Nanostructured marine biominerals as a promising prototype for the biomimetic simulation
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[1] Muhammad Nawaz Tahir,et al. Bioorganic/inorganic hybrid composition of sponge spicules: matrix of the giant spicules and of the comitalia of the deep sea hexactinellid Monorhaphis. , 2008, Journal of structural biology.
[2] A. I. Cherednichenko,et al. FIBRE OPTICS: Optical fibres based on natural biological minerals --- sea sponge spicules , 2008 .
[3] Peter Fratzl,et al. Biomimetic materials research: what can we really learn from nature's structural materials? , 2007, Journal of The Royal Society Interface.
[4] H. Ehrlich,et al. First evidence of the presence of chitin in skeletons of marine sponges. Part II. Glass sponges (Hexactinellida: Porifera). , 2007, Journal of experimental zoology. Part B, Molecular and developmental evolution.
[5] W. Tremel,et al. Formation of giant spicules in the deep-sea hexactinellid Monorhaphis chuni (Schulze 1904): electron-microscopic and biochemical studies , 2007, Cell and Tissue Research.
[6] C. Geppert,et al. Novel photoreception system in sponges? Unique transmission properties of the stalk spicules from the hexactinellid Hyalonemasieboldi. , 2006, Biosensors & bioelectronics.
[7] J. Aizenberg,et al. Skeleton of Euplectella sp.: Structural Hierarchy from the Nanoscale to the Macroscale , 2005, Science.
[8] H. Schröder,et al. Silica transport in the demosponge Suberites domuncula: fluorescence emission analysis using the PDMPO probe and cloning of a potential transporter. , 2004, Biochemical Journal.
[9] Joanna Aizenberg,et al. Biological glass fibers: correlation between optical and structural properties. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[10] P. Hansma,et al. Nanostructural features of demosponge biosilica. , 2003, Journal of structural biology.
[11] Xavier Turon,et al. Siliceous spicules and skeleton frameworks in sponges: Origin, diversity, ultrastructural patterns, and biological functions , 2003, Microscopy research and technique.
[12] G. Khomutov. Two-dimensional synthesis of anisotropic nanoparticles , 2002 .
[13] V. Bykov,et al. Observation of remanent states of small magnetic particles: Micromagnetic simulation and experiment , 2002 .
[14] H. Ehrlich,et al. Nanostructural organization of naturally occurring composites-part II: silica-chitin-based biocomposites , 2008 .
[15] W. Xiaohong,et al. Structure and characteristics of giant spicules of the deep sea hexactinellid sponges of the genus Monorhaphis (Hexactinellida: Amphidiscosida: Monorhaphididae) , 2007 .