Biomedical Engineering Reference
In-Depth Information
coated titanium alloys, Biomaterials 23 (2002)
3651 e 3659.
[72] D.A. Puleo, A. Nanci, Understanding and
controlling
and ultraviolet-ozone modification of poly-
styrene, J. Vacuum Sci. Technol. 13 (4) (1995)
2023 e 2029.
[84] A.M. Wrobel, M.R. Wertheimer, Plasma-poly-
merized organosilicones and organometallics,
in: R. d'Agostino (Ed.), Plasma Deposition,
Treatment, and Etching of Polymers, Kluwer
Academic, Dordrecht, 1990, pp. 164 e 255.
[85] P.K. Chu, J.Y. Chen, L.P. Wang, N. Huang,
Plasma-surface modification of biomaterials,
Mater. Sci. Eng. Rep. 36 (5 e 6) (2002) 143 e 206.
[86] J.F. Rabek, Photodegradation of polymers:
physical characteristics and applications,
Springer, Berlin and New York, 1996.
[87] M.R. Davidson, S.A. Mitchell, R.H. Bradley,
Surface studies of low molecular weight
photolysis products from UV-ozone oxidised
polystyrene, Surf. Sci. 581 (2005) 169 e 177.
[88] A. Welle, E. Gottwald, UV-based patterning of
polymeric substrates for cell culture applica-
tions, Biomed. Microdev. 4 (1) (2002) 33 e 41.
[89] H. Biederman, L. Martinu, Plasma polymer-
metal composite films, in: R. d'Agostino (Ed.),
Plasma Deposition, Treatment, amd Etching of
Polymers, Kluwer Academic, Dordrecht,
1990, pp. 270 e 317.
[90] M.G. Sowa, D. Fischer, H.H. Eysel,
H.H. Mantsch, FT-IR PAS depth profiling
investigation of polyethylene surface sulfona-
tion, J. Mol. Struct. 379 (1 e 3) (1996) 77 e 85.
[91] D.M. Brewis, R.H. Dahm, A review of elec-
trochemical pretreatments of polymers, Int. J.
Adhesion Adhesives 21 (2001) 397 e 409.
[92] J.P. Ranieri, R. Bellamkonda, J. Jacob,
T.G. Vargo, J.A. Gardella, P. Aebischer,
Selective neuronal cell attachment to a cova-
lently patterned monoamine on fluorinated
ethylene propylene films, J. Biomed. Mater.
Res. 27 (1993) 917 e 925.
[93] M. Morra, C. Cassinelli, Thermal recovery of
cells cultured on poly(
the
bone
implant
interface,
Biomaterials 20 (1999) 2311 e 2321.
[73] P. Favia, R. d'Agostino, Plasma treatments and
plasma depostion of polymers for biomedical
applications, Surf. Coat. Technol. 98 (1998)
1102 e 1106.
[74] L. Tang, Y. Wu, R.B. Timmons, Fibrinogen
adsorption and host tissue responses to plasma
functionalised surfaces, J. Biomed. Mater. Res.
42 (1) (1998) 156 e 163.
[75] S. Jha, S. Bhowmik, N. Bhatnagar,
N.K. Bhattacharya, U. Deka, H.M.S. Iqbal, et
al., Experimental investigation into the effect
of adhesion properties of PEEK modified by
atmospheric pressure plasma and low pressure
plasma, J. Appl. Polym. Sci. 118 (1) (2010)
173 e 179.
[76] E. Piskin, Plasma processing of biomaterials,
J. Biomater. Sci. Polym. Ed. 4 (1) (1992) 45 e 60.
[77] M. Mrksich, G.M. Whitesides, Patterning self-
assembled monolayers using microcontact
printing: a new technology for biosensors?
TIBTech 13 (1995) 235 e 238.
[78] L. Dai, H.J. Griesser, A.W.H. Mau, Surface
modification by plasma etching and plasma
patterning,
J. Phys. Chem.
101
(1997)
9548 e 9554.
[79] N.A. Bullett, R.D. Short, T. O'Leary,
A.J. Beck, C.W.I. Douglas, M. Cambray-
Deakin, et al., Direct imaging of plasma
polymerized chemical micropatterns, Surf.
Interface Anal. 31 (2001) 1074 e 1076.
[80] M. Malmsten, J.A. Johansson, N.L. Burns,
H.K. Yasuda, Protein adsorbtion at N-butane
plasma polymer surfaces, Colloids Surf. B
Biointerfaces 6 (1996) 191 e 199.
[81] S.A. Mitchell, N. Emmison, A.G. Shard,
Spatial control of cell attachment using plasma
micropatterned polymers, Surf. Interface Anal.
33 (2002) 742 e 747.
[82] G.J. Beumer, C.A. Van Blitterswijk, M. Ponec,
The use of gas plasma treatment to improve
the cell e substrate properties of a skin substi-
tute made of poly(ether)/poly(ester) copoly-
mers, J. Mater. Sci. Mater. Med. 5 (1994) 1 e 6.
[83] B.W. Callen, M.L. Ridge, S. Lahooti,
A.W. Neumann, R.N.S. Sodhi, Remote plasma
-isopropylacrylamide)
surface-grafted polystyrene dishes, in:
B.D. Ratner, D.G. Castner (Eds.), Surface
Modification of PolymericBiomaterials, first ed.,
Plenum Press, New York, 1996, pp. 175 e 181.
[94] S.-D. Lee, G.-H. Hsiue, P. Chang, C.-Y. Kao,
Plasma-induced grafted polymerization of
acrylic acid and subsequent grafting of
collagen onto polymer film as biomaterials,
Biomaterials 17 (1996) 1599 e 1608.
n
Search WWH ::




Custom Search