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project: using inkjet printing technology to fabricate complex tissue scaffolds on which cells can be grown. The objective is to 'use inkjet printing to build 3-D structures that contain both the living cells and the scaffold materials: the ability to print skin and bone and, ultimately, whole
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A. Carisey, R. Tsang, A. M. Greiner, N. Nijenhuis, N. Heath, A. Nazgiewicz, R. Kemkemer, B. Derby, J. Spatz, and C. Ballestrem: ‘Vinculin
Regulates the Recruitment and Release of Core Focal Adhesion Proteins in a Force-Dependent Manner’, Current Biology, 23(4),
231:
Zhao, X.G., et al., Multi-Layer Phase
Analysis: Quantifying the Elastic Properties of Soft Tissues and Live Cells with Ultra-High-Frequency Scanning Acoustic Microscopy. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control. 59(4):
198:
I. M. Beshtawi, R. Akhtar, M. C. Hillarby, C. O'Donnell, X. Zhao, A. Brahma, F. Carley, B. Derby, and H. Radhakrishnan: ‘Scanning
Acoustic Microscopy for Mapping the Microelastic Properties of Human Corneal Tissue’, Current Eye Research, 38(4),
304:
Akhtar, R; Schwarzer, N; Sherratt, M J; Watson, R E B; Graham, H K; Trafford, A W; Mummery, P M and Derby, B; Nanoindentation of histological specimens: Mapping the elastic properties of soft tissues, J. Mater Res. (2009) 24,
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Akhtar, R; Sherrat, M J; Bierswich, N; Derbyb B; Mummery P M; Qatson R E B and
Schwarzer N, Nanoindentation of histological specimens using an extension of the Oliver and Pharr method. MRS Symp. Proc., (2008) 1097E,
357:
Anggono, Juliana; Derby, Brian: Mullite formation from the pyrolysis of aluminium-loaded polymethylsiloxanes: The influence of aluminium powder characteristics, Journal of the
European Ceramic Society (2006), 26(7),
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Derby, Brian: Correlations for single-crystal elastic constants of compound semiconductors and their representation in isomechanical groups, Physical Review B: Condensed Matter and
Materials Physics (2007), 76(5),
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Wu, H Z; Roberts, S G and Derby, B; Residual stress distributions around indentations and scratches in polycrystalline Al2O3 and Al2O3/SiC nanocomposites measured using fluorescence probes, Acta Mater. (2008) 56,
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Wu, H Z; Roberts, S G and Derby B; Residual stress distributions around indentations and scratches in polycrystalline Al2O3 and Al2O3/SiC nanocomposites measured using fluorescence probes, Acta Mater. (2008) 56,
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Smith, P. J.; Shin, D.-Y.; Stringer, J. E.; Derby, B.; Reis, N: Direct ink-jet printing and low temperature conversion of conductive silver patterns, Journal of
Materials Science (2006), 41(13), 4153–4158
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Ubal, S., et al., Continuous
Deposition of a Liquid Thread onto a Moving Substrate. Numerical Analysis and Comparison With Experiments. Journal of Fluids Engineering-Transactions of the Asme. 134(2)
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as a manufacturing tool. He has particular interest in developing methods of characterising materials and processes in conjunction with industry and research groups across the world.
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Reis, Nuno; Ainsley, Chris; Derby, Brian: Ink-jet delivery of particle suspensions by piezoelectric droplet ejectors, Journal of
Applied Physics (2005), 97(9), 094903/1-094903/6
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Wang, T.M., et al., Inkjet printed carbon nanotube networks: the influence of drop spacing and drying on electrical properties. Journal of
Physics D-Applied Physics. 45(31)
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Saunders, Rachel E.; Gough, Julie E.; Derby, Brian: Delivery of human fibroblast cells by piezoelectric drop-on-demand inkjet printing, Biomaterials (2007), 29(2), 193–203
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Derby, B; Inkjet printing of functional and structural materials – fluid property requirements, feature stability and resolution, Annu. Rev. Mater. Res. (2010) 40, 395–414
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Goodman, O. and B. Derby, The mechanical properties of float glass surfaces measured by nanoindentation and acoustic microscopy. Acta Materialia. 59(4): p. 1790–1799
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LeClere, D J; Thompson, G E and Derby B; Conical tungsten stamps for the replication of pore arrays in anodic aluminium oxide films, Nanotechnology (2009) 20, 245304
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Derby's research interests span a wide range with a focus on the processing, structure and mechanical properties in relation to ceramics, glasses, biomaterials,
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Chopra, K., et al., Gel-cast glass-ceramic tissue scaffolds of controlled architecture produced via stereolithography of moulds. Biofabrication. 4(4)
206:
A. M. Lewis, B. Derby, and I. A. Kinloch: ‘Influence of gas phase equilibria on the chemical vapour deposition of graphene’, ACS nano, 7(4), 3104–3117
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Dou, R., et al., Ink-Jet Printing of Zirconia: Coffee Staining and Line Stability. Journal of the American Ceramic Society. 94(11): p. 3787–3792
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Di Biase, M., et al., Photopolymerization of Pluronic F127 diacrylate: a colloid-templated polymerisation. Soft Matter. 7(10): p. 4928–4937
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Diu, R and Derby B; A universal scaling law for the strength of metal micropillars and nanowires, Scripta Materialia (2009) 61, 524–527 (2009)
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Graham, H.K., et al., Localised micro-mechanical stiffening in the ageing aorta. Mechanisms of Ageing and Development. 132(10): p. 459–467
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Di Biase, M., et al., Inkjet printing and cell seeding thermoreversible photocurable gel structures. Soft Matter. 7(6): p. 2639–2646
