全部文献期刊学位论文会议报纸专利标准年鉴图书|学者科研项目
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作者:B. S. Schon , G. J. Hooper , T. B. F. Woodfield
来源:[J].Annals of Biomedical Engineering(IF 2.575), 2017, Vol.45 (1), pp.100-114Springer
摘要:Abstract(#br)This review describes the prospects of applying modular assembly techniques and strategies for fabrication of advanced tissue engineered cartilage constructs. Articular cartilage is a tissue that has important functions in preserving and enabling locomotion. However,...
作者:... S. Stroebel , G. J. Hooper , T. B. F. Woodfield
来源:[J].Cell and Tissue Research(IF 3.677), 2012, Vol.347 (3), pp.629-642Springer
摘要:Abstract(#br)Described here is a simple, high-throughput process to fabricate pellets with regular size and shape and the assembly of pre-cultured pellets in a controlled manner into specifically designed 3D plotted porous scaffolds. Culture of cartilage pellets is a well-establi...
作者:... M. P. Staiger , G. J. Dias , T. B. F. Woodfield
来源:[J].Journal of Biomedical Materials Research Part B: Applied Biomaterials(IF 2.308), 2012, Vol.100B (5), pp.1310-1318Wiley
摘要:Abstract(#br)The relationship between surface roughness and degradation behavior in magnesium (Mg) biomaterials is still a controversial issue. This study aims to clarify the relationship between surface roughness and corrosion rate of pure Mg. Pure Mg samples with surface r...
作者:T. B. F. Woodfield , W. J. A. Dhert ...
来源:[J].Journal of Tissue Engineering and Regenerative Medicine(IF 2.826), 2016, Vol.10 (4), pp.315-324Wiley
摘要:Abstract(#br)Articular cartilage has limited regenerative capabilities. Chondrocytes from different layers of cartilage have specific properties, and regenerative approaches using zonal chondrocytes may yield better replication of the architecture of native cartilage than wh...
作者:T. B. F. Woodfield , S. K. Bulstra ...
来源:[J].Journal of Tissue Engineering and Regenerative Medicine(IF 2.826), 2013, Vol.7 (9), pp.751-756Wiley
摘要:Abstract(#br)Cartilage has a poor regenerative capacity. Tissue‐engineering approaches using porous scaffolds seeded with chondrocytes may improve cartilage repair. The aim of this study was to examine the effect of pore size and pore interconnectivity on cartilage repair in...

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