Mineralization of amber insects provides new view of amber taphonomy
Inclusions in amber can preserve organisms' organs, tissues and cells in high fidelity, and are known as "exceptionally preserved" fossils.
See also stories tagged with Biomineralization
Inclusions in amber can preserve organisms' organs, tissues and cells in high fidelity, and are known as "exceptionally preserved" fossils.
Seawater acidification is a major threat to both calcifying and non-calcifying marine organisms, mostly affecting the immune system and biomineralization or the acid-base regulatory system.
It's widely understood that animals such as salmon, butterflies and birds have an innate magnetic sense, allowing them to use the Earth's magnetic field for navigation to places such as feeding and breeding grounds.
Composite hydrogels can incorporate natural polymers and bioactive glass as promising materials for bone regeneration. However, the applications of such constructs are limited by poor compatibility between organic and inorganic ...
Ph.D. student Marloes Bistervels from the Self-Organizing Matter research group at AMOLF has managed to use light to very precisely control the formation of nanocomposites in the shape of corals and vases. By illuminating ...
Tardigrades, also known as water bears, are a diverse group of charismatic microscopic invertebrates that are best known for their ability to survive extreme conditions. A famous example was a 2007 trip to space where tardigrades ...
Chinese researchers recently conducted a study on process of biogas generation improving physical and mechanical properties of soil.
Nature provides unique insights into design strategies evolved by living organisms to construct robust materials. In this case, the research group was able to create a new impact-resistant material inspired by the dactyl ...
Ever wonder how tiny creatures can so easily slice, puncture, or sting? New research reveals that ants, worms, spiders, and other tiny creatures have a built-in set of tools that would be the envy of any carpenter or surgeon.
Kamil Gareev, Associate Professor at ETU "LETI," justified the prospects of using magnetotactic bacteria to treat malignant tumors.