List of microfluidics research groups
From Wikipedia, the free encyclopedia
This list of microfluidics research groups gives a comprehensive overview of academic research organisations in the field of microfluidics, sorted geographically. Any sufficiently notable research group (which in general can be considered as any group having published in well regarded, high impact factor journals) should be listed here, along with a brief description of their research.
Contents |
[edit] North America
| Country | University / Institute | Group | Topic | |
|---|---|---|---|---|
| University of British Columbia | Hansen Group[1] | microfluidics, lab-on-chip, biomedical | ||
| University of British Columbia | DMF Group[2] | Digital (droplet-based) microfluidics, microfluidics, lab-on-chip, optofluidics | ||
| McMaster University | Centre for Advanced Micro-Electro-Fluidics[3] | microfluidics, lab-on-chip, BioMEMS, EnergyMEMS, biomedical | ||
| McGill University | David Juncker Nanobioengineering Group[4] | biomedical | ||
| University of Waterloo | Waterloo Microfluidics Lab - Carolyn Ren's Group[5] - Dongqing Li's group [6] |
microfluidics | ||
| University of Guelph | Bionanotechnology Laboratory- Suresh Neethirajan's group[7] | microfluidics, biofilms, lab-on-chip, Biomimetics, biosystems, bacterial chemotaxis | ||
| University of Manitoba | Immuno trafficking Lab- Francis Lin's group[8] | microfluidics, Immune cell trafficking, lab-on-chip, BioMEMS, biomedical | ||
| University of Toronto | Kumacheva Microfluidics Group[9] | microfluidics, polymer science, biological environments, gas/liquid | ||
| University of Toronto | Guenther Microfluidics Group[10] | microfluidics, On-chip Colloidal Synthesis, Biomedial | ||
| University of Toronto | Wheeler Lab-on-a-Chip Group[11] | droplet based (digital) | ||
| Simon Fraser University | Microinstrumentation Laboratory[12] | biomedical | ||
| University of Alberta | Prof. D.J. Harrison's Group[13] | proteomics, multiplexed systems | ||
| University of Alberta | Micro & Nano-Scale Transport Laboratory (MNTL) [14] | LOC, Bio-MEMS, Energy Application | ||
| University of Waterloo | Advanced Micro- / Nano- Devices Lab[15] | biomedical | ||
| University of Toronto | Sinton Lab[16] | biomedical micro/nano-fluidics, optofluidics, sustainable energy, micro fuel cells | ||
| Université de Sherbrooke | Microengineering Laboratory for MEMS (MICROS, Fréchette Group)[17] | Microscale thermo-fluidics, Power MEMS (microturbines, micro fuel cells), micro-cooling | ||
| University of Quebec | Zourob Lab,Biosensor,BioMEMS, Bioengineering Group[18] | biosensor,POC diagnostic devices,LOC | ||
| University of Texas at El Paso | XiuJun James Li Microfluidic Bioanalysis Group[19] | Microfluidics, lab-on-chip, Bioanalysis, Nanotechnology, Cellular analysis, Biomedical, Forensics. | ||
| Auburn University | J.W. Hong's Microfluidics Group[20] | Microfluidics, lab-on-chip, biomedical | ||
| University at Buffalo, The State University of New York | SMALL (Sensors and MicroActuators Learning Lab) - Kwang W. Oh's Group[21] | Droplet-based microfluidics, microfluidic-networks, combinatorial dilution | ||
| University of Southern California | Biomedical Microsystems Laboratory[22] | Biological Interfaces, Biomedical Devices, Microfluidics, Sensor Technology | ||
| The University of Virginia | Prof. James P. Landers, Bioanalytical microchip laboratory[23] | Integrated bioanalytical devices for clinical and forensic applications. Microfluidic separations, rapid non-contact PCR, acoustic cell handling, visual DNA detection, rapid device fabrication | ||
| Georgia Institute of Technology | Lu Microfluidics Laboratory[24] | BioMEMS, Microfluidics, Neuroscience, Cell biology, and Biotechnology | ||
