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The International Journal of Artificial Organs
|
January 16, 2007
Tribological characterization of surface-treated commercially pure titanium for femoral heads in total hip replacement: a feasibility study
G Cotogno, U Holzwarth, M Franchi, et al.
Der Orthopade
|
May 20, 2004
[Surface characterization of Al2O3-blasted titanium implants in total hip arthroplasty]
A Schuh, U Holzwarth, W Kachler, et al.
Zentralblatt Fur Chirurgie
|
November 8, 2006
[Allergic reaction to components of bone cement after total knee arthroplasty]
A Schuh, P Thomas, R Reinhold, et al.
Zentralblatt Fur Chirurgie
|
August 17, 2005
[The use of a thermomechanical cleaning procedure for removal of residual particles of corund blasted or glass bead peened implants in total hip arthoplasty]
A Schuh, W Uter, U Holzwarth, et al.
Zentralblatt Fur Chirurgie
|
December 31, 2005
[Residual particle free surfaces after shot peening in modular hip arthroplasty are feasible]
A Schuh, W Uter, U Holzwarth, et al.
Applied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine
|
January 1, 2013
Feasibility study of production of radioactive carbon black or carbon nanotubes in cyclotron facilities for nanobioscience applications
K Abbas, F Simonelli, U Holzwarth, et al.
Der Orthopade
|
February 12, 2005
[Allergic potential of titanium implants]
A Schuh, P Thomas, W Kachler, et al.
Biomaterials
|
March 30, 2004
Effect of surface finish on the osseointegration of laser-treated titanium alloy implants
H E Götz, M Müller, A Emmel, et al.
Biomedizinische Technik. Biomedical Engineering
|
January 25, 2006
[Residual particle free rough surfaces after rough blasting with steel grit in total hip arthroplasty]
A Schuh, W Uter, U Holzwarth, et al.
IEEE Transactions on Nanobioscience
|
April 27, 2011
Cyclotron production of radioactive CeO(2) nanoparticles and their application for in vitro uptake studies
Federica Simonelli, P Marmorato, K Abbas, et al.
Page
of 3
Search research articles
Search
Showing results (11-20 of 25) with videos related to
Sort By:
Page
of 3
The International Journal of Artificial Organs
|
January 16, 2007
Tribological characterization of surface-treated commercially pure titanium for femoral heads in total hip replacement: a feasibility study
G Cotogno, U Holzwarth, M Franchi, et al.
Der Orthopade
|
May 20, 2004
[Surface characterization of Al2O3-blasted titanium implants in total hip arthroplasty]
A Schuh, U Holzwarth, W Kachler, et al.
Zentralblatt Fur Chirurgie
|
November 8, 2006
[Allergic reaction to components of bone cement after total knee arthroplasty]
A Schuh, P Thomas, R Reinhold, et al.
Zentralblatt Fur Chirurgie
|
August 17, 2005
[The use of a thermomechanical cleaning procedure for removal of residual particles of corund blasted or glass bead peened implants in total hip arthoplasty]
A Schuh, W Uter, U Holzwarth, et al.
Zentralblatt Fur Chirurgie
|
December 31, 2005
[Residual particle free surfaces after shot peening in modular hip arthroplasty are feasible]
A Schuh, W Uter, U Holzwarth, et al.
Applied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine
|
January 1, 2013
Feasibility study of production of radioactive carbon black or carbon nanotubes in cyclotron facilities for nanobioscience applications
K Abbas, F Simonelli, U Holzwarth, et al.
Der Orthopade
|
February 12, 2005
[Allergic potential of titanium implants]
A Schuh, P Thomas, W Kachler, et al.
Biomaterials
|
March 30, 2004
Effect of surface finish on the osseointegration of laser-treated titanium alloy implants
H E Götz, M Müller, A Emmel, et al.
Biomedizinische Technik. Biomedical Engineering
|
January 25, 2006
[Residual particle free rough surfaces after rough blasting with steel grit in total hip arthroplasty]
A Schuh, W Uter, U Holzwarth, et al.
IEEE Transactions on Nanobioscience
|
April 27, 2011
Cyclotron production of radioactive CeO(2) nanoparticles and their application for in vitro uptake studies
Federica Simonelli, P Marmorato, K Abbas, et al.
Page
of 3