Porous microwells for geometry-selective, large-scale microparticle arrays
暂无分享,去创建一个
Daniel Irimia | Ki Wan Bong | Patrick S Doyle | D. Irimia | P. Doyle | K. W. Bong | Eduardo Reátegui | Jae Jung Kim | Eduardo Reátegui | J. J. Kim
[1] Rui Xu,et al. Optical trapping, driving, and arrangement of particles using a tapered fibre probe , 2012, Scientific Reports.
[2] Adam S. Zeiger,et al. Stop-flow lithography for the production of shape-evolving degradable microgel particles. , 2009, Journal of the American Chemical Society.
[3] Xiaogang Liu,et al. Upconversion multicolor fine-tuning: visible to near-infrared emission from lanthanide-doped NaYF4 nanoparticles. , 2008, Journal of the American Chemical Society.
[4] Patrick S Doyle,et al. Universal process-inert encoding architecture for polymer microparticles. , 2014, Nature materials.
[5] D R Walt,et al. Techview: molecular biology. Bead-based fiber-optic arrays. , 2000, Science.
[6] Elisabeth Wong,et al. MICROFLUIDIC PLATFORM FOR THE QUANTITATIVE ANALYSIS OF LEUKOCYTE MIGRATION SIGNATURES , 2014, Nature Communications.
[7] J. C. Love,et al. Screening individual hybridomas by microengraving to discover monoclonal antibodies , 2009, Nature Protocols.
[8] Timothy J. Mitchison,et al. Spatial control of actin polymerization during neutrophil chemotaxis , 1999, Nature Cell Biology.
[9] Amy E Herr,et al. Single-Cell Western Blotting. , 2015, Methods in molecular biology.
[10] George M. Whitesides,et al. Dynamic self-assembly of magnetized, millimetre-sized objects rotating at a liquid–air interface , 2000, Nature.
[11] A. Folch,et al. Large-scale single-cell trapping and imaging using microwell arrays. , 2005, Analytical chemistry.
[12] Patrick S Doyle,et al. High-throughput flow alignment of barcoded hydrogel microparticles. , 2009, Lab on a chip.
[13] Wook Park,et al. Guided and fluidic self-assembly of microstructures using railed microfluidic channels. , 2008, Nature materials.
[14] M. Sitti,et al. Untethered micro-robotic coding of three-dimensional material composition , 2014, Nature Communications.
[15] C. S. Lim,et al. Simultaneous phase and size control of upconversion nanocrystals through lanthanide doping , 2010, Nature.
[16] Geunbae Lim,et al. Ultra-high-aspect-orthogonal and tunable three dimensional polymeric nanochannel stack array for BioMEMS applications. , 2014, Nanoscale.
[17] Jeevan Meruga,et al. Red-green-blue printing using luminescence-upconversion inks , 2014 .
[18] Sangeeta N Bhatia,et al. Micromechanical control of cell–cell interactions , 2007, Proceedings of the National Academy of Sciences.
[19] David R. Walt,et al. Bead-based Fiber-Optic Arrays , 2000, Science.
[20] Lili Jiang,et al. Design of advanced porous graphene materials: from graphene nanomesh to 3D architectures. , 2014, Nanoscale.
[21] Y. Shaham,et al. New technologies for examining the role of neuronal ensembles in drug addiction and fear , 2013, Nature Reviews Neuroscience.
[22] Wong Cheng Lee,et al. Multivariate biophysical markers predictive of mesenchymal stromal cell multipotency , 2014, Proceedings of the National Academy of Sciences.
[23] T. Alan Hatton,et al. Modeling of Oxygen-Inhibited Free Radical Photopolymerization in a PDMS Microfluidic Device , 2008 .
[24] Fan Zhang,et al. Porous 3D graphene-based bulk materials with exceptional high surface area and excellent conductivity for supercapacitors , 2013, Scientific Reports.
[25] Samuel K Sia,et al. Assembly of complex cell microenvironments using geometrically docked hydrogel shapes , 2013, Proceedings of the National Academy of Sciences.
