nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Accelerated Micellization and Aggregation of Pluronic Micelles by Interaction with Heparin
|
Lee, Seung-Young |
|
2010 |
21 |
6 |
p. 727-739 |
artikel |
2 |
Accelerated Micellization and Aggregation of Pluronic Micelles by Interaction with Heparin
|
Lee, Seung-Young |
|
2010 |
21 |
6 |
p. 727-739 |
artikel |
3 |
Accelerated Micellization and Aggregation of Pluronic Micelles by Interaction with Heparin
|
Lee, Seung-Young |
|
2010 |
21 |
6 |
p. 727-739 |
artikel |
4 |
Accelerated Micellization and Aggregation of Pluronic Micelles by Interaction with Heparin
|
Lee, Seung-Young |
|
2010 |
21 |
6 |
p. 727-739 |
artikel |
5 |
Alginate Film as a Novel Post-Surgical Tissue Adhesion Barrier
|
Cho, Wan Jin |
|
2010 |
21 |
6 |
p. 701-713 |
artikel |
6 |
Alginate Film as a Novel Post-Surgical Tissue Adhesion Barrier
|
Cho, Wan Jin |
|
2010 |
21 |
6 |
p. 701-713 |
artikel |
7 |
Alginate Film as a Novel Post-Surgical Tissue Adhesion Barrier
|
Cho, Wan Jin |
|
2010 |
21 |
6 |
p. 701-713 |
artikel |
8 |
Alginate Film as a Novel Post-Surgical Tissue Adhesion Barrier
|
Cho, Wan Jin |
|
2010 |
21 |
6 |
p. 701-713 |
artikel |
9 |
An Amphiphilic Nanocarrier Based on Guar Gum-graft-Poly(ε-caprolactone) for Potential Drug-Delivery Applications
|
Tiwari, Ashutosh |
|
2010 |
21 |
6 |
p. 937-949 |
artikel |
10 |
An Amphiphilic Nanocarrier Based on Guar Gum-graft-Poly(ε-caprolactone) for Potential Drug-Delivery Applications
|
Tiwari, Ashutosh |
|
2010 |
21 |
6 |
p. 937-949 |
artikel |
11 |
An Amphiphilic Nanocarrier Based on Guar Gum-graft-Poly(ε-caprolactone) for Potential Drug-Delivery Applications
|
Tiwari, Ashutosh |
|
2010 |
21 |
6 |
p. 937-949 |
artikel |
12 |
An Amphiphilic Nanocarrier Based on Guar Gum-graft-Poly(ε-caprolactone) for Potential Drug-Delivery Applications
|
Tiwari, Ashutosh |
|
2010 |
21 |
6 |
p. 937-949 |
artikel |
13 |
Biocompatibility of Poly(L-lactide) Films Modified with Poly(ethylene imine) and Polyelectrolyte Multilayers
|
Liu, Zhen-Mei |
|
2010 |
21 |
6 |
p. 893-912 |
artikel |
14 |
Biocompatibility of Poly(L-lactide) Films Modified with Poly(ethylene imine) and Polyelectrolyte Multilayers
|
Liu, Zhen-Mei |
|
2010 |
21 |
6 |
p. 893-912 |
artikel |
15 |
Biocompatibility of Poly(L-lactide) Films Modified with Poly(ethylene imine) and Polyelectrolyte Multilayers
|
Liu, Zhen-Mei |
|
2010 |
21 |
6 |
p. 893-912 |
artikel |
16 |
Biocompatibility of Poly(L-lactide) Films Modified with Poly(ethylene imine) and Polyelectrolyte Multilayers
|
Liu, Zhen-Mei |
|
2010 |
21 |
6 |
p. 893-912 |
artikel |
17 |
Controlled Release of PDGF-bb by Coaxial Electrospun Dextran/Poly(L-lactide-co-ε-caprolactone) Fibers with an Ultrafine Core/Shell Structure
|
Li, Hua |
|
2010 |
21 |
6 |
p. 803-819 |
artikel |
18 |
Controlled Release of PDGF-bb by Coaxial Electrospun Dextran/Poly(L-lactide-co-ε-caprolactone) Fibers with an Ultrafine Core/Shell Structure
|
Li, Hua |
|
2010 |
21 |
6 |
p. 803-819 |
artikel |
19 |
Controlled Release of PDGF-bb by Coaxial Electrospun Dextran/Poly(L-lactide-co-ε-caprolactone) Fibers with an Ultrafine Core/Shell Structure
|
Li, Hua |
|
2010 |
21 |
6 |
p. 803-819 |
artikel |
20 |
Controlled Release of PDGF-bb by Coaxial Electrospun Dextran/Poly(L-lactide-co-ε-caprolactone) Fibers with an Ultrafine Core/Shell Structure
|
Li, Hua |
|
2010 |
