| Title | Author(s) | Year | View Count |
 | Production of Three-Dimensional Hierarchical Nano Ti-based Metals Scaffolds for Bone Tissue Grafts | Wu, SL; Liu, XM; Chu, PK; Hu, T; Yeung, KWK; Chung, CY; Xu, ZS | 2012 | 61 |
 | In-vivo study of enhanced bioactivity of titanium alloy by plasma surface modication | Wong, HM; Wu, SL; Chu, P; Yip, HK; Cheung, KMC; Luk, KDK; Yau, WP; Kuang, G; Yeung, KWK | 2012 | 48 |
 | Effective bioactivity enhancement of titanium alloy by novel plasma surface modification | Wong, SM; Wu, SL; Chu, PKH; Yip, KHK; Cheung, KMC; Luk, KDK; Yeung, KWK | 2012 | 69 |
 | Antibacterial properties of novel 1D ZnO nanowires on medical grade 316L stainless steel surface | Li, TL; Kao, RYT; Cheung, KMC; Wu, SL; Chu, PKH; Luk, KDK; Cheung, KMC; Yeung, KWK | 2012 | 84 |
 | Corrosion behavior on orthopedic NiTi alloy with nanocrystalline/amorphous surface | Hu, T; Xin, YC; Wu, SL; Chu, CL; Lu, J; Guan, L; Chen, HM; Hung, TF; Yeung, KWK; Chu, PK | 2011 | 171 |
 | Graded phase structure in the surface layer of NiTi alloy processed by surface severe plastic deformation | Hu, T; Chen, L; Wu, SL; Chu, CL; Wang, LM; Yeung, KWK; Chu, PK | 2011 | 166 |
 | Microstructural evolution in NiTi alloy subjected to surface mechanical attrition treatment and mechanism | Hu, T; Chu, CL; Wu, SL; Xu, RZ; Sun, GY; Hung, TF; Yeung, KWK; Wu, ZW; Li, GY; Chu, PK | 2011 | 131 |
 | Suppression of surface nickel concentration of nickel titanium shape memory alloys by plasma surface treatment | Yeung, KWK; Wu, SL; Tu, H; Chu, PK; Liu, XY; Lu, WW; Luk, KDK; Cheung, KMC | 2011 | 193 |
 | Alterations of surface mechanics of nickel titanium shape memory alloys after plasma surface treatment | Yeung, KWK; Wu, SL; Hu, T; Chu, PK; Liu, X; Lu, WW; Luk, KDK; Cheung, KMC | 2011 | 174 |
 | Does nitinol require surface treatments prior to human implantation? | Yeung, K; Cheung, KMC; Lu, WW; Luk, KDK; Chung, CY; Wu, SL; Liu, XM; Chu, CL; Hu, T; Chu, PK; Liu, XY | 2011 | 62 |
 | Antibacterial properties of novel one-dimensional zinc oxide nanowires on medical-grade 316L stainless steel surface | Li, TL; Kao, RYT; Cheung, KMC; Wu, SL; Chu, P; Luk, KDK; Yeung, KWK | 2011 | 37 |
 | In-vivo study of enhanced bioactivity of titanium alloy by plasma surface modication | Kuang, G; Wong, HM; Wu, SL; Chu, P; Yip, HK; Cheung, KMC; Luk, KDK; Yau, WP; Yeung, KWK | 2011 | 61 |
 | Wear resistance of NiTi alloy after surface mechanical attrition treatment | Hu, T; Wen, CS; Sun, GY; Wu, SL; Chu, CL; Wu, ZW; Li, GY; Lu, J; Yeung, KWK; Chu, PK | 2010 | 136 |
 | Synthesis and characterization of fluorescent copolymer containing rare earth metal complex and its interaction with DNA | Hu, XX; Li, PH; Yeung, KWK; Chu, PK; Wu, SL; Xu, ZS | 2010 | 172 |
 | Post-operative monitoring of nickel ion level in scoliotic patients operated with novel nickel-titanium superelastic spinal implant | Yeung, KWK; Lam, W; Natarajan, D; Lu, WW; Luk, KDK; Cheung, KMC; Wu, SL; T, Hu; Chu, PK; Chung, CY | 2010 | 175 |
 | Nickel ion level in scoliotic patients implanted with nitrogen plasma surface modified nickel-titanium superelastic spinal implant | Yeung, KWK; Lam, WN; Natarajan, D; Wu, SL; Tu, H; Chu, PK; Chung, CY; Lu, WW; Luk, KDK; Cheung, KMC | 2010 | 267 |
 | Biomechanical analysis of plasma treated NiTi materials for spinal deformity correction | Yeung, KWK; Lai, W; Wu, SL; T, Hu; Chu, PK; Chung, CY; Lu, WW; Luk, KDK | 2010 | 183 |
 | Long term cytocompatibility and in vivo investigation of nitrogen plasma implanted shape memory alloy | Yeung, KWK; Lam, JK; Chan, D; Luk, KDK; Cheung, KMC; Wu, SL; Hu, T; Chu, PK; Liu, X; Chu, CL | 2010 | 121 |
 | Nickel ion level in scoliotic patients implanted with nitrogen plasma surface modified nickel-titanium superelastic spinal implant: preliminary clinical trial results | Yeung, KWK; Lam, WN; Natarajan, D; Wu, SL; Tu, H; Chu, PK; Chung, CY; Lu, WW; Luk, KDK; Cheung, KMC | 2010 | 57 |
 | Fabrication and surface modification of porous nickel-titanium shape memory alloy for bone grafts | Wu, SL; Liu, XM; Chu, P; Hu, T; Yeung, KWK; Chung, CY | 2010 | 80 |
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