articleTop 1% cited
3D printing of porous hydroxyapatite scaffolds intended for use in bone tissue engineering applications
Materials Science and Engineering C · 2014 · Vol. 47 · pp. 237–247
Sophie C. Cox✉(University of Warwick)John Thornby(University of Warwick)Gregory J. Gibbons(University of Warwick)Mark A. Williams(University of Warwick)Kajal K. Mallick(University of Warwick)
Bone Tissue Engineering MaterialsDental Implant Techniques and OutcomesAdditive Manufacturing and 3D Printing Technologies3D printingTissue engineeringPorosityMaterials scienceBiomedical engineeringEngineeringComposite material
MeSH terms
Bone and BonesMaterials TestingMicroscopy, Electron, ScanningPowdersPrintingPorosityDurapatiteCompressive StrengthTissue EngineeringTissue ScaffoldsPrinting, Three-Dimensional
Funding
- University of Warwick
Citations
441
FWCI
20.15
field-weighted impact
References
35
Percentile
100%
vs. same field & year
Citations per year
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References
Measurement of anisotropic compressive strength of rapid prototyping parts
Journal of Materials Processing Technology · 2007 · 454 citations
Novel approach to fabricate porous sponges of poly(d,l-lactic-co-glycolic acid) without the use of organic solvents
Biomaterials · 1996 · 1,073 citations
The mechanical behaviour of cancellous bone
Journal of Biomechanics · 1985 · 910 citations
NIH Image to ImageJ: 25 years of image analysis
Nature Methods · 2012 · 63,624 citations
Porous scaffold design for tissue engineering
Nature Materials · 2005 · 3,868 citations
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