21 |
6 |
p. 803-819 |
artikel |
21 |
Cross-Linking and Depolymerisation of γ-Irradiated Fish Gelatin and Porcine Gelatin Studied by SEC-MALLS and SDS-PAGE: A Comparative Study
|
Hara, Masayuki |
|
2010 |
21 |
6 |
p. 877-892 |
artikel |
22 |
Cross-Linking and Depolymerisation of γ-Irradiated Fish Gelatin and Porcine Gelatin Studied by SEC-MALLS and SDS-PAGE: A Comparative Study
|
Hara, Masayuki |
|
2010 |
21 |
6 |
p. 877-892 |
artikel |
23 |
Cross-Linking and Depolymerisation of γ-Irradiated Fish Gelatin and Porcine Gelatin Studied by SEC-MALLS and SDS-PAGE: A Comparative Study
|
Hara, Masayuki |
|
2010 |
21 |
6 |
p. 877-892 |
artikel |
24 |
Cross-Linking and Depolymerisation of γ-Irradiated Fish Gelatin and Porcine Gelatin Studied by SEC-MALLS and SDS-PAGE: A Comparative Study
|
Hara, Masayuki |
|
2010 |
21 |
6 |
p. 877-892 |
artikel |
25 |
Development of a Wound Dressing Composed of Hyaluronic Acid Sponge Containing Arginine and Epidermal Growth Factor
|
Matsumoto, Yasuhiro |
|
2010 |
21 |
6 |
p. 715-726 |
artikel |
26 |
Development of a Wound Dressing Composed of Hyaluronic Acid Sponge Containing Arginine and Epidermal Growth Factor
|
Matsumoto, Yasuhiro |
|
2010 |
21 |
6 |
p. 715-726 |
artikel |
27 |
Development of a Wound Dressing Composed of Hyaluronic Acid Sponge Containing Arginine and Epidermal Growth Factor
|
Matsumoto, Yasuhiro |
|
2010 |
21 |
6 |
p. 715-726 |
artikel |
28 |
Development of a Wound Dressing Composed of Hyaluronic Acid Sponge Containing Arginine and Epidermal Growth Factor
|
Matsumoto, Yasuhiro |
|
2010 |
21 |
6 |
p. 715-726 |
artikel |
29 |
Development of Biodegradable Polyurethane Scaffolds Using Amino Acid and Dipeptide-Based Chain Extenders for Soft Tissue Engineering
|
Parrag, Ian |
|
2010 |
21 |
6 |
p. 843-862 |
artikel |
30 |
Development of Biodegradable Polyurethane Scaffolds Using Amino Acid and Dipeptide-Based Chain Extenders for Soft Tissue Engineering
|
Parrag, Ian |
|
2010 |
21 |
6 |
p. 843-862 |
artikel |
31 |
Development of Biodegradable Polyurethane Scaffolds Using Amino Acid and Dipeptide-Based Chain Extenders for Soft Tissue Engineering
|
Parrag, Ian |
|
2010 |
21 |
6 |
p. 843-862 |
artikel |
32 |
Development of Biodegradable Polyurethane Scaffolds Using Amino Acid and Dipeptide-Based Chain Extenders for Soft Tissue Engineering
|
Parrag, Ian |
|
2010 |
21 |
6 |
p. 843-862 |
artikel |
33 |
Drug Release from a Chemically-Anchored PEG/Phospholipid Monolayer onto Polymer-Coated Metallic Stents
|
Krishna, Ohm Divyam |
|
2010 |
21 |
6 |
p. 789-802 |
artikel |
34 |
Drug Release from a Chemically-Anchored PEG/Phospholipid Monolayer onto Polymer-Coated Metallic Stents
|
Krishna, Ohm Divyam |
|
2010 |
21 |
6 |
p. 789-802 |
artikel |
35 |
Drug Release from a Chemically-Anchored PEG/Phospholipid Monolayer onto Polymer-Coated Metallic Stents
|
Krishna, Ohm Divyam |
|
2010 |
21 |
6 |
p. 789-802 |
artikel |
36 |
Drug Release from a Chemically-Anchored PEG/Phospholipid Monolayer onto Polymer-Coated Metallic Stents
|
Krishna, Ohm Divyam |
|
2010 |
21 |
6 |
p. 789-802 |
artikel |
37 |
Heparin-Binding-Affinity-Based Delivery Systems Releasing Nerve Growth Factor Enhance Sciatic Nerve Regeneration
|
Wood, Matthew |
|
2010 |
21 |
6 |
p. 771-787 |
artikel |
38 |
Heparin-Binding-Affinity-Based Delivery Systems Releasing Nerve Growth Factor Enhance Sciatic Nerve Regeneration
|
