Bone Tissue Engineering

Bench to Bedside Using 3D Printing

Bone Tissue Engineering

Bench to Bedside Using 3D Printing

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This book provides a comprehensive overview of the state-of-the-art research as well as current challenges and strategies to reconstruct large bone defects employing 3D printing technology. Various topics covered include different 3D printing technologies that can be applied for bioengineering bone, the aspects of basic bone biology critical for clinical translation, tissue engineering platforms to investigate the bone niche microenvironment, the pathway to clinical translation, and regulatory hurdles.

Bone Tissue Engineering: State-of-the-Art in 3D Printing is an ideal book for students and researchers interested in learning more about the latest advances in employing different 3D printing technologies for bone tissue engineering. 



 Fernando P.S. Guastaldi  received his DDS degree (2006) from the Dental School of Ribeirão Preto, SP, Brazil. He is Specialist in Oral and Maxillofacial Surgery (OMFS) and received both a Master of Science (2010) and PhD (2013) in OMFS from the Dental School of Araçatuba (UNESP/Brazil). He was a Visiting Scholar at the Department of Biomaterials and Biomimetics at New York University College of Dentistry (NYUCD) in 2012. He was a Postdoctoral Research Fellow at the Dental School of Araraquara (UNESP/Brazil) (2014- 2017). Currently he is Postdoctoral Research Fellow at the Skeletal Biology Research Center, Department of Oral and Maxillofacial Surgery, Massachusetts General Hospital and Harvard School of Dental Medicine (2017-present). 
Bhushan Mahadik  received his Bachelor of Science (2008) in Chemical Engineering at the University of California, Berkeley and his Master of Science (2010) and PhD (2014) in Chemical Engineering at the University of Illinois in Urbana Champaign (UIUC). He was a Postdoctoral Researcher in the Chemical Engineering department at UIUC (2014-2017). Currently he is the Assistant Director for the NIH/NIBIB Center for Engineering Complex Tissues (CECT) at the University of Maryland (2017-present).
ISBN 9783030920142
Artikelnummer 9783030920142
Medientyp E-Book - PDF
Copyrightjahr 2022
Verlag Springer-Verlag
Umfang 317 Seiten
Sprache Englisch
Kopierschutz Digitales Wasserzeichen