| Georgia Institute of Technology | Complex Fluids Modeling and Simulation Group[25] | Microfluidic separation, Bio-inspired microfluidic design, Nanofluidics, Complex fluids, Mechanics of soft matter | ||
| Old Dominion University | Bio-Microfluidics Laboratory[26] | Microfluidics, Electrokinetic flows, Nanoscale transport | ||
| Princeton University | Complex Fluids Group[27] | Microfluidics, Thin fluid films, Hemodynamics, Biochemical analysis | ||
| Sandia National Laboratories | Laboratory of Biosystems Research and Development[28] | Bioanalytical, Biofuels, Biodefense and Microfluidics Diagnostics | ||
| Purdue University | Purdue University Microfluidics Laboratory[29] | MEMS, BioMEMS, Nanotechnology and Microfluidics Diagnostics | ||
| Indiana University, Bloomington | Jacobson Group[30] | Micro and nanofluidics | ||
| University of Florida | IMG: BioMEMS and Microfluidics Laboratory[31] | valves, detection, 2D electrophoresis, Lab-on-Chip integration | ||
| University of Maryland, College Park | Maryland MEMS & Microfluidics Lab[32] | BioMEMS & Bioanalytical Microfluidic Devices | ||
| University of Washington | Posner Research Group[33] | biochemical separations, sensors, biophysics, colloidal science, nanomotors, fuel cells | ||
| Brandeis University | Brandeis Microfluidics Fabrication Facility[34] | protein crystallography, two phase transition studies | ||
| Boston University | Department of Biomedical Engineering[35] | Fraunhofer Center for Manufacturing Innovation[36] | Biochemical assays, New generation PCR, Diagnostics | |
| California Institute of Technology | Jim Heath Lab[37] | BioMEMS, Microfluidics, etc. | ||
| California Institute of Technology | The Rustem Ismagilov Research Group[38] | plug based microfluidics, dynamics of complex chemistry and biology systems, diagnosis and assays | ||
| Columbia University | Biofluidic Micro Systems Laboratory[39] | BioMEMS, Microfluidics, etc. | ||
| Columbia University | Laboratory for Microscale Transport Phenomena[40] | microfluidics, micro drops and bubbles, optofluidics | ||
| Columbia University | Molecular and Microscale Bioengineering Lab[41] | Microfluidics, Point of Care Diagnostics, Tissue Engineering | ||
| Washington State University Vancouver | Xu's Micro/Nanofluidics Group[42] | micro/nanofluidics, Lab on a Chip | ||
| Cornell University | Bioanalytical Microsystems & Biosensors Lab[43] | biosensors | ||
| Cornell University | Craighead Research Group[44] | analytical devices, micromachining | ||
| Cornell University | Erickson Research Group[45] | Optofluidics, nanofluidic sensors, autonomous microfluific systems | ||
| Cornell University | Kirby Research Group[46] | micro/nanofluidic transport, Lab-on-a-Chip, BioMEMS, cellular analysis, interfacial science | ||
| Great Lakes WATER Institute | Biological Sciences[47] | microfluidics, lab-on-a-chip | ||
| Lehigh University | Laboratory for Particle Mixing and Self-Organization (Gilchrist Laboratory)[48] | micro/nanoscale transport and assembly, suspensions, chaotic mixing, segregation, rheology, convective deposition, dielectrophoresis | ||
| Michigan Technological University | Medical Micro-device Engineering Research Lab, Minerick Lab[49] | electrokinetics, Lab-on-a-Chip, dielectrophoresis, pH gradients, electrocatalysis | ||
| North Carolina State University | Orlin Velev Research Group[50] | Janus particles, biosensors | ||
| Rice University | McDevitt Lab[51] | analysis of complex fluids | ||
| Stanford University | Stanford Microfluidics Laboratory[52] | detection, separation, preconcentration, electroosmotic pumps, fuel cells | ||
| Stanford University | Stephen Quake's Group[53] | Microfluidic Large Scale Integration | ||
| University of Illinois Urbana-Champaign | Kenis Research Group[54] | Microfluidics, Microreactors, Fuel Cells | ||
