Full Name
Chan Kwan-Ho,Casey
Variants
CHAN, KWAN-HO
Chan, C.K.C.
Chan, C.
Chan, C.K.H.
Chan, K.C.
Chan, C.K.
 
Main Affiliation
 
 

Refined By:
Subject:  Electrospinning

Results 1-12 of 12 (Search time: 0.005 seconds).

Issue DateTitleAuthor(s)
12007Collagen-blended biodegradable polymer nanofibers: Potential substrates for wound healing in skin tissue engineeringMa, K.; Yong, T.; Ramakrishna, S. ; Chan, K.C. 
22008Distinctive degradation behaviors of electrospun PGA, PLGA and P(LLA-CL) nanofibers cultured with/without cell cultureDong, Y.; Liao, S. ; Ramakrishna, S. ; Chan, C.K. 
3May-2008Electrospun nanofiber scaffolds for rapid and rich capture of bone marrow-derived hematopoietic stem cellsMa, K.; Chan, C.K. ; Liao, S. ; Hwang, W.Y.K.; Feng, Q.; Ramakrishna, S. 
4Feb-2010Electrospun nanofibers: Work for medicine?Liao, S. ; Chan, C.K. ; Ramakrishna, S. 
515-Sep-2006Electrospun nanofibrous filtration membraneGopal, R.; Kaur, S. ; Ma, Z. ; Chan, C. ; Ramakrishna, S. ; Matsuura, T.
615-Feb-2007Electrospun nanofibrous polysulfone membranes as pre-filters: Particulate removalGopal, R.; Kaur, S. ; Feng, C.Y.; Chan, C. ; Ramakrishna, S. ; Tabe, S.; Matsuura, T.
72012Electrospun poly(L-lactic acid) nanofibres loaded with dexamethasone to induce osteogenic differentiation of human mesenchymal stem cellsNguyen, L.T.H.; Liao, S.; Chan, C.K. ; Ramakrishna, S. 
8Sep-2008Enhancement of neurite outgrowth using nano-structured scaffolds coupled with lamininKoh, H.S.; Yong, T. ; Chan, C.K. ; Ramakrishna, S. 
9Jan-2011Fabrication and characterization of hierarchically organized nanoparticle-reinforced nanofibrous composite scaffoldsTeo, W.E.; Liao, S.; Chan, C. ; Ramakrishna, S. 
106-Sep-2008Long-term viability of coronary artery smooth muscle cells on poly(L-lactide-co-ε-caprolactone) nanofibrous scaffold indicates its potential for blood vessel tissue engineeringDong, Y. ; Yong, T. ; Liao, S. ; Chan, C.K. ; Ramakrishna, S. 
112007Nanofiber patent landscapeNgiam, M.; Ramakrishna, S. ; Raghunath, M. ; Chan, C.K. 
12Jul-2008Processing nanoengineered scaffolds through electrospinning and mineralization suitable for biomimetic bone tissue engineeringLiao, S. ; Murugan, R.; Chan, C.K. ; Ramakrishna, S.