Citation: W. Aughenbaugh et al., Silica sol-gel for the controlled release of antibiotics. II. The effect of synthesis parameters on the in vitro release kinetics of vancomycin, J BIOMED MR, 57(3), 2001, pp. 321-326
Citation: S. Radin et al., Silica sol-gel for the controlled release of antibiotics. I. Synthesis, characterization, and in vitro release, J BIOMED MR, 57(2), 2001, pp. 313-320
Citation: Hh. Lu et al., 45S5 Bioactive glass surface charge variations and the formation of a surface calcium phosphate layer in a solution containing fibronectin, J BIOMED MR, 54(3), 2001, pp. 454-461
Authors:
Radin, S
Ducheyne, P
Ayyaswamy, PS
Gao, H
Citation: S. Radin et al., Surface transformation of bioactive glass in bioreactors simulating microgravity conditions. Part I: Experimental study, BIOTECH BIO, 75(3), 2001, pp. 369-378
Authors:
Gao, H
Ayyaswamy, PS
Ducheyne, P
Radin, S
Citation: H. Gao et al., Surface transformation of bioactive glass in bioreactors simulating microgravity conditions. Part II: Numerical simulations, BIOTECH BIO, 75(3), 2001, pp. 379-385
Citation: Eabe. Kaufmann et al., Evaluation of osteoblast response to porous bioactive glass (45S5) substrates by RT-PCR analysis, TISSUE ENG, 6(1), 2000, pp. 19-28
Authors:
Shenhar, A
Gotman, I
Radin, S
Ducheyne, P
Citation: A. Shenhar et al., Microstructure and fretting behavior of hard TiN-based coatings on surgical titanium alloys, CERAM INT, 26(7), 2000, pp. 709-713
Authors:
Shenhar, A
Gotman, I
Radin, S
Ducheyne, P
Gutmanas, EY
Citation: A. Shenhar et al., Titanium nitride coatings on surgical titanium alloys produced by a powderimmersion reaction assisted coating method: residual stresses and frettingbehavior, SURF COAT, 126(2-3), 2000, pp. 210-218
Citation: Eabe. Kaufmann et al., Effect of varying physical properties of porous, surface modified bioactive glass 45S5 on osteoblast proliferation and maturation, J BIOMED MR, 52(4), 2000, pp. 783-796
Authors:
Kaufmann, EABE
Ducheyne, P
Radin, S
Bonnell, DA
Composto, R
Citation: Eabe. Kaufmann et al., Initial events at the bioactive glass surface in contact with protein-containing solutions, J BIOMED MR, 52(4), 2000, pp. 825-830
Authors:
Gan, JC
Ducheyne, P
Vresilovic, E
Shapiro, IM
Citation: Jc. Gan et al., Bioactive glass serves as a substrate for maintenance of phenotype of nucleus pulposus cells of the intervertebral disc, J BIOMED MR, 51(4), 2000, pp. 596-604
Citation: Hh. Lu et al., Temporal zeta potential variations of 45S5 bioactive glass immersed in an electrolyte solution, J BIOMED MR, 51(1), 2000, pp. 80-87
Authors:
Shenhar, A
Gotman, I
Gutmanas, EY
Ducheyne, P
Citation: A. Shenhar et al., Surface modification of titanium alloy orthopaedic implants via novel powder immersion reaction assisted coating nitriding method, MAT SCI E A, 268(1-2), 1999, pp. 40-46
Citation: A. El-ghannam et al., Effect of serum proteins on osteoblast adhesion to surface-modified bioactive glass and hydroxyapatite, J ORTHOP R, 17(3), 1999, pp. 340-345
Citation: P. Ducheyne et Q. Qiu, Bioactive ceramics: the effect of surface reactivity on bone formation andbone cell function, BIOMATERIAL, 20(23-24), 1999, pp. 2287-2303
Citation: Qq. Qiu et al., Fabrication, characterization and evaluation of bioceramic hollow microspheres used as microcarriers for 3-D bone tissue formation in rotating bioreactors, BIOMATERIAL, 20(11), 1999, pp. 989-1001