| University of Illinois Urbana-Champaign | Martha Gillette Research Lab[55] | NeuroEngineering: Microfluidics applied to neuronal development and emergent behaviors of cell clusters | ||
| University of Cincinnati | MicroSystems and BioMEMS Lab[56] | clinical diagnosis | ||
| The Scripps Research Institute | Paegel Group[57] | compartmentalized evolution, rational GUV synthesis | ||
| Texas Tech University | Vanapalli Research Group[58] | lab-on-chip, biological and chemical applications | ||
| University of California, Berkeley | Mathies Research Group[59] | DNA sequencing | ||
| University of California, Berkeley | Luke Lee BioPOETS Group[60] | soft lithography, plasmonics | ||
| University of California, Berkeley | Amy Herr Group [61] | capillary electrophoresis | ||
| University of California Berkeley | Lydia Sohn Group[62] | Label-free cytometry, Resistive-pulse sensing, Point-of-care diagnostics, Rare cell isolation and analysis | ||
| University of California, Irvine | Abraham P. Lee BioMiNT Group [63] | Digital/Droplet microfluidics, microfluidic pumps, sensors | ||
| University of California, Irvine | Marc Madou BioMEMs Group [64] | Centrifugal Fluidics, Dielectrophoresis, Micromixing, Electroactive polymers, Biosensors, Electrochemistry | ||
| Stony Brook University | Microfluidics and Interfacial Fluid Dynamics Laboratory [65] | Interfacial Fluid Dynamics - micro-fabrication techniques, small-scale transport processes, multiphase flows, wetting dynamics, miscible flows, instabilities, and the rheology of complex fluids | ||
| University of California, Los Angeles | Di Carlo Microfluidic Research Group [66] | Inertial microfluidics | ||
| University of California, Santa Barbara | Squires Research Group [67] | nonlinear electrokinetics, microrheology | ||
| University of Arizona | Biosensors Lab[68] | biosensors and diagnostics | ||
| Penn State | The Penn State BioNEMS Group[69] | science of microfluidics (physics) | ||
| Massachusetts Institute of Technology | Sangeeta Bhatia Group [70] | Applications of micro- and nanotechnology to tissue repair and regeneration | ||
| Massachusetts Institute of Technology | Jose Gomez-Marquez Group [71] | Medical technology for the developing world | ||
| Massachusetts Institute of Technology | Jongyoon Han Group [72] | Micro/nanofluidics, nanofluidic biomolecule separation and detection and nanostructure-biomolecule interactions | ||
| Massachusetts Institute of Technology | Hatsopoulos Microfluids Laboratory [73] | dynamics of fluids with microstructure, microfluidics, complex fluids, non-Newtonian fluid mechanics | ||
| Massachusetts Institute of Technology | Klavs Jensen Group [74] | Micro- and nano-structured materials and devices for chemical, biological, optical, electronic and energy applications | ||
| Massachusetts Institute of Technology | Ali Khademhosseini Group [75] | Microscale and nanoscale technologies with the ultimate goal of generating tissue-engineered organs and controlling cell behavior | ||
| Massachusetts Institute of Technology | Scott Manalis Group [76] | Quantitative and real-time techniques for biomolecular detection and single cell analysis | ||
| Massachusetts Institute of Technology | Joel Voldman Group [77] | Microfluidics applied to fundamental and applied problems in cell biology, with a focus on cell sorting and stem cell biology | ||
| Massachusetts Institute of Technology | Mehmet Fatih Yanik Group [78] | Development and applications of high-throughput technologies for probing and engineering neural processes | ||
| Harvard University | The David A. Weitz Research Group[79] | colloid physics, capillary microfluidics, soft lithography, encapsulation & delivery, biology in microfluidics | ||
| Harvard University | The George M. Whitesides Research Group[80] | soft lithography, organic chemistry | ||
| Stanford University | The Quake Research Group[81] | valves, multiplexing | ||
