David Dean, Ph.D.
David Dean, Ph.D.
Associate Professor, The Ohio State University
Verified email at - Homepage
Cited by
Cited by
Use of stereolithography to manufacture critical‐sized 3D biodegradable scaffolds for bone ingrowth
MN Cooke, JP Fisher, D Dean, C Rimnac, AG Mikos
Journal of Biomedical Materials Research Part B: Applied Biomaterials: An …, 2003
Computer-aided-design of skeletal implants
D Dean, KJ Min, RA Ratcheson
US Patent 7,747,305, 2010
Soft and hard tissue response to photocrosslinked poly (propylene fumarate) scaffolds in a rabbit model
JP Fisher, JWM Vehof, D Dean, JPCM van der Waerden, TA Holland, ...
Journal of Biomedical Materials Research: An Official Journal of The Society …, 2002
Metals for bone implants. Part 1. Powder metallurgy and implant rendering
MT Andani, NS Moghaddam, C Haberland, D Dean, MJ Miller, M Elahinia
Acta biomaterialia 10 (10), 4058-4070, 2014
Evaluating 3D printed biomaterials as scaffolds for vascularized bone tissue engineering
MO Wang, CE Vorwald, ML Dreher, EJ Mott, MH Cheng, A Cinar, ...
Advanced materials (Deerfield Beach, Fla.) 27 (1), 138, 2015
Stereolithographic bone scaffold design parameters: osteogenic differentiation and signal expression
K Kim, A Yeatts, D Dean, JP Fisher
Tissue Engineering Part B: Reviews 16 (5), 523-539, 2010
Photocrosslinking characteristics and mechanical properties of diethyl fumarate/poly (propylene fumarate) biomaterials
JP Fisher, D Dean, AG Mikos
Biomaterials 23 (22), 4333-4343, 2002
On the phylogenetic position of the pre-Neandertal specimen from Reilingen, Germany
D Dean, JJ Hublin, R Holloway, R Ziegler
Journal of Human Evolution 34 (5), 485-508, 1998
Photoinitiated polymerization of biomaterials
Fisher, J.P., Dean, D., Engel, P.S., Mikos, A.G.
Annual review of materials research 31, 171-181, 2001
Synthesis and properties of photocross-linked poly (propylene fumarate) scaffolds
J P. Fisher, TA Holland, D Dean, PS Engel, AG Mikos
Journal of Biomaterials Science, Polymer Edition 12 (6), 673-687, 2001
Computer aided design of large-format prefabricated cranial plates
D Dean, KJ Min, A Bond
Journal of Craniofacial Surgery 14 (6), 819-832, 2003
Effect of initial cell seeding density on early osteogenic signal expression of rat bone marrow stromal cells cultured on cross-linked poly (propylene fumarate) disks
K Kim, D Dean, AG Mikos, JP Fisher
Biomacromolecules 10 (7), 1810-1817, 2009
Evaluation of the in vitro cytotoxicity of cross-linked biomaterials
MO Wang, JM Etheridge, JA Thompson, CE Vorwald, D Dean, JP Fisher
Biomacromolecules 14 (5), 1321-1329, 2013
Metals for bone implants: Safety, design, and efficacy
N Shayesteh Moghaddam, M Taheri Andani, A Amerinatanzi, ...
Biomanufacturing Reviews 1, 1-16, 2016
The influence of stereolithographic scaffold architecture and composition on osteogenic signal expression with rat bone marrow stromal cells
K Kim, D Dean, J Wallace, R Breithaupt, AG Mikos, JP Fisher
Biomaterials 32 (15), 3750-3763, 2011
Bone formation in transforming growth factor β‐1‐coated porous poly (propylene fumarate) scaffolds
JWM Vehof, JP Fisher, D Dean, JPCM van der Waerden, PHM Spauwen, ...
Journal of Biomedical Materials Research: An Official Journal of The Society …, 2002
Early osteogenic signal expression of rat bone marrow stromal cells is influenced by both hydroxyapatite nanoparticle content and initial cell seeding density in biodegradable …
K Kim, D Dean, A Lu, AG Mikos, JP Fisher
Acta biomaterialia 7 (3), 1249-1264, 2011
Continuous digital light processing (cDLP): Highly accurate additive manufacturing of tissue engineered bone scaffolds: This paper highlights the main issues regarding the …
D Dean, J Wallace, A Siblani, MO Wang, K Kim, AG Mikos, JP Fisher
Virtual and physical prototyping 7 (1), 13-24, 2012
The recent revolution in the design and manufacture of cranial implants: modern advancements and future directions
DJ Bonda, S Manjila, WR Selman, D Dean
Neurosurgery 77 (5), 814-824, 2015
Resorbable bone fixation alloys, forming, and post-fabrication treatments
H Ibrahim, SN Esfahani, B Poorganji, D Dean, M Elahinia
Materials Science and Engineering: C 70, 870-888, 2017
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