Biological functionality and mechanistic contribution of extracellular matrix-ornamented three dimensional Ti-6Al-4V mesh scaffolds

Author:

Kumar A.1,Nune K. C.1,Misra R. D. K.1

Affiliation:

1. Biomaterials and Biomedical Engineering Research Laboratory, Department of Metallurgical, Materials, and Biomedical Engineering, 500 W. University Avenue, University of Texas at El Paso; El Paso Texas 79968 USA

Publisher

Wiley

Subject

Metals and Alloys,Biomedical Engineering,Biomaterials,Ceramics and Composites

Reference69 articles.

1. Determinants of stress shielding: Design versus materials versus interface;Sumner;Clin Orthopaed Relat Res,1992

2. Hydroxyapatite-titanium bulk composites for bone tissue engineering applications;Kumar;J Biomed Mater Res A,2015

3. Robocasting of biomimetic hydroxyapatite scaffolds using self-setting inks;Maazouz;J Mater Chem B,2014

4. Biocompatibility and mechanical behaviour of three-dimensional scaffolds for biomedical devices: Process-structure-property paradigm;Kumar;Int Mater Rev,2016

5. Recent metallic materials for biomedical applications;Niinomi;Metal Mater Trans A,2002

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