| UCLA | UCLA Microsystems Laboratories[82] | valves, detection | ||
| University of Michigan | Burns Research Group[83] | microreaction systems, microseparations, chemical and biochemical analysis | ||
| University of South Florida | BioMEMS and Microsystems Research Group[84] | valves, detection | ||
| University of Washington | Daniel Chiu Group[85] | Chemistry of neurobiology | ||
| University of Utah | Utah Center of Excellence for Biomedical Microfluidics[86] | BioMEMS, Field flow fractionation | ||
| University of Washington | Albert Folch Group[87] | Neuro-MEMS | ||
| University of Washington | Paul Yager Group[88] | point-of-care diagnostics | ||
| Northeastern University | Shashi Murthy Group[89] | Lab on a Chip diagnostics, cell isolation for regenerative medicine | ||
| Northwestern University | Sandip Ghosal Group[90] | mathematical modeling of microfluidic flows and transport processes | ||
| Vanderbilt University | John Wikswo Group[91] | molecular signaling, cellular motility, angiogenesis, and metastasis | ||
| Virginia Tech | Chang Lu group [92] | Electroporation, single cell analysis, gene delivery, epigenetics | ||
| Rutgers University | Jeffrey Zahn Group[93] | Microfluidic biosensors, cell separation devices, DNA purification, microcatheters | ||
| Rutgers University | Martin Yarmush Group[94] | Living cell arrays, Brain-on-a-chip, Allergy-on-a Chip, Cell separation; Microdevices for single cell analysis | ||
| Clemson University | Xuan Group[95] | Microfluidic and nanofluidic transport phenomena, electrokinetic particle manipulations | ||
| University of Washington, Seattle | Soft Matter and Microfluidics Research Laboratory[96] | Microfluidics, Biosensors, Soft Matter | ||
| Louisiana Tech University | Niel Crews Group[97] | Real-time microfluidic PCR, DNA damage detection, Rapid prototyping, Biosensing, BioMEMS based differential scanning calorimetry, Portable PCR devices | ||
| Tennessee Tech | Lapizco-Encinas Group / Microscale Bioseparation Laboratory |
Microscale electrokinetics and microfluidics. |
[edit] Latin America
| Country | University / Institute | Group | Topic |
|---|---|---|---|
| Buenos Aires Institute of Technology | Micro and Nanomechanics Lab[99] | microfluidics, microresonators, microactuators, microsensors | |
| Brazilian Synchrotron Light Laboratory (LNLS) | Microfabrication Laboratory[100] | Microfluidic application in chemistry, physic and engineering areas. Soft Lithography, plasma. | |
| Institute of Chemistry - State University of Campinas (UNICAMP)[101] | Group of Electrophoresis and Microsystems (GEM)[102] | Instrumentation and Method Development for Capillary and Microchip Electrophoresis. |
[edit] Europe
| Country | University / Institute | Group | Topic |
|---|---|---|---|
| Austrian Institute of Technology | Health and Environment - Nano Systems[103] | lab-on-a-chip, sensors | |
| Vienna University of Technology | Institute of Sensor and Actuator Systems (ISAS)[104] | microfluidics, optofluidics, physical chemosensors, on-chip electrophoresis, fluid mixing, single-cell analysis | |
| Ghent University | Research Group SynBioC[105] | amino acids | |
| Ecole Polytechnique Federale de Lausanne | Microsystems Laboratory[106] | cell chips, medical diagnostics, bioelectronics | |
| Ecole Polytechnique Federale de Lausanne | Optics Laboratory[107] | Optofluidics, biophotonics, nonlinear optics | |
| Swiss Federal Institute of Technology | Bioanalytics Group[108] | Biomimetic Structures, Cell Analysis, Synthesis, Single Molecule Spectroscopy | |
| Swiss Federal Institute of Technology | Bioengineering Laboratory[109] | Integrated bio- and chemosensors, high-density multi-electrode arrays, cell handling and analysis | |
| Technical University of Denmark | Department of Micro and Nanotechnology[110] | medical diagnostics, biosensors | |
