-
1
-
-
78650197429
-
Three-dimensional scaffolds for tissue engineering: The importance of uniformity in pore size and structure
-
Choi, S.-W.; Zhang, Y.; Xia, Y. Three-dimensional scaffolds for tissue engineering: the importance of uniformity in pore size and structure Langmuir 2010, 26, 19001-6
-
(2010)
Langmuir
, vol.26
, pp. 19001-19006
-
-
Choi, S.-W.1
Zhang, Y.2
Xia, Y.3
-
2
-
-
79952420018
-
Biomaterials & scaffolds for tissue engineering
-
OBrien, F. J. Biomaterials & scaffolds for tissue engineering Mater. Today 2011, 14, 88-95
-
(2011)
Mater. Today
, vol.14
, pp. 88-95
-
-
Obrien, F.J.1
-
3
-
-
84897376216
-
Polymeric Scaffolds in Tissue Engineering Application: A Review
-
Dhandayuthapani, B.; Yoshida, Y.; Maekawa, T.; Kumar, D. S. Polymeric Scaffolds in Tissue Engineering Application: A Review Int. J. Polym. Sci. 2011, 2011, 1-19
-
(2011)
Int. J. Polym. Sci
, vol.2011
, pp. 1-19
-
-
Dhandayuthapani, B.1
Yoshida, Y.2
Maekawa, T.3
Kumar, D.S.4
-
4
-
-
33749539648
-
Nano-fibrous scaffolding promotes osteoblast differentiation and biomineralization
-
Woo, K. M.; Jun, J.-H.; Chen, V. J.; Seo, J.; Baek, J.-H.; Ryoo, H.-M. Nano-fibrous scaffolding promotes osteoblast differentiation and biomineralization Biomaterials 2007, 28, 335-43
-
(2007)
Biomaterials
, vol.28
, pp. 335-343
-
-
Woo, K.M.1
Jun, J.-H.2
Chen, V.J.3
Seo, J.4
Baek, J.-H.5
Ryoo, H.-M.6
-
5
-
-
33645989162
-
Electrospun three-dimensional hyaluronic acid nanofibrous scaffolds
-
Ji, Y.; Ghosh, K.; Shu, X. Z; Li, B.; Sokolov, J. C; Prestwich, G. D. Electrospun three-dimensional hyaluronic acid nanofibrous scaffolds Biomaterials 2006, 27, 3782-92
-
(2006)
Biomaterials
, vol.27
, pp. 3782-3792
-
-
Ji, Y.1
Ghosh, K.2
Shu, X.Z.3
Li, B.4
Sokolov, J.C.5
Prestwich, G.D.6
-
6
-
-
84874100391
-
Novel 3D electrospun scaffolds with fibers oriented randomly and evenly in three dimensions to closely mimic the unique architectures of extracellular matrices in soft tissues: Fabrication and mechanism study
-
Cai, S.; Xu, H.; Jiang, Q.; Yang, Y. Novel 3D electrospun scaffolds with fibers oriented randomly and evenly in three dimensions to closely mimic the unique architectures of extracellular matrices in soft tissues: fabrication and mechanism study Langmuir 2013, 29, 2311-8
-
(2013)
Langmuir
, vol.29
, pp. 2311-2318
-
-
Cai, S.1
Xu, H.2
Jiang, Q.3
Yang, Y.4
-
7
-
-
33745799503
-
Electrospinning of polymeric nanofibers for tissue engineering applications: A review
-
Pham, Q. P.; Sharma, U.; Mikos, A. G. Electrospinning of polymeric nanofibers for tissue engineering applications: a review Tissue Eng. 2006, 12, 1197-211
-
(2006)
Tissue Eng
, vol.12
, pp. 1197-1211
-
-
Pham, Q.P.1
Sharma, U.2
Mikos, A.G.3
-
8
-
-
77949652722
-
Electrospinning: A fascinating fiber fabrication technique
-
Bhardwaj, N.; Kundu, S. C. Electrospinning: a fascinating fiber fabrication technique Biotechnol Adv. 2010, 28, 325-47
-
(2010)
Biotechnol Adv
