The Biomaterials: Silver Jubilee Compendium (eBook, ePUB)
Redaktion: Williams, David F.
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The Biomaterials: Silver Jubilee Compendium (eBook, ePUB)
Redaktion: Williams, David F.
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The journal Biomaterials was launched in 1980. The subject of biomaterials science was then in its infancy, being largely cofined to the study of the characteristics of materials used for medical devices.
Twenty-five years on, we can truly say that biomaterials science has matured at an incredible rate and now represents a formidable sector that bridges the materials sciences, advanced medical therapies, and molecular and cell sciences.
This Silver Jubilee Compendium consists of reprinted versions of the top 25 papers, published during these 25 years, as judged by an international panel…mehr
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Twenty-five years on, we can truly say that biomaterials science has matured at an incredible rate and now represents a formidable sector that bridges the materials sciences, advanced medical therapies, and molecular and cell sciences.
This Silver Jubilee Compendium consists of reprinted versions of the top 25 papers, published during these 25 years, as judged by an international panel of biomaterials scientists.
This book is published as a landmark in biomaterials science and it is to be hoped that it will serve as a stimulus to young biomaterials scientists of the early twenty-first century for their pioneering work of the future.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
- Produktdetails
- Verlag: Elsevier Science & Techn.
- Seitenzahl: 256
- Erscheinungstermin: 28. Juli 2011
- Englisch
- ISBN-13: 9780080528069
- Artikelnr.: 38114504
- Verlag: Elsevier Science & Techn.
- Seitenzahl: 256
- Erscheinungstermin: 28. Juli 2011
- Englisch
- ISBN-13: 9780080528069
- Artikelnr.: 38114504
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
from bioerodible polymers (J. Heller)The response to the intramuscular
implantation of pure metals (A. McNamara and D.F. Williams)Osseointegrated
titanium fixtures in the treatment of edentulousness (P.I. Branemark, R.
Adell, T. Albrektsson, U. Lekholm, S. Lundkvist and B. Rockler)Biomaterial
biocompatibility and the macrophage (J.M. Anderson and K.M.
Miller)Systematic effects of biomaterials (J. Black)The in vitro response
of osteoblasts to bioactive glass (T. Matsuda and J.E. Davies)Activtion of
the complement system at the interface between blood and artificial
surfaces (M.D. Kazatchkine and M.P. Carreno)Dynamic and equilibrium
swelling behaviour of pH-sensitive hydrogels containing 2-hydroxyethyl
methacrylate (L. Brannon-Peppas and N.A. Peppas)Macroencapsulation of
dopamine-secreting cells by coextrusion with an organic polymer solution
(P. Aebischer, L. Wahlberg, P.A. Tresco and S.R. Winn)Interaction between
phospholipids and biocompatible polymers containing a phosphorylcholine
moiety )M. Kojima, K. Ishihara, A. Watanabe and N. Nakabayashi)Quantitative
assessment of the tissue response to implanted biomaterials (D.G. Vince,
J.A. Hunt and D.F. Williams)Immune response in biocompatibility (A. Remes
and D.F. Williams)Laminated three-dimensional biodegradable foams for use
in tissue engineering (A.G. Mikos, G. Sarakinos, S.M. Leite, J.P. Vacanti
and R. Langer)Late degradation tissue response to poly(L-lactide) bone
plates and screws (J.E. Bergsma, W.C. de Bruijn, F.R. Rozema, R.R. Bos and
G. Boering)Mechanism of cell detachment from temperature-modulated,
hydrophilic-hydrophobic polymer surfaces (T. Okano, N. Yamada, M. Okuhara,
H. Sakai and Y. Sakurai)Mechanisms of polymer degradation and erosion (A.
Gopferich)Stabilized polyglycolic acid fibre-based tubes for tissue
engineering (D.J. Mooney, C.L. Mazzoni, C. Breuer, K. McNamara, D. Hern,
J.P. Vacanti, et al)Poly(alpha-hydroxy acids): carriers for bone
morphogenetic proteins (J.O. Hollinger and K. Leong)Response of MG63
osteoblast-like cells to titanium and titaniun alloy is dependent on
surface roughness and composition (J. Lincks, B.D. Boyan, C.R. Blanchard,
C.H. Lohmann, Y. Liu, D.L. Cochran, et al)Patterning proteins and cells
using soft lithography (R.S. Kane, S. Takayama, E. Ostuni, D.E. Ingber and
G.M. Whitesides)Scaffolds in tissue engineering bone and cartilage (D.W.