| Helsinki University of Technology | Department of Micro and Nanosciences[111] | Microfludics for chemical analysis, device fabrication | |
| University of Helsinki | Division of Pharmaceutical Chemistry[112] | Microfludics for chemical analysis | |
| VTT Technical Research Centre of Finland | Multiple groups[113] | Lab-on-chip, biosensors, cell manipulation, device fabrication
- |
|
| Ecole Normale Superieure, PARIS | Microfluidics, Chemical organization, and Nanotechnology[40] [114] | Microfluidics for cell and systems biology, neuron chips, biomimetism, artificial cells | |
| ESPCI, PARIS | Microfluidic MEMS et Nanostructures Laboratory [115] | Droplet and Nano-droplets, Chemical reactions, Cells | |
| University of Bordeaux | Microfluidics Laboratory [116] | Droplet microfluidics | |
| Ecole Polytechnique | Laboratoire d'Hydrodynamique (LADHYX) [117] | Droplet microfluidics | |
| University of Lille, CNRS, IEMN, ISEN | BioMEMS Group [118] | Electrowetting, Digital and continuous-flow microfluidics, Lab-on-chip, Dielectrophoresis, Electrokinetics, Impedancemetry, Biosensors, Nanoparticles for cell tracking, Flexible substrates | |
| Curie Institute, CNRS, | Laboratory of Macromolecules and Microsystems in Biology and MedicineMMBM-JL Viovy | Lab-on-chip, biophysics, molecular interactions, molecular transport, Nanoparticles, single molecule, single cell, bioanalytical microfluidics, | |
| LPN, CNRS, | Microfluidics for chemistry and biology | separation of biomolecules, nanofluidics, dynamics of reaction networks, nanoimprint, | |
| Experimental Physics I, Medical department University of Leipzig | Fütterer Group[119] | Microfluidics for Cells and tissues, high throughput screening, ultraprecise flow control, perfusion systems | |
| European Molecular Biology Laboratory, Heidelberg | Genome Biology[120] | Microfluidic systems for large-scale screens in biology and chemistry | |
| Chair for Experimental Physics I, University of Augsburg | Wixforth Group[121] | SAW (surface acoustic wave) driven microfluidics, deformable objects in complex flow, Lab on a Chip, droplet microfluidics, membrane physics, biophysics | |
| TU Darmstadt | Institute of Nano- and Microfluidics[122] | Biomolecule separation, electrokinetics, heat and mass transfer, lab-on-a-chip technology, liquid/liquid interfaces, micro- and nanoscale energy conversion, optofluidics | |
| Ilmenau University of Technology | Köhler Group [123] | Microfluidic Segments, Nanoparticles in Microreactors, Optical pH sensing | |
| Max Planck Institute for Dynamics and Self-organization | Droplets, Membranes & Interfaces [124] | Droplet microfluidics, Emulsions, Membranes & interfaces Physical-chemistry. | |
| Max Planck Institute for Dynamics and Self-organization | Microfludics Research Group[125] | Droplet microfluidics | |
| Saarland University | Experimental Physics[126] | Microreactors, droplet microfluidics, complex reactions | |
| IMM | Institut für Mikrotechnik Mainz GmbH [127] | Lab on a chip, micro system technology, microstructures, analytics (biological, chemical), diagnostics, energy technology, fluidic simulations | |
| Fraunhofer ENAS | Dept. Multi Device Integration (MDI) [128] | Lab on a chip, micro system technology, microstructures, integrated microfluidic low-cost actuation, fully integrated microfluidic cartridges for in-vitro diagnostics | |
| Universität der Bundeswehr München | Institute for Fluid Dynamics and Aerodynamics, Microgroup www.unibw.de/lrt7 | optical techniques (µPIV, µPTV, 3d3c techniques[129]), astigmatism-µPTV[130] | |
| ISAS: Institute for Analytical Sciences[131] | separation, plasma, cells | ||
| KIST Europe | Korea Institute of Science and Technology Forschungsgesellschaft mbH, Saarbrücken[132] | soft matter, clinical diagnostics, cell biology applications | |