[26] Nak Won Choi,et al. Multiplexed detection of mRNA using porosity-tuned hydrogel microparticles. , 2012, Analytical chemistry.
[27] G. Whitesides,et al. Soft Lithography. , 1998, Angewandte Chemie.
[28] A. Luster,et al. Neutrophils cascading their way to inflammation. , 2011, Trends in immunology.
[29] P. Kubes,et al. The neutrophil in vascular inflammation , 2011, Nature Medicine.
[30] Cecile O. Mejean,et al. Cell stimulation with optically manipulated microsources , 2009, Nature Methods.
[31] P. Doyle,et al. Optimization of encoded hydrogel particles for nucleic acid quantification. , 2009, Analytical chemistry.
[32] U. Demirci,et al. Guided and magnetic self-assembly of tunable magnetoceptive gels , 2014, Nature Communications.
[33] D. Weitz,et al. Capillary micromechanics: Measuring the elasticity of microscopic soft objects , 2010, 1209.0032.
[34] T. A. Hatton,et al. Stop‐Flow Lithography of Colloidal, Glass, and Silicon Microcomponents , 2008 .
[35] M. Guo,et al. Micromechanics of Soft Particles , 2011 .
[36] David M. Rissin,et al. Single-Molecule enzyme-linked immunosorbent assay detects serum proteins at subfemtomolar concentrations , 2010, Nature Biotechnology.
[37] L. Ng,et al. Visualizing the neutrophil response to sterile tissue injury in mouse dermis reveals a three-phase cascade of events. , 2011, The Journal of investigative dermatology.
[38] B. Heit,et al. An intracellular signaling hierarchy determines direction of migration in opposing chemotactic gradients , 2002, The Journal of cell biology.
[39] Luke P. Lee,et al. Dynamic single cell culture array. , 2006, Lab on a chip.
[40] Francis Lin,et al. Neutrophil Migration in Opposing Chemoattractant Gradients Using Microfluidic Chemotaxis Devices , 2005, Annals of Biomedical Engineering.
[41] Wook Park,et al. Biomimetic Microfingerprints for Anti‐Counterfeiting Strategies , 2015, Advanced materials.
[42] J. Hoogenboom,et al. Patterning surfaces with colloidal particles using optical tweezers , 2002 .
[43] Steven R. Schmid,et al. Fundamentals of Machine Elements , 1999 .
[44] J. Gong,et al. Effect of substrate adhesion and hydrophobicity on hydrogel friction. , 2008, Soft matter.
[45] George M. Whitesides,et al. Quantifying distortions in soft lithography , 1998 .
[46] Patrick S. Doyle,et al. High‐Throughput Contact Flow Lithography , 2015, Advanced science.
[47] Jiyun Kim,et al. One-step pipetting and assembly of encoded chemical-laden microparticles for high-throughput multiplexed bioassays , 2014, Nature Communications.
[48] Sunghoon Kwon,et al. Three-dimensional fluidic self-assembly by axis translation of two-dimensionally fabricated microcomponents in railed microfluidics. , 2011, Small.
[49] J. Dahlberg,et al. Molecular biology. , 1977, Science.
[50] Jennifer E. Curtis,et al. Dynamic holographic optical tweezers , 2002 .
[51] G. Borisy,et al. Cell Migration: Integrating Signals from Front to Back , 2003, Science.
[52] Ming C. Wu,et al. Massively parallel manipulation of single cells and microparticles using optical images , 2005, Nature.
[53] Wook Park,et al. Lithographically Encoded Polymer Microtaggant Using High‐Capacity and Error‐Correctable QR Code for Anti‐Counterfeiting of Drugs , 2012, Advanced materials.
[54] Mehmet Toner,et al. Multifunctional Encoded Particles for High-Throughput Biomolecule Analysis , 2007, Science.
[55] R. Martínez-Sala,et al. Sound attenuation by sculpture , 1995, Nature.