DIVISION OF BIOENGINEERING

Organization name
DIVISION OF BIOENGINEERING


Results 341-360 of 772 (Search time: 0.008 seconds).

Issue DateTitleAuthor(s)
34114-Aug-2012Method of patterning and product(s) obtained therefromZHANG, YONG ; LU, MEIHUA 
3422-Apr-2009METHOD OF PATTERNING AND PRODUCT(S) OBTAINED THEREFROMZHANG YONG ; LU MEIHUA 
3432020Metabolically engineered bacteria as light-controlled living therapeutics for anti-angiogenesis tumor therapyLiu, Xingang ; Wu, Min; Wang, Meng; Duan, Yukun ; Phan, ChiUyen; Qi, Guobin; Tang, Guping ; Liu, Bin 
3442009Mesoporous-silica-coated up-conversion fluorescent nanoparticles for photodynamic therapyQian, H.S. ; Guo, H.C. ; Zhang, Y. ; Ho, P.C.-L. ; Mahendran, R. 
345Jul-2020Mesoporous Rod‐Like Metal‐Organic Framework with Optimal Tumor Targeting Properties for Enhanced Activatable Photodynamic TherapyWang, Yuanbo ; Liu, Xingang ; Wu, Wenbo ; Mao, Duo ; Wang, Bo; Tang, Guping ; Liu, Bin 
346Mar-2005Mesenchymal stem cells in musculoskeletal tissue engineering: A review of recent advances in National University of SingaporeHui, J.H.P.; Ouyang, H.W. ; Hutmacher, D.W. ; Goh, J.C.H. ; Lee, E.H.
72009Mesenchymal stem cell secretes microparticles enriched in pre-microRNAsChen, T.S. ; Lai, R.C.; Lim, S.K. ; Lee, M.M.; CHOO BOON HWA,ANDRE ; Lee, C.N. 
821-Jul-2009MEMS based catheter for endoscopic optical coherence tomographyXU YINGSHUN
91998Melting and solidification of Pb nanoparticles embedded in an Al matrix as studied by temperature-modulated differential scanning calorimetryLi, Y. ; Ng, S.C. ; Lu, Z.P. ; Feng, Y.P. ; Lu, K.
10Sep-2007Medical/biomaterials: Nanocomposites for artificial boneLiao, S. 
112009Medical volume image summarizationDing, F. ; Li, H. ; Cheng, Y. ; Leow, W.K. 
122001Mechanical properties and cell cultural response of polycaprolactone scaffolds designed and fabricated via fused deposition modelingHutmacher, D.W. ; Schantz, T. ; Zein, I.; Ng, K.W. ; Teoh, S.H. ; Tan, K.C.
13Jul-2006Mechanical characterization of nanofibers - A reviewTan, E.P.S. ; Lim, C.T. 
14Dec-2008Mechanical and in vitro evaluations of composite PLDLLA/TCP scaffolds for bone engineeringLam, C.X.F. ; Olkowski, R.; Swieszkowski, W.; Tan, K.C.; Gibson, I. ; Hutmacher, D.W.
152002Matrices for tissue-engineered skinHutmacher, D.W. ; Vanscheidt, W.
161-Jun-2009Manufacture of plga multiple-channel conduits with precise hierarchical pore architectures and in vitro/vivo evaluation for spinal cord injuryHe, L. ; Zhang, Y.; Zeng, C.; Ngiam, M.; Liao, S. ; Quan, D.; Zeng, Y.; Lu, J.; Ramakrishna, S. 
172008Manufacture of multiple-channel porous biodegradable conduits for spinal cord regenerationHe, L. ; Quan, D.; Liao, K.; Lu, J.; Liao, S. ; Ramakrishna, S. 
1821-May-2014Macromolecular crowding meets tissue engineering by self-assembly: A paradigm shift in regenerative medicineSatyam, A.; Kumar, P.; Fan, X.; Gorelov, A.; Rochev, Y.; Joshi, L.; Peinado, H.; Lyden, D.; Thomas, B.; Rodriguez, B.; Raghunath, M. ; Pandit, A.; Zeugolis, D.
1923-May-2012Macromolecular crowding directs extracellular matrix organization and mesenchymal stem cell behaviorZeiger, A.S.; Loe, F.C. ; Li, R.; Raghunath, M. ; van Vliet, K.J.
201-Mar-2014Macromolecular crowding amplifies adipogenesis of human bone marrow-derived mesenchymal stem cells by enhancing the pro-adipogenic microenvironmentAng, X.M.; Lee, M.H.C.; Blocki, A.; Chen, C. ; Ong, L.L.S.; Asada, H.H.; Sheppard, A.; Raghunath, M.