| University of Bielefeld | Biophysics and Applied Nanoscience group[133] | Migration and dynamics of biomolecules in µF devices | |
| Hahn-Schickard-Gesellschaft | Institute for Micromachining and Information Technology[134] | Lab on a Chip, micro dosage systems, micro medical technology, Fluidic Simulations | |
| University of Freiburg - IMTEK | Laboratory for MEMS Applications[135] | Lab on a Chip, Tools for Cells, nL & pL Dispensing, Fluidic Simulations | |
| University of Leipzig | Belder Research Group[136] | analytical chemistry | |
| Institute of Photonic Technology - IPHT | Microfluidics Department [137] | Lab on a Chip devices and prototyping, optical readout of information, droplet-based microfluidics, on-Chip PCR, multiphase flow diagnostics and simulation | |
| Fraunhofer Institut of Chemical Technology - ICT | Group of Microreaction Technology [138] | Microreaction Technology, Micro Process Engineering, Microfluidics | |
| University of Limerick | Stokes Institute [139] | Microflow cytometry, MicroPIV, Cytotoxicity, Cell sorting, Laeukemia analysis, PCR | |
| University of Bologna | DIENCA[140] | Heat transfer, MicroPIV | |
| University of Perugia | Laboratory of Biomaterials & Bioencapsulation[141] | Biomaterials, Bioencapsulation, Cell entrapment, Drug delivery | |
| Leiden University | Analytical BioSciences [142] | Lab on a chip, Micro & Nano approaches for analytical challenges | |
| Delft University of Technology | Kavli Institute of Nanoscience - Bionanoscience - KeymerLab [143] | evolution-on-a-chip, bacterial synthetic ecosystems, biophysics, evolutionary biology, adapting bacteria in nanostructures | |
| Delft University of Technology | Laboratory for Aero & Hydrodynamics [144] | lab-on-a-chip, BioMEMS, MicroPIV, NanoPIV | |
| TNO | TNO Science and Industry[145] | Industrial applications: lab-on-a-chip, (bio)analytics, microreactors, micro process technology, printing, encapsulation | |
| University of Twente | MCS: Mesoscale Chemical Systems[146] | microreactors, chemical kinetics, analytical chemistry | |
| University of Twente | PCF: Physics of Complex Fluids[147] | (electro)wetting, confined liquids, microrheology | |
| University of Twente | BIOS: The Lab-on-a-Chip Group[148] | biosensors, cells on chips | |
| University of Twente | POF: The Physics of Fluids group[149] | bubble dynamics, inkjet printing | |
| Norwegian University of Science and Technology | Microfluidics research group[150] | lab-on-a-chip | |
| Polish Academy of Sciences | Institute of Physical Chemistry, Garstecki Lab of Microfluidics and Complex Fluids[151] | dropplet microfluidics, lab on chip, microfluidic emulsification and micro-foams | |
| Warsaw University of Technology | Chemical Sensor Research Group[152] | chemical sensors, microfluidics, medical diagnostics, cell engineering and testing | |
| Chalmers University of Technology | Orwar research group[153] | Freestanding microfluidic platforms, for single cell stimuli delivery | |
| LTH | Nanobiotechnology and Lab-on-a-Chip Group[154] | Device fabrication and proteomics | |
| KTH | Microsystem Technology Group[155] | components, drug delivery | |
| Linköping University | Transport and separations group[156] | Electroosmotic pumps, separations, guidance of fluids in microfluidic systems | |
| Uppsala University | Division of Micro Systems Technology[157] | Device fabrication, lab-on-a-chip, microfluidic valves and pumps, microfluidic hydraulics, microdialysis of proteins and peptides | |
| METU-NCC | Microfluidics & Lab-on-a-chip Research Group[158] | Microfluidics, lab-on-a-chip for biomedical applications | |
| Brunel University | DOCLab, Centre for Electronic Systems Research[159] | Lab-on-a-chip, molecular diagnostics | |
| MRC Laboratory of Molecular Biology | Dear group[160] | Single-molecule sequencing, single-