A platform for research: civil engineering, architecture and urbanism
Nanostructured magnetic Mg2SiO4-CoFe2O4 composite scaffold with multiple capabilities for bone tissue regeneration
Nanostructured magnetic Mg2SiO4-CoFe2O4 composite scaffold with multiple capabilities for bone tissue regeneration
Nanostructured magnetic Mg2SiO4-CoFe2O4 composite scaffold with multiple capabilities for bone tissue regeneration
Bigham, Ashkan (author) / Aghajanian, Amir Hamed (author) / Behzadzadeh, Shima (author) / Sokhani, Zahra (author) / Shojaei, Sara (author) / Kaviani, Yeganeh (author) / Hassanzadeh-Tabrizi, S.A. (author)
2019-01-01
13 pages
Article (Journal)
English
DDC:
572
© Metadata Copyright the British Library Board and other contributors. All rights reserved.
Polyurethane foam/nano hydroxyapatite composite as a suitable scaffold for bone tissue regeneration
British Library Online Contents | 2018
|Bone Tissue Regeneration: Rapid Prototyping Technology in Scaffold Design
Springer Verlag | 2022
|Polyurethane foam/nano hydroxyapatite composite as a suitable scaffold for bone tissue regeneration
British Library Online Contents | 2018
|Bone Tissue Regeneration: Rapid Prototyping Technology in Scaffold Design
Springer Verlag | 2022
|