Mechanical evaluation of porous titanium (Ti6Al4V) structures with electron beam melting (EBM) J Parthasarathy, B Starly, S Raman, A Christensen Journal of the mechanical behavior of biomedical materials 3 (3), 249-259, 2010 | 967 | 2010 |
Bio-CAD modeling and its applications in computer-aided tissue engineering W Sun, B Starly, J Nam, A Darling Computer-aided design 37 (11), 1097-1114, 2005 | 540 | 2005 |
A design for the additive manufacture of functionally graded porous structures with tailored mechanical properties for biomedical applications J Parthasarathy, B Starly, S Raman Journal of Manufacturing Processes 13 (2), 160-170, 2011 | 493 | 2011 |
Computer‐aided tissue engineering: overview, scope and challenges W Sun, A Darling, B Starly, J Nam Biotechnology and applied biochemistry 39 (1), 29-47, 2004 | 436 | 2004 |
The bioprinting roadmap W Sun, B Starly, AC Daly, JA Burdick, J Groll, G Skeldon, W Shu, Y Sakai, ... Biofabrication 12 (2), 022002, 2020 | 388 | 2020 |
Sensor data and information fusion to construct digital-twins virtual machine tools for cyber-physical manufacturing Y Cai, B Starly, P Cohen, YS Lee Procedia manufacturing 10, 1031-1042, 2017 | 388 | 2017 |
3D-bioprinting of polylactic acid (PLA) nanofiber–alginate hydrogel bioink containing human adipose-derived stem cells LK Narayanan, P Huebner, MB Fisher, JT Spang, B Starly, RA Shirwaiker ACS biomaterials science & engineering 2 (10), 1732-1742, 2016 | 288 | 2016 |
Computer‐aided tissue engineering: application to biomimetic modelling and design of tissue scaffolds W Sun, B Starly, A Darling, C Gomez Biotechnology and applied biochemistry 39 (1), 49-58, 2004 | 287 | 2004 |
A case study for Blockchain in manufacturing:“FabRec”: A prototype for peer-to-peer network of manufacturing nodes A Angrish, B Craver, M Hasan, B Starly Procedia Manufacturing 26, 1180-1192, 2018 | 208 | 2018 |
Computer-aided characterization for effective mechanical properties of porous tissue scaffolds Z Fang, B Starly, W Sun Computer-Aided Design 37 (1), 65-72, 2005 | 199 | 2005 |
Direct slicing of STEP based NURBS models for layered manufacturing B Starly, A Lau, W Sun, W Lau, T Bradbury Computer-Aided Design 37 (4), 387-397, 2005 | 161 | 2005 |
Creation of a unit block library of architectures for use in assembled scaffold engineering MA Wettergreen, BS Bucklen, B Starly, E Yuksel, W Sun, MAK Liebschner Computer-Aided Design 37 (11), 1141-1149, 2005 | 153 | 2005 |
Long-term cultivation of HepG2 liver cells encapsulated in alginate hydrogels: a study of cell viability, morphology and drug metabolism SF Lan, B Safiejko-Mroczka, B Starly Toxicology in Vitro 24 (4), 1314-1323, 2010 | 142 | 2010 |
Decentralized cloud manufacturing-as-a-service (CMaaS) platform architecture with configurable digital assets M Hasan, B Starly Journal of manufacturing systems 56, 157-174, 2020 | 128 | 2020 |
Manufacturing road map for tissue engineering and regenerative medicine technologies J Hunsberger, O Harrysson, R Shirwaiker, B Starly, R Wysk, P Cohen, ... Stem Cells Translational Medicine 4 (2), 130-135, 2015 | 115 | 2015 |
A flexible data schema and system architecture for the virtualization of manufacturing machines (VMM) A Angrish, B Starly, YS Lee, PH Cohen Journal of Manufacturing Systems 45, 236-247, 2017 | 107 | 2017 |
Alginate based 3D hydrogels as an in vitro co-culture model platform for the toxicity screening of new chemical entities SF Lan, B Starly Toxicology and applied pharmacology 256 (1), 62-72, 2011 | 102 | 2011 |
Internal architecture design and freeform fabrication of tissue replacement structures B Starly, W Lau, T Bradbury, W Sun Computer-Aided Design 38 (2), 115-124, 2006 | 91 | 2006 |
Three-dimensional reconstruction for medical-CAD modeling B Starly, Z Fang, W Sun, A Shokoufandeh, W Regli Computer-Aided Design and Applications 2 (1-4), 431-438, 2005 | 88 | 2005 |
Large scale industrialized cell expansion: producing the critical raw material for biofabrication processes A Kumar, B Starly Biofabrication 7 (4), 044103, 2015 | 83 | 2015 |