Wood, Matthew |
|
2010 |
21 |
6 |
p. 771-787 |
artikel |
39 |
Heparin-Binding-Affinity-Based Delivery Systems Releasing Nerve Growth Factor Enhance Sciatic Nerve Regeneration
|
Wood, Matthew |
|
2010 |
21 |
6 |
p. 771-787 |
artikel |
40 |
Heparin-Binding-Affinity-Based Delivery Systems Releasing Nerve Growth Factor Enhance Sciatic Nerve Regeneration
|
Wood, Matthew |
|
2010 |
21 |
6 |
p. 771-787 |
artikel |
41 |
Manipulating Degradation Time in a N-isopropylacrylamide-Based Co-polymer with Hydrolysis-Dependent LCST
|
Cui, Zhanwu |
|
2010 |
21 |
6 |
p. 913-926 |
artikel |
42 |
Manipulating Degradation Time in a N-isopropylacrylamide-Based Co-polymer with Hydrolysis-Dependent LCST
|
Cui, Zhanwu |
|
2010 |
21 |
6 |
p. 913-926 |
artikel |
43 |
Manipulating Degradation Time in a N-isopropylacrylamide-Based Co-polymer with Hydrolysis-Dependent LCST
|
Cui, Zhanwu |
|
2010 |
21 |
6 |
p. 913-926 |
artikel |
44 |
Manipulating Degradation Time in a N-isopropylacrylamide-Based Co-polymer with Hydrolysis-Dependent LCST
|
Cui, Zhanwu |
|
2010 |
21 |
6 |
p. 913-926 |
artikel |
45 |
Preliminary Studies on the Hydrolytic Degradation and Biocompatibility of Poly(3-allyloxy-1,2-propylene succinate)
|
Łukaszczyk, Jan |
|
2010 |
21 |
6 |
p. 691-700 |
artikel |
46 |
Preliminary Studies on the Hydrolytic Degradation and Biocompatibility of Poly(3-allyloxy-1,2-propylene succinate)
|
Łukaszczyk, Jan |
|
2010 |
21 |
6 |
p. 691-700 |
artikel |
47 |
Preliminary Studies on the Hydrolytic Degradation and Biocompatibility of Poly(3-allyloxy-1,2-propylene succinate)
|
Łukaszczyk, Jan |
|
2010 |
21 |
6 |
p. 691-700 |
artikel |
48 |
Preliminary Studies on the Hydrolytic Degradation and Biocompatibility of Poly(3-allyloxy-1,2-propylene succinate)
|
Łukaszczyk, Jan |
|
2010 |
21 |
6 |
p. 691-700 |
artikel |
49 |
Rapid and Efficient Assembly of Functional Silicone Surfaces Protected by PEG: Cell Adhesion to Peptide-Modified PDMS
|
Mikhail, Andrew |
|
2010 |
21 |
6 |
p. 821-842 |
artikel |
50 |
Rapid and Efficient Assembly of Functional Silicone Surfaces Protected by PEG: Cell Adhesion to Peptide-Modified PDMS
|
Mikhail, Andrew |
|
2010 |
21 |
6 |
p. 821-842 |
artikel |
51 |
Rapid and Efficient Assembly of Functional Silicone Surfaces Protected by PEG: Cell Adhesion to Peptide-Modified PDMS
|
Mikhail, Andrew |
|
2010 |
21 |
6 |
p. 821-842 |
artikel |
52 |
Rapid and Efficient Assembly of Functional Silicone Surfaces Protected by PEG: Cell Adhesion to Peptide-Modified PDMS
|
Mikhail, Andrew |
|
2010 |
21 |
6 |
p. 821-842 |
artikel |
53 |
Reinforcement of a Porous Collagen Scaffold with Surface-Activated PLA Fibers
|
Liu, Xi |
|
2010 |
21 |
6 |
p. 963-977 |
artikel |
54 |
Reinforcement of a Porous Collagen Scaffold with Surface-Activated PLA Fibers
|
Liu, Xi |
|
2010 |
21 |
6 |
p. 963-977 |
artikel |
55 |
Reinforcement of a Porous Collagen Scaffold with Surface-Activated PLA Fibers
|
Liu, Xi |
|
2010 |
21 |
6 |
p. 963-977 |
artikel |
56 |
Reinforcement of a Porous Collagen Scaffold with Surface-Activated PLA Fibers
|
Liu, Xi |
|
2010 |
21 |
6 |
p. 963-977 |
artikel |
57 |
Solid Free-Form Fabrication-Based PCL/HA Scaffolds Fabricated with a Multi-head Deposition System for Bone Tissue Engineering
|
Kim, Jong Young |
|
2010 |
21 |
6 |
p. 951-962 |
artikel |
58 |
Solid Free-Form Fabrication-Based PCL/HA Scaffolds Fabricated with a Multi-head Deposition System for Bone Tissue Engineering