, vol.28
, pp. 325-347
-
-
Bhardwaj, N.1
Kundu, S.C.2
-
9
-
-
34547475023
-
Electrospinning: A fascinating method for the preparation of ultrathin fibers
-
Greiner, A.; Wendorff, J. H. Electrospinning: a fascinating method for the preparation of ultrathin fibers Angew. Chem., Int. Ed. Engl. 2007, 46, 5670-703
-
(2007)
Angew. Chem., Int. Ed. Engl
, vol.46
, pp. 5670-5703
-
-
Greiner, A.1
Wendorff, J.H.2
-
10
-
-
15944363811
-
Electrospinning of nanofibers
-
Subbiah, T.; Bhat, G. S.; Tock, R. W.; Parameswaran, S.; Ramkumar, S. S. Electrospinning of nanofibers J. Appl. Polym. Sci. 2005, 96, 557-69
-
(2005)
J. Appl. Polym. Sci
, vol.96
, pp. 557-569
-
-
Subbiah, T.1
Bhat, G.S.2
Tock, R.W.3
Parameswaran, S.4
Ramkumar, S.S.5
-
11
-
-
35349005766
-
Reneker DH. Effects of parameters on nanofiber diameter determined from electrospinning model
-
Thompson, C. J.; Chase, G. G.; Yarin, a. L. Reneker DH. Effects of parameters on nanofiber diameter determined from electrospinning model Polymer (Guildf) 2007, 48, 6913-22
-
(2007)
Polymer (Guildf)
, vol.48
, pp. 6913-6922
-
-
Thompson, C.J.1
Chase, G.G.2
Yarin, A.L.3
-
12
-
-
84884566415
-
Mathematical modeling in electrospinning process of nanofibers: A detailed review
-
Rafiei, S.; Maghsoodloo, S.; Noroozi, B.; Mottaghitalab, V.; Haghi, A. K. Mathematical modeling in electrospinning process of nanofibers: a detailed review Cellul Chem. Technol. 2013, 47, 323-38
-
(2013)
Cellul Chem. Technol
, vol.47
, pp. 323-338
-
-
Rafiei, S.1
Maghsoodloo, S.2
Noroozi, B.3
Mottaghitalab, V.4
Haghi, A.K.5
-
13
-
-
85127819719
-
Effects of Working Parameters on Electrospinning
-
Springer: Berlin
-
Li, Z.; Wang, C. Effects of Working Parameters on Electrospinning. One-Dimensional Nanostructures, Berlin, Heidelberg; Springer: Berlin, 2013; p 15-29
-
(2013)
One-Dimensional Nanostructures, Berlin, Heidelberg
, pp. 15-29
-
-
Li, Z.1
Wang, C.2
-
14
-
-
74149095088
-
Nanofiber Technology in Gogotsi Nanomaterials Handbook
-
Ko, F. K. Nanofiber Technology in Gogotsi Nanomaterials Handbook Nanomater. Handb. 2006, 553-64
-
(2006)
Nanomater. Handb
, pp. 553-564
-
-
Ko, F.K.1
-
15
-
-
84903509175
-
Controlling the morphologies of electrospun nanofibers
-
Lin, T.; Wang, X. G. Controlling the morphologies of electrospun nanofibers Nanofibers Nanotechnol. Text 2007, 90-110
-
(2007)
Nanofibers Nanotechnol. Text
, pp. 90-110
-
-
Lin, T.1
Wang, X.G.2
-
16
-
-
0020125729
-
Moderately concentrated solutions of polystyrene. I. Viscosity as a function of concentration, temperature, and molecular weight
-
Hager, B. L; Berry, G. C. Moderately concentrated solutions of polystyrene. I. Viscosity as a function of concentration, temperature, and molecular weight J. Polym. Sci. Polym. Phys. Ed 1982, 20, 911-28
-
(1982)
J. Polym. Sci. Polym. Phys. Ed
, vol.20
, pp. 911-928
-
-
Hager, B.L.1
Berry, G.C.2
-
17
-
-
34147151583
-
Molecular weight dependent structural regimes during the electrospinning of PVA