Hutmacher)Topographical contol of human neutrophil motility on
micropatterned materials with various surface chemistry (J. Tan and W.M.
Saltzman)Photopolymerized hyaluronic acid-based hydrogels and
interpenetrating networks (Y.D. Park, N. Tirelli and J.A. Hubbell)Cell
sheert engineering for myocardial tissue reconstruction (T. Shimizu, M.
Yamato, A. Kikuchi and T. Okano)Biomaterial-associated thrombosis: roles of
coagulation factors, complement, platelets and leukocytes (M.B. Gorbet and
M.V. Sefton)Author Index
from bioerodible polymers (J. Heller)The response to the intramuscular
implantation of pure metals (A. McNamara and D.F. Williams)Osseointegrated
titanium fixtures in the treatment of edentulousness (P.I. Branemark, R.
Adell, T. Albrektsson, U. Lekholm, S. Lundkvist and B. Rockler)Biomaterial
biocompatibility and the macrophage (J.M. Anderson and K.M.
Miller)Systematic effects of biomaterials (J. Black)The in vitro response
of osteoblasts to bioactive glass (T. Matsuda and J.E. Davies)Activtion of
the complement system at the interface between blood and artificial
surfaces (M.D. Kazatchkine and M.P. Carreno)Dynamic and equilibrium
swelling behaviour of pH-sensitive hydrogels containing 2-hydroxyethyl
methacrylate (L. Brannon-Peppas and N.A. Peppas)Macroencapsulation of
dopamine-secreting cells by coextrusion with an organic polymer solution
(P. Aebischer, L. Wahlberg, P.A. Tresco and S.R. Winn)Interaction between
phospholipids and biocompatible polymers containing a phosphorylcholine
moiety )M. Kojima, K. Ishihara, A. Watanabe and N. Nakabayashi)Quantitative
assessment of the tissue response to implanted biomaterials (D.G. Vince,
J.A. Hunt and D.F. Williams)Immune response in biocompatibility (A. Remes
and D.F. Williams)Laminated three-dimensional biodegradable foams for use
in tissue engineering (A.G. Mikos, G. Sarakinos, S.M. Leite, J.P. Vacanti
and R. Langer)Late degradation tissue response to poly(L-lactide) bone
plates and screws (J.E. Bergsma, W.C. de Bruijn, F.R. Rozema, R.R. Bos and
G. Boering)Mechanism of cell detachment from temperature-modulated,
hydrophilic-hydrophobic polymer surfaces (T. Okano, N. Yamada, M. Okuhara,
H. Sakai and Y. Sakurai)Mechanisms of polymer degradation and erosion (A.
Gopferich)Stabilized polyglycolic acid fibre-based tubes for tissue
engineering (D.J. Mooney, C.L. Mazzoni, C. Breuer, K. McNamara, D. Hern,
J.P. Vacanti, et al)Poly(alpha-hydroxy acids): carriers for bone
morphogenetic proteins (J.O. Hollinger and K. Leong)Response of MG63
osteoblast-like cells to titanium and titaniun alloy is dependent on
surface roughness and composition (J. Lincks, B.D. Boyan, C.R. Blanchard,
C.H. Lohmann, Y. Liu, D.L. Cochran, et al)Patterning proteins and cells
using soft lithography (R.S. Kane, S. Takayama, E. Ostuni, D.E. Ingber and
G.M. Whitesides)Scaffolds in tissue engineering bone and cartilage (D.W.
Hutmacher)Topographical contol of human neutrophil motility on
micropatterned materials with various surface chemistry (J. Tan and W.M.
Saltzman)Photopolymerized hyaluronic acid-based hydrogels and
interpenetrating networks (Y.D. Park, N. Tirelli and J.A. Hubbell)Cell
sheert engineering for myocardial tissue reconstruction (T. Shimizu, M.
Yamato, A. Kikuchi and T. Okano)Biomaterial-associated thrombosis: roles of
coagulation factors, complement, platelets and leukocytes (M.B. Gorbet and
M.V. Sefton)Author Index