|
Kim, Jong Young |
|
2010 |
21 |
6 |
p. 951-962 |
artikel |
59 |
Solid Free-Form Fabrication-Based PCL/HA Scaffolds Fabricated with a Multi-head Deposition System for Bone Tissue Engineering
|
Kim, Jong Young |
|
2010 |
21 |
6 |
p. 951-962 |
artikel |
60 |
Solid Free-Form Fabrication-Based PCL/HA Scaffolds Fabricated with a Multi-head Deposition System for Bone Tissue Engineering
|
Kim, Jong Young |
|
2010 |
21 |
6 |
p. 951-962 |
artikel |
61 |
Structure, Corrosion Behavior and Mechanical Property of a Novel Poly(vinyl alcohol) Composite in Simulated Body Fluid
|
Li, Juan |
|
2010 |
21 |
6 |
p. 863-876 |
artikel |
62 |
Structure, Corrosion Behavior and Mechanical Property of a Novel Poly(vinyl alcohol) Composite in Simulated Body Fluid
|
Li, Juan |
|
2010 |
21 |
6 |
p. 863-876 |
artikel |
63 |
Structure, Corrosion Behavior and Mechanical Property of a Novel Poly(vinyl alcohol) Composite in Simulated Body Fluid
|
Li, Juan |
|
2010 |
21 |
6 |
p. 863-876 |
artikel |
64 |
Structure, Corrosion Behavior and Mechanical Property of a Novel Poly(vinyl alcohol) Composite in Simulated Body Fluid
|
Li, Juan |
|
2010 |
21 |
6 |
p. 863-876 |
artikel |
65 |
Synthesis of Poly(ethylene glycol)-g-Chitosan-g-Poly(ethylene imine) Co-polymer and In Vitro Study of Its Suitability as a Gene-Delivery Vector
|
Zhang, Wei |
|
2010 |
21 |
6 |
p. 741-758 |
artikel |
66 |
Synthesis of Poly(ethylene glycol)-g-Chitosan-g-Poly(ethylene imine) Co-polymer and In Vitro Study of Its Suitability as a Gene-Delivery Vector
|
Zhang, Wei |
|
2010 |
21 |
6 |
p. 741-758 |
artikel |
67 |
Synthesis of Poly(ethylene glycol)-g-Chitosan-g-Poly(ethylene imine) Co-polymer and In Vitro Study of Its Suitability as a Gene-Delivery Vector
|
Zhang, Wei |
|
2010 |
21 |
6 |
p. 741-758 |
artikel |
68 |
Synthesis of Poly(ethylene glycol)-g-Chitosan-g-Poly(ethylene imine) Co-polymer and In Vitro Study of Its Suitability as a Gene-Delivery Vector
|
Zhang, Wei |
|
2010 |
21 |
6 |
p. 741-758 |
artikel |
69 |
Synthesis of Poly(α,β-[N-(2-hydroxyethyl)-L-aspartamide])-folate for Drug Delivery
|
Zou, Tao |
|
2010 |
21 |
6 |
p. 759-770 |
artikel |
70 |
Synthesis of Poly(α,β-[N-(2-hydroxyethyl)-L-aspartamide])-folate for Drug Delivery
|
Zou, Tao |
|
2010 |
21 |
6 |
p. 759-770 |
artikel |
71 |
Synthesis of Poly(α,β-[N-(2-hydroxyethyl)-L-aspartamide])-folate for Drug Delivery
|
Zou, Tao |
|
2010 |
21 |
6 |
p. 759-770 |
artikel |
72 |
Synthesis of Poly(α,β-[N-(2-hydroxyethyl)-L-aspartamide])-folate for Drug Delivery
|
Zou, Tao |
|
2010 |
21 |
6 |
p. 759-770 |
artikel |
73 |
Synthesis of Poly(p-dioxanone) Catalyzed by Zn L-Lactate under Microwave Irradiation and Its Application in Ibuprofen Delivery
|
Wang, Xiu-Li |
|
2010 |
21 |
6 |
p. 927-936 |
artikel |
74 |
Synthesis of Poly(p-dioxanone) Catalyzed by Zn L-Lactate under Microwave Irradiation and Its Application in Ibuprofen Delivery
|
Wang, Xiu-Li |
|
2010 |
21 |
6 |
p. 927-936 |
artikel |
75 |
Synthesis of Poly(p-dioxanone) Catalyzed by Zn L-Lactate under Microwave Irradiation and Its Application in Ibuprofen Delivery
|
Wang, Xiu-Li |
|
2010 |
21 |
6 |
p. 927-936 |
artikel |
76 |
Synthesis of Poly(p-dioxanone) Catalyzed by Zn L-Lactate under Microwave Irradiation and Its Application in Ibuprofen Delivery
|
Wang, Xiu-Li |
|
2010 |
21 |
6 |
p. 927-936 |
artikel |