-
Tao, J.; Shivkumar, S. Molecular weight dependent structural regimes during the electrospinning of PVA Mater. Lett. 2007, 61, 2325-8
-
(2007)
Mater. Lett
, vol.61
, pp. 2325-2328
-
-
Tao, J.1
Shivkumar, S.2
-
18
-
-
84866856460
-
Investigation of polyacrylonitrile electrospun nanofibres morphology as a function of polymer concentration, viscosity and Berry number
-
Nasouri, K.; Shoushtari, a. M.; Kaflou, A. Investigation of polyacrylonitrile electrospun nanofibres morphology as a function of polymer concentration, viscosity and Berry number Micro Nano Lett. 2012, 7, 423
-
(2012)
Micro Nano Lett
, vol.7
, pp. 423
-
-
Nasouri, K.1
Shoushtari, A.M.2
Kaflou, A.3
-
19
-
-
84903153373
-
-
Cengiz, F.; Kruciǹska, I.; Glis̀ciǹska, E. Comparative Analysis of Various Electrospinning Methods of Nanofibre Formation 2009, 17, 13-9
-
(2009)
Comparative Analysis of Various Electrospinning Methods of Nanofibre Formation
, vol.17
, pp. 13-19
-
-
Cengiz, F.1
Kruciǹska, I.2
Glis̀ciǹska, E.3
-
20
-
-
80052212750
-
Highly porous core-shell polymeric fiber network
-
Gulfam, M.; Lee, J. M.; Kim, J.-E.; Lim, D. W.; Lee, E. K.; Chung, B. G. Highly porous core-shell polymeric fiber network Langmuir 2011, 27, 10993-9
-
(2011)
Langmuir
, vol.27
, pp. 10993-10999
-
-
Gulfam, M.1
Lee, J.M.2
Kim, J.-E.3
Lim, D.W.4
Lee, E.K.5
Chung, B.G.6
-
21
-
-
20444380699
-
Electrospun protein fibers as matrices for tissue engineering
-
Li, M.; Mondrinos, M. J.; Gandhi, M. R.; Ko, F. K.; Weiss, A. S.; Lelkes, P. I. Electrospun protein fibers as matrices for tissue engineering Biomaterials 2005, 26, 5999-6008
-
(2005)
Biomaterials
, vol.26
, pp. 5999-6008
-
-
Li, M.1
Mondrinos, M.J.2
Gandhi, M.R.3
Ko, F.K.4
Weiss, A.S.5
Lelkes, P.I.6
-
22
-
-
84903142799
-
Gelatin. Kirk-Othmer Encycl
-
Keenan, T. R. Gelatin. Kirk-Othmer Encycl. Chem. Technol. 2003
-
(2003)
Chem. Technol
-
-
Keenan, T.R.1
-
23
-
-
84903197025
-
Electrospinning of gelatin scaffolds with low acetic acid concentration effect of solvent composition on both diameter of nanofibers and cell viability
-
Erencia, M.; Cano, F.; Tornero, J. A.; Fernandes, M. M.; Tzanov, T.; Macanás, J.; Carrillo, F. Electrospinning of gelatin scaffolds with low acetic acid concentration effect of solvent composition on both diameter of nanofibers and cell viability. Summited 2014
-
(2014)
Summited
-
-
Erencia, M.1
Cano, F.2
Tornero, J.A.3
Fernandes, M.M.4
Tzanov, T.5
Macanás, J.6
Carrillo, F.7
-
24
-
-
19944422122
-
Characterization of gelatin nanofiber prepared from gelatin-formic acid solution
-
Ki, C. S.; Baek, D. H.; Gang, K. D.; Lee, K. H.; Um, I. C.; Park, Y. H. Characterization of gelatin nanofiber prepared from gelatin-formic acid solution Polymer (Guildf) 2005, 46, 5094-102
-
(2005)
Polymer (Guildf)
, vol.46
, pp. 5094-5102
-
-
Ki, C.S.1
Baek, D.H.2
Gang, K.D.3
Lee, K.H.4
Um, I.C.5
Park, Y.H.6
-
25
-
-
34547801877
-
