Biomedical Engineering Reference
In-Depth Information
132. Ward, B.C., and Webster, T.J. (2007). Increased functions of osteoblasts
on nanophase metals, Mater . Sci . Eng . C , 27 , pp. 575−578.
133. Webster, T.J., Siegel, R.W., and Bizios, R. (1999). Osteoblast adhesion on
nanophase ceramics, Biomaterials , 20 , pp. 1221−1227.
134. Webster, T.J., Siegel, R.W., and Bizios, R. (1999). Design and evaluation
of nanophase alumina for orthopedic/dental applications, Nanostruct .
Mater ., 12 , pp. 983−986.
135. Webster, T.J., Ergun, C., Doremus, R.H., Siegel, R.W., and Bizios, R.
(2000). Enhanced functions of osteoblasts on nanophase ceramics,
Biomaterials , 21 , pp. 1803-1810.
136. Webster, T.J., Ergun, C., Doremus, R.H., Siegel, R.W., and Bizios, R.
(2000). Speciic proteins mediate enhanced osteoblast adhesion on
nanophase ceramics, J . Biomed . Mater . Res ., 51 , pp. 475-483.
137. Webster, T.J., (2001). Nanophase ceramics: The future orthopedic
and dental implant material, in Advances in Chemical Engineering .
Nanostructured Materials , (ed. Ying, J.Y.), Academic Press, San Diego,
pp.125-166.
138. Webster, T.J., Siegel, R.W., and Bizios, R. (2001). Nanoceramic
surface roughness enhances osteoblast and osteoclast functions for
improved orthopaedic/dental implant eficacy, Scripta Mater ., 44 ,
pp. 1639-1642.
139. Webster, T.J., Schadler, L.S., Siegel, R.W., and Bizios, R. (2001).
Mechanisms of enhanced osteoblast adhesion on nanophase alumina
involve vitronectin , Tissue Eng ., 7 , pp. 291−301.
140. Webster, T.J., Ergun, C., Doremus, R.H., Siegel, R.W., and Bizios, R.
(2001). Enhanced osteoclast like cell functions on nanophase ceramics,
Biomaterials , 22 , pp. 1327-1333.
141. Webster, T.J. (2003). Nanophase ceramics as improved bone tissue
engineering materials, Am . Ceram . Soc . Bull ., 82 , pp. 23−28.
142. Webster, T.J., and Ejiofor, J.U. (2004). Increased osteoblast adhesion
on nanophase metals: Ti, Ti6Al4V, and CoCrMo, Biomaterials , 25 ,
pp. 4731−4739.
143. Webster, T.J., Hellenmeyer, E.L., and Price, R.L. (2005). Increased
osteoblast functions on theta+delta nanoiber alumina, Biomaterials ,
26 , pp. 953-960.
144. Webster, T.J. (2007). Nanotechnology for the improvement of all
implants, Mater . Sci . Forum , 539 - 543 , pp. 511−516.
145. Wennerberg, A., and Albrektsson, T. (2009). Effects of titanium surface
topography on bone integration: a systematic review, Clin . Oral
Implants Res ., 20 , pp. 172−184.
 
Search WWH ::




Custom Search