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Derby, B; Bioprinting: inkjet printing of proteins, cells and cell-containing hybrid structures, J. Mater. Chem. (2008) 18, 5717 – 5721
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Dou, R. and B. Derby, Deformation mechanisms in gold nanowires and nanoporous gold. Philosophical Magazine. 91(7–9): p. 1070–1083
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Wang, Tianming; Derby, Brian: Ink-jet printing and sintering of PZT, Journal of the American Ceramic Society (2005), 88(8), 2053–2058
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Wang, T; Patel, R and Derby, B; Manufacture of 3-dimensional objects by reactive inkjet printing, Soft Matter, (2008) 4, 2513–2518
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Stringer, J and Derby, B; The formation and stability of lines produced by inkjet printing”, Langmuir, (2010) 26, 10365-10372
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Derby, B., Inkjet printing ceramics: From drops to solid. Journal of the European Ceramic Society. 31(14): p. 2543–2550
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Stringer, J and Derby B; Limits to feature size and resolution in inkjet printing, J. Europ. Ceram. Soc. (2009) 29, 913–918
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Dou, R; Xu, B and Derby B; High strength nanoporous silver produced by inkjet printing, Scripta Mater. (2010) 63, 308–311
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Mironov Vladimir; Reis Nuno; Derby Brian: Review: bioprinting: a beginning, Tissue engineering (2006), 12(4), 631–4
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597:"Cambridge Journals Online – MRS Bulletin – Abstract – Inkjet Printing of Highly Loaded Particulate Suspensions"
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Akhtar, R., et al., Characterizing the elastic properties of tissues. Materials Today. 14(3): p. 96–105
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Dou, R and Derby B; Strain gradients and the strength of nanoporous gold, J. Mater. Res. (2010) 25, 746–753
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Dou, R. and B. Derby, Formation of Coffee Stains on Porous Surfaces. Langmuir. 28(12): p. 5331–5338
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Dou, Rui and Derby, Brian; The strength of gold nanowire forests, Scripta Materialia (2008) 59, 151–154
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Derby, B., Printing and Prototyping of Tissues and Scaffolds. Science. 338(6109): p. 921–926
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materials and implants. He has been at the forefront of research into the development of
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as a research fellow (1983–1998), became lecturer and reader in materials engineering at
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Derby was appointed professor in materials science at the Materials Science Centre of
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and later director of the Oxford Centre for Advanced Materials and Composites.
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as an ESA Fellow before spending two years in the Engineering Department of
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in 1999. He was elected a member of the World Academy of Ceramics in 2004.
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School of the Black and Red, by Andrew Underwood (1981); updated 2010
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Cook, C C; Wang, T and Derby B;, Chem. Commun. (2010) 46, 5452–5454
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Derby spent one year working at the Centre d'Etudes Nucleaire de
140:(1979) for best paper presented by a Graduate Student at the
417:"Prof Brian Derby research profile – personal details"
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Founding editorial board, Materials Science and Engineering
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Series editor, Engineering Materials and Processes,
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622:"Snow Science – Materials Science in Winter"
122:Medal for Original Thinking in 2007 for his
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439:"Brian Derby – Google Scholar Citations"
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172:Journal of the American Ceramic Society
57:Derby was born in 1957 and educated at
882:Professor Brian Derby at Research Gate
715:"Materials Science and Engineering: A"
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138:International Astronautical Federation
739:Chung, Deborah D. L. (3 April 2010).
136:Gold Medal (Graduate Student) of the
127:artificial organs is a possibility'.
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927:Alumni of Wolfson College, Cambridge
897:Official Website of the Derby Group
69:where he obtained his PhD in 1981.
932:Alumni of Jesus College, Cambridge
650:"Bioprinting has promising future"
153:Medal for Original Thinking (2007)
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892:Professor Brian Derby at WorldCat
685:"Brian Derby's CV – Derby Group"
527:"Brian Derby's CV – Derby Group"
65:in 1978. Derby then studied at
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849:"Publications – Derby Group"
22:(born 1957) is professor of
43:Medal for Original Thinking
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652:. University of Manchester
419:. University of Manchester
67:Wolfson College, Cambridge
63:Jesus College, Cambridge
45:in 2007 for his work on
124:Printing Skin and Bones
47:Printing Skin and Bones
144:Congress, Munich, 1979
626:Title to be Announced
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464:cardiacconference.org
102:Manchester University
59:Bedford Modern School
28:Manchester University
91:University of Oxford
83:Cambridge University
742:Composite Materials
859:on 28 January 2015
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Text is available under the Creative Commons Attribution-ShareAlike License. Additional terms may apply.