Electrospun Gelatin Fibers: Effect of Solvent System on Morphology and Fiber Diameters
-
Choktaweesap, N.; Arayanarakul, K.; Aht-ong, D.; Meechaisue, C.; Supaphol, P. Electrospun Gelatin Fibers: Effect of Solvent System on Morphology and Fiber Diameters Polym. J. 2007, 39, 622-31
-
(2007)
Polym. J
, vol.39
, pp. 622-631
-
-
Choktaweesap, N.1
Arayanarakul, K.2
Aht-Ong, D.3
Meechaisue, C.4
Supaphol, P.5
-
26
-
-
84902650578
-
Hydrodynamic Properties of Gelatin - Studies from Intrinsic Viscosity Measurements
-
Masuelli, M. A.; Sansone, M. G.; Aplicada, D. F. Hydrodynamic Properties of Gelatin-Studies from Intrinsic Viscosity Measurements Prod. Appl. Biopolym. 2012, 85-116
-
(2012)
Prod. Appl. Biopolym
, pp. 85-116
-
-
Masuelli, M.A.1
Sansone, M.G.2
Aplicada, D.F.3
-
27
-
-
0000944047
-
Gelation of aqueous gelatin solutions. I. Structural Investigation
-
Djabourov, M.; Leblond, J.; Papon, P. Gelation of aqueous gelatin solutions. I. Structural Investigation J. Phys. (Paris) 1988, 49, 319-32
-
(1988)
J. Phys. (Paris)
, vol.49
, pp. 319-332
-
-
Djabourov, M.1
Leblond, J.2
Papon, P.3
-
28
-
-
60149110376
-
Rheokinetic model to characterize the maturation process of gelatin solutions under shear flow
-
Ottone, M. L.; Peirotti, M. B.; Deiber, J. A. Rheokinetic model to characterize the maturation process of gelatin solutions under shear flow Food Hydrocoll. 2009, 23, 1342-50
-
(2009)
Food Hydrocoll
, vol.23
, pp. 1342-1350
-
-
Ottone, M.L.1
Peirotti, M.B.2
Deiber, J.A.3
-
29
-
-
0034891796
-
Fluoroalcohol-induced structural changes of proteins: Some aspects of cosolvent-protein interactions
-
Gast, K.; Siemer, A.; Zirwer, D.; Damaschun, G. Fluoroalcohol-induced structural changes of proteins: some aspects of cosolvent-protein interactions Eur. Biophys J. 2001, 30, 273-83
-
(2001)
Eur. Biophys J
, vol.30
, pp. 273-283
-
-
Gast, K.1
Siemer, A.2
Zirwer, D.3
Damaschun, G.4
-
31
-
-
84861526830
-
Importance of viscosity parameters in electrospinning: Of monolithic and core-shell fibers
-
Tiwari, S. K.; Venkatraman, S. S. Importance of viscosity parameters in electrospinning: Of monolithic and core-shell fibers Mater. Sci. Eng., C 2012, 32, 1037-42
-
(2012)
Mater. Sci. Eng., C
, vol.32
, pp. 1037-1042
-
-
Tiwari, S.K.1
Venkatraman, S.S.2
-
32
-
-
0025506995
-
Viscosity of selected binary, ternary, and quaternary liquid mixtures
-
Sollman, K.; Marschall, E.; Mi, W. Viscosity of selected binary, ternary, and quaternary liquid mixtures J. Chem. Eng. 1990, 35, 375-81
-
(1990)
J. Chem. Eng
, vol.35
, pp. 375-381
-
-
Sollman, K.1
Marschall, E.2
Mi, W.3
-
33
-
-
84891952238
-
Estimation of viscosity of binary mixtures of ionic liquids and solvents using an artificial neural network based on the structure groups of the ionic liquid
-
Fatehi, M.-R.; Raeissi, S.; Mowla, D. Estimation of viscosity of binary mixtures of ionic liquids and solvents using an artificial neural network based on the structure groups of the ionic liquid Fluid Phase Equilib. 2014, 364, 88-94
