BIO-SCAFFOLDS

Project Title: Natural inorganic polymers and smart functionalized micro-units applied in customized rapid prototyping of bioactive scaffolds  Acronym: BIO-SCAFFOLDS (NMP3-SL-2013-604036) Funding Entity:  European Comission, FP7-NMP-2013-EU-China Participating Entities:  Universidad de Extremadura, Universitätsmedizin der Johannes Gutenberg-Universität Mainz (Coordinator), Brno University of Technology, Ortoma AB, NanotecMARIN GmbH, Tsinghua University, Peking University, Shenzhen Lando Biomaterials Co., Ltd. Duration: 01/06/2013 […]

Read More

IB10006

Project Title: Development and structural and mechanical optimization of robocast bioactive hybrid materials for bone regeneration applications  Acronym: IB10006 Funding Entity: Junta de Extremadura Participating Entities:  University of Extremadura, Duration: 31/12/2010 – 31/12/2012 Budget: 43 700 € UEX Principal Investigator (PI): Pedro Miranda Number of researchers: 5 Abstract: This project main objective was to improve […]

Read More

MAT2006-08720

Project Title: Optimization of the mechanical performance of ceramic/polymer scaffolds fabricated by robocasting for bone tissue engineering applications Acronym: MAT2006-08720 Funding Entity: Ministerio de Educación y Ciencia Participating Entities:  University of Extremadura, Duration: 01/10/2006 – 30/09/2009 Budget: 145 200 € UEX Principal Investigator (PI): Antonia Pajares Number of researchers: 5 Abstract: This project focused on […]

Read More

NEWEXTLIFESCAFF

Project Title: Development of Extended-Lifetime Organic-Inorganic Scaffolds for Orthopaedical Applications Acronym: NEWEXTLIFESCAFF Funding Entity: European Comission , Marie Curie Outgoing International Fellowship (MOIF-CT-2005-7325) Participating Entities:  University of Extremadura, Lawrence Berkeley National Laboratory Duration: 01/03/2005 – 31/08/2006 Budget: 127 594 € UEX Principal Investigator (PI): Pedro Miranda Number of researchers: 1 Abstract: A new generation of […]

Read More

MAT2003-05584

Project Title: Mechanical properties of ceramic layers under contact stresses at Ta <T<1500ºC Acronym: MAT2003-05584 Funding Entity: Ministerio de Ciencia y Tecnología Participating Entities:  University of Extremadura Duration: 01/12/2003 – 30/11/2006 Budget: 150 000 € UEX Principal Investigator (PI): Antonia Pajares Number of researchers: 5 Abstract: Ceramic layers are hard, wear resistant, chemically durable and […]

Read More

IPR00A084

Project Title: Mechanical response of prototype multilayer materials under contact stresses Acronym: IPR00A084 Funding Entity: Junta de Extremadura Participating Entities:  University of Extremadura Duration: 14/12/2000  – 14/12/2003 Budget: 20 344.26 € UEX Principal Investigator (PI): Antonia Pajares Number of researchers: 4 Abstract: Coating certain materials with ceramic layers has important technological applications. Common examples are cutting […]

Read More