Dropwise gelation-dehydration kinetics during drop-on-demand printing of hydrogel-based materials
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G. Chiu | Kinam Park | J. Boley | B. Han | Gyu-young Yun | S. Kim | J. Hwang
[1] B. Han,et al. Microstructural parameter-based modeling for transport properties of collagen matrices. , 2015, Journal of biomechanical engineering.
[2] Jennifer S Wayne,et al. Application of a three-dimensional computational wrist model to proximal row carpectomy. , 2015, Journal of biomechanical engineering.
[3] F. Grinnell,et al. Preservation of tissue microstructure and functionality during freezing by modulation of cytoskeletal structure. , 2015, Journal of the mechanical behavior of biomedical materials.
[4] J. Weibel,et al. Influence of surface wettability on transport mechanisms governing water droplet evaporation. , 2014, Langmuir : the ACS journal of surfaces and colloids.
[5] Anthony Atala,et al. 3D bioprinting of tissues and organs , 2014, Nature Biotechnology.
[6] Ali Khademhosseini,et al. 3D biofabrication strategies for tissue engineering and regenerative medicine. , 2014, Annual review of biomedical engineering.
[7] Nicholas A Peppas,et al. Therapeutic applications of hydrogels in oral drug delivery , 2014, Expert opinion on drug delivery.
[8] Liliang Ouyang,et al. Three-dimensional printing of Hela cells for cervical tumor model in vitro , 2014, Biofabrication.
[9] Ian M. Hutchings,et al. Future, Opportunities and Challenges of Inkjet Technologies , 2013 .
[10] F. Zagrouba,et al. Modeling and Stress Analysis During Drying of a Deformable and Saturated Porous Medium , 2013 .
[11] Y. Sahai,et al. High Performance Polymer Hydrogel Based Materials for Fuel Cells , 2013 .
[12] A. Almansoori,et al. Energy Gas Storage in Porous Polymers , 2013 .
[13] Michiya Matsusaki,et al. Multilayered Blood Capillary Analogs in Biodegradable Hydrogels for In Vitro Drug Permeability Assays , 2013 .
[14] Gabriel Villar,et al. A Tissue-Like Printed Material , 2013, Science.
[15] Thomas Singer,et al. A long-term three dimensional liver co-culture system for improved prediction of clinically relevant drug-induced hepatotoxicity. , 2013, Toxicology and applied pharmacology.
[16] Kinam Kim,et al. DNA hydrogel-based supercapacitors operating in physiological fluids , 2013, Scientific Reports.
[17] Anthony Atala,et al. Evaluation of hydrogels for bio-printing applications. , 2013, Journal of biomedical materials research. Part A.
[18] A. Nguyen,et al. Increased evaporation kinetics of sessile droplets by using nanoparticles. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[19] J. R. Castrejón-Pita,et al. A novel method to produce small droplets from large nozzles. , 2012, The Review of scientific instruments.
[20] B. Han,et al. Nanoscale Fluid-Structure Interactions in Cytoplasm During Freezing , 2012 .
[21] K H Kang,et al. Rapid 3D printing of anatomically accurate and mechanically heterogeneous aortic valve hydrogel scaffolds , 2012, Biofabrication.
[22] J. Baek,et al. Numerical study on the effects of non-dimensional parameters on drop-on-demand droplet formation dynamics and printability range in the up-scaled model , 2012 .
[23] Jung Ho Je,et al. Coalescence preference depends on size inequality. , 2012, Physical review letters.
[24] Zhenan Bao,et al. Hierarchical nanostructured conducting polymer hydrogel with high electrochemical activity , 2012, Proceedings of the National Academy of Sciences.
[25] Richard J.M. Hague,et al. Jetting stability of molten caprolactam in an additive inkjet manufacturing process , 2012 .
[26] Ka Yaw Teo,et al. Effects of freezing-induced cell-fluid-matrix interactions on the cells and extracellular matrix of engineered tissues. , 2011, Biomaterials.
[27] I. Hutchings,et al. Experiments and Lagrangian simulations on the formation of droplets in drop-on-demand mode. , 2011, Physical review. E, Statistical, nonlinear, and soft matter physics.
[28] Glenn D Prestwich,et al. Bioprinting vessel-like constructs using hyaluronan hydrogels crosslinked with tetrahedral polyethylene glycol tetracrylates. , 2010, Biomaterials.
[29] B. Derby. Inkjet Printing of Functional and Structural Materials: Fluid Property Requirements, Feature Stability, and Resolution , 2010 .
[30] Karoly Jakab,et al. Tissue engineering by self-assembly and bio-printing of living cells , 2010, Biofabrication.
[31] L. Niklason,et al. Scaffold-free vascular tissue engineering using bioprinting. , 2009, Biomaterials.
[32] Robert F. Shepherd,et al. Direct‐Write Assembly of 3D Hydrogel Scaffolds for Guided Cell Growth , 2009 .
[33] Jung-Yeul Jung,et al. Evaporating characteristics of sessile droplet on hydrophobic and hydrophilic surfaces , 2009 .
[34] B. Han,et al. Freezing-induced fluid-matrix interaction in poroelastic material. , 2009, Journal of biomechanical engineering.
[35] V. Subramanian,et al. Inkjet-printed line morphologies and temperature control of the coffee ring effect. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[36] Wei Sun,et al. Biopolymer deposition for freeform fabrication of hydrogel tissue constructs , 2007 .
[37] B. Janković,et al. Application of model-fitting and model-free kinetics to the study of non-isothermal dehydration of equilibrium swollen poly (acrylic acid) hydrogel: Thermogravimetric analysis , 2007 .
[38] H. Yao,et al. Diffusivity of Ions in Agarose Gels and Intervertebral Disc: Effect of Porosity , 2004, Annals of Biomedical Engineering.
[39] D. Mooney,et al. Hydrogels for tissue engineering: scaffold design variables and applications. , 2003, Biomaterials.
[40] OU Ranj. Future , 2002, Discursive Constructions of the Suicidal Process.
[41] Jeffrey A. White,et al. Agarose-dextran gels as synthetic analogs of glomerular basement membrane: water permeability. , 2002, Biophysical journal.
[42] Alvin U. Chen,et al. A new method for significantly reducing drop radius without reducing nozzle radius in drop-on-demand drop production , 2002 .
[43] C. van Nostrum,et al. Novel crosslinking methods to design hydrogels. , 2002, Advanced drug delivery reviews.
[44] Kinam Park,et al. Environment-sensitive hydrogels for drug delivery , 2001 .
[45] Ian Turner,et al. A 3-D version of TransPore: a comprehensive heat and mass transfer computational model for simulating the drying of porous media , 1999 .
[46] T. Dupont,et al. Capillary flow as the cause of ring stains from dried liquid drops , 1997, Nature.
[47] William M. Deen,et al. Hydraulic permeability of agarose gels , 1996 .
[48] Glen McHale,et al. Evaporation of microdroplets and the wetting of solid-surfaces , 1995 .
[49] M. Shanahan,et al. Influence of Evaporation on Contact Angle , 1995 .
[50] J. Whitelaw,et al. Convective heat and mass transfer , 1966 .