-
(2014)
Fluid Phase Equilib
, vol.364
, pp. 88-94
-
-
Fatehi, M.-R.1
Raeissi, S.2
Mowla, D.3
-
34
-
-
0346316563
-
Dynamics of Entangled Polymer Solutions. II. Inclusion of Hydrodynamic Interactions
-
de Gennes, P. G. Dynamics of Entangled Polymer Solutions. II. Inclusion of Hydrodynamic Interactions Macromolecules 1976, 9, 594-8
-
(1976)
Macromolecules
, vol.9
, pp. 594-598
-
-
De Gennes, P.G.1
-
35
-
-
0025420467
-
Two-Parameter scaling for polymers in theta solvents
-
Colby, R.; Rubinstein, M. Two-Parameter scaling for polymers in theta solvents Macromolecules 1990, 23, 2753-7
-
(1990)
Macromolecules
, vol.23
, pp. 2753-2757
-
-
Colby, R.1
Rubinstein, M.2
-
36
-
-
18844444773
-
Electrospinning of linear homopolymers of poly(methyl methacrylate): Exploring relationships between fiber formation, viscosity, molecular weight and concentration in a good solvent
-
Gupta, P.; Elkins, C.; Long, T. E.; Wilkes, G. L. Electrospinning of linear homopolymers of poly(methyl methacrylate): exploring relationships between fiber formation, viscosity, molecular weight and concentration in a good solvent Polymer (Guildf) 2005, 46, 4799-810
-
(2005)
Polymer (Guildf)
, vol.46
, pp. 4799-4810
-
-
Gupta, P.1
Elkins, C.2
Long, T.E.3
Wilkes, G.L.4
-
38
-
-
0037090860
-
Equation of state for polymer solution
-
Matsuoka, S.; Cowman, M. K. Equation of state for polymer solution Polymer (Guildf) 2002, 43, 3447-53
-
(2002)
Polymer (Guildf)
, vol.43
, pp. 3447-3453
-
-
Matsuoka, S.1
Cowman, M.K.2
-
39
-
-
84862569017
-
Newtonian viscosity of dilute, semidilute and concentrated polymer solution
-
Ultracki, L. A. Jamieson, A. M. Wiley: New York
-
Jamieson, A. M.; Simha, R. In Newtonian viscosity of dilute, semidilute and concentrated polymer solution. Ultracki, L. A.; Jamieson, A. M., Eds.; Polymer Physics from Suspensions to nanocomposites beyond; Wiley: New York, 2010; p 15-88
-
(2010)
Polymer Physics from Suspensions to Nanocomposites beyond
, pp. 15-88
-
-
Jamieson, A.M.1
Simha, R.2
-
40
-
-
17844398222
-
Electrospinning of chitosan dissolved in concentrated acetic acid solution
-
Geng, X.; Kwon, O.-H.; Jang, J. Electrospinning of chitosan dissolved in concentrated acetic acid solution Biomaterials 2005, 26, 5427-32
-
(2005)
Biomaterials
, vol.26
, pp. 5427-5432
-
-
Geng, X.1
Kwon, O.-H.2
Jang, J.3
-
41
-
-
80755187559
-
Experimental dynamic viscosities of binary mixtures: Acetic acid + water, benzene, toluene, n-hexane, n-heptane at 296.15, 302.15, 308.15, 314.15 and 319.15 K
-
Bolat, G.; Lisa, G.; Popa, I. M. Experimental dynamic viscosities of binary mixtures: acetic acid + water, benzene, toluene, n-hexane, n-heptane AT 296.15, 302.15, 308.15, 314.15 and 319.15 K Sci. Study Res. 2005, VI, 181-90
-
(2005)
Sci. Study Res
, vol.6
, pp. 181-190
-
-
Bolat, G.1
Lisa, G.2
Popa, I.M.3
-
42
-
-
33947347615
-
