Initial formation of calcite crystals in the thin prismatic layer with the periostracum of Pinctada fucata.
暂无分享,去创建一个
[1] H. Nagasawa,et al. Microstructural Variation of Biogenic Calcite with Intracrystalline Organic Macromolecules , 2012 .
[2] H. Nagasawa,et al. Localization of intracrystalline organic macromolecules in mollusk shells , 2011 .
[3] C. Berthold,et al. 1 + 1 = 3: Coupling μ-XRD2 and DTA New insights in temperature-dependent phase transitions , 2011 .
[4] L. Fernández-Díaz,et al. The role of sulfate groups in controlling CaCO3 polymorphism , 2010 .
[5] H. Nagasawa,et al. Characteristics of biogenic calcite in the prismatic layer of a pearl oyster, Pinctada fucata. , 2010, Micron.
[6] M. Lee. Transmission electron microscopy (TEM) of Earth and planetary materials: A review , 2010, Mineralogical Magazine.
[7] A. Baronnet,et al. Crystallization of biogenic Ca-carbonate within organo-mineral micro-domains. Structure of the calcite prisms of the Pelecypod Pinctada margaritifera (Mollusca) at the submicron to nanometre ranges , 2008, Mineralogical Magazine.
[8] E. Harper,et al. Origin and Expansion of Foliated Microstructure in Pteriomorph Bivalves , 2008, The Biological Bulletin.
[9] M. Epple,et al. Calcium sulfate hemihydrate (bassanite) statoliths in the cubozoan Carybdea sp. , 2006 .
[10] A. Rodríguez-Navarro,et al. The nature and formation of calcitic columnar prismatic shell layers in pteriomorphian bivalves. , 2005, Biomaterials.
[11] Matthias Epple,et al. Calcium sulfate hemihydrate is the inorganic mineral in statoliths of Scyphozoan medusae (Cnidaria). , 2005, Dalton transactions.
[12] H. Nakahara,et al. The formation and growth of the prismatic layer ofPinctada radiata , 2005, Calcified Tissue Research.
[13] John D. Taylor,et al. The influence of the periostracum on the shell structure of bivalve molluscs , 2005, Calcified Tissue Research.
[14] S. O. Andersen,et al. Periostracin — A soluble precursor of sclerotized periostracum inMytilus edulis L. , 1979, Journal of comparative physiology.
[15] J. Susini,et al. In situ chemical speciation of sulfur in calcitic biominerals and the simple prism concept. , 2003, Journal of structural biology.
[16] W. Voigt,et al. Crystallization and Phase Stability of CaSO4 and CaSO4 – Based Salts , 2003 .
[17] A. Checa. A new model for periostracum and shell formation in Unionidae (Bivalvia, Mollusca). , 2000, Tissue & cell.
[18] S. Mann,et al. Molecular Construction of Oriented Inorganic Materials: Controlled Nucleation of Calcite and Aragonite under Compressed Langmuir Monolayers , 1994 .
[19] H. Schwarz,et al. Monoclonal antibodies to Leishmania mexicana promastigote antigens. II. Cellular localization of antigens in promastigotes and infected macrophages. , 1991, Journal of cell science.
[20] E. Stejskal,et al. Aromatic cross-links in insect cuticle: detection by solid-state 13C and 15N NMR. , 1987, Science.
[21] A. Hall,et al. The shell structure and mineralogy of the Bivalvia , 1969 .
[22] K. Wada. Crystal growth of molluscan shells , 1961 .
[23] C. Grégoire. STRUCTURE OF THE CONCHIOLIN CASES OF THE PRISMS IN MYTILUS EDULIS LINNE , 1961, The Journal of biophysical and biochemical cytology.
[24] G. E. Beedham. Observations on the Mantle of the Lamellibranchia , 1958 .