic preferred orientation in Solenogastres molluscs (Aplacophora) is controlled by organic templating
Scientific Reports, Vol. 14, Núm. 1
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Crystal organisation and material properties of Chama and Glycymeris myostraca and shells
Materialia, Vol. 36
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Molluscs generate preferred crystallographic orientation of biominerals by organic templates, the texture and microstructure of Caudofoveata (Aplacophora) shells
Scientific Reports, Vol. 14, Núm. 1
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Skeletal microstructures of cheilostome bryozoans (phylum Bryozoa, class Gymnolaemata): crystallography and secretion patterns
Marine Life Science and Technology, Vol. 6, Núm. 3, pp. 405-424
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The Biological Crystals in Chamid Bivalve Shells: Diversity in Morphology and Crystal Arrangement Pattern
Crystals, Vol. 14, Núm. 7
2023
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Biological light-weight materials: The endoskeletons of cephalopod mollusks
Journal of Structural Biology, Vol. 215, Núm. 3
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Microstructure and Crystallographic Characteristics of Stenolaemate Bryozoans (Phylum Bryozoa and Class Stenolaemata)
Crystal Growth and Design, Vol. 23, Núm. 2, pp. 965-979
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Patterns of crystal organization and calcite twin formation in planktonic, rotaliid, foraminifera shells and spines
Journal of Structural Biology, Vol. 215, Núm. 1
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The unique fibrilar to platy nano- and microstructure of twinned rotaliid foraminiferal shell calcite
Scientific Reports, Vol. 13, Núm. 1
2022
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The shell structure and chamber production cycle of the cephalopod Spirula (Coleoidea, Decabrachia)
Marine Biology, Vol. 169, Núm. 10
2021
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Calcite crystal orientation patterns in the bilayers of laminated shells of benthic rotaliid foraminifera
Journal of Structural Biology, Vol. 213, Núm. 2
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The argonaut constructs its shell via physical self-organization and coordinated cell sensorial activity
iScience, Vol. 24, Núm. 11
2020
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Orientation patterns of aragonitic crossed-lamellar, fibrous prismatic and myostracal microstructures of modern Glycymeris shells
Journal of Structural Biology, Vol. 212, Núm. 3
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SEM, EBSD, laser confocal microscopy and FE-SEM data from modern Glycymeris shell layers
Data in Brief
2019
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Bending and branching of calcite laths in the foliated microstructure of pectinoidean bivalves occurs at coherent crystal lattice orientation
Journal of Structural Biology, Vol. 205, Núm. 3, pp. 7-17
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Calcite fibre formation in modern brachiopod shells
Scientific Reports, Vol. 9, Núm. 1
2017
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Patterns of mineral organization in carbonate biological hard materials
Highlights in Applied Mineralogy (Walter de Gruyter GmbH), pp. 245-272