The viscosities of binary mixtures of the associated liquids, water, formic acid and acetic acid
-
Davis, P. B.; Jones, H. C. The viscosities of binary mixtures of the associated liquids, water, formic acid and acetic acid J. Am. Chem. Soc. 1915, 37, 1194-8
-
(1915)
J. Am. Chem. Soc
, vol.37
, pp. 1194-1198
-
-
Davis, P.B.1
Jones, H.C.2
-
43
-
-
84863256808
-
Lignin-based electrospun nanofibers reinforced with cellulose nanocrystals
-
Ago, M.; Okajima, K.; Jakes, J. E.; Park, S.; Rojas, O. J. Lignin-based electrospun nanofibers reinforced with cellulose nanocrystals Biomacromolecules 2012, 13, 918-26
-
(2012)
Biomacromolecules
, vol.13
, pp. 918-926
-
-
Ago, M.1
Okajima, K.2
Jakes, J.E.3
Park, S.4
Rojas, O.J.5
-
44
-
-
77954529101
-
Electrospun scaffolds of a polyhydroxyalkanoate consisting of omega-hydroxylpentadecanoate repeat units: Fabrication and in vitro biocompatibility studies
-
Focarete, M. L.; Gualandi, C.; Scandola, M.; Govoni, M.; Giordano, E.; Foroni, L. Electrospun scaffolds of a polyhydroxyalkanoate consisting of omega-hydroxylpentadecanoate repeat units: fabrication and in vitro biocompatibility studies J. Biomater Sci. Polym. Ed 2010, 21, 1283-96
-
(2010)
J. Biomater Sci. Polym. Ed
, vol.21
, pp. 1283-1296
-
-
Focarete, M.L.1
Gualandi, C.2
Scandola, M.3
Govoni, M.4
Giordano, E.5
Foroni, L.6
-
45
-
-
84873956836
-
Nanofiber size-dependent sensitivity of fibroblast directionality to the methodology for scaffold alignment
-
Chaurey, V.; Block, F.; Su, Y. H.; Chiang, P. C.; Botchwey, E.; Chou, C. F. Nanofiber size-dependent sensitivity of fibroblast directionality to the methodology for scaffold alignment. Acta Biomater 2012
-
(2012)
Acta Biomater
-
-
Chaurey, V.1
Block, F.2
Su, Y.H.3
Chiang, P.C.4
Botchwey, E.5
Chou, C.F.6
-
46
-
-
0442326636
-
Controlling surface morphology of electrospun polystyrene fibers: Effect of humidity and molecular weight in the electrospinning process
-
Casper, C. L.; Stephens, J. S.; Tassi, N. G.; Chase, D. B.; Rabolt, J. F. Controlling surface morphology of electrospun polystyrene fibers: Effect of humidity and molecular weight in the electrospinning process Macromolecules 2004, 37, 573-8
-
(2004)
Macromolecules
, vol.37
, pp. 573-578
-
-
Casper, C.L.1
Stephens, J.S.2
Tassi, N.G.3
Chase, D.B.4
Rabolt, J.F.5
-
47
-
-
0242607168
-
Effect of molecular weight on fibrous PVA produced by electrospinning
-
Koski, A.; Yim, K.; Shivkumar, S. Effect of molecular weight on fibrous PVA produced by electrospinning Mater. Lett. 2004, 58, 493-7
-
(2004)
Mater. Lett
, vol.58
, pp. 493-497
-
-
Koski, A.1
Yim, K.2
Shivkumar, S.3
-
48
-
-
3543088727
-
Nano-sized beads and porous fiber constructs of Poly(μ-caprolactone) produced by electrospinning
-
Hsu, C.-M.; Shivkumar, S. Nano-sized beads and porous fiber constructs of Poly(μ-caprolactone) produced by electrospinning J. Mater. Sci. 2004, 39, 3003-13
-
(2004)
J. Mater. Sci
, vol.39
, pp. 3003-3013
-
-
Hsu, C.-M.1
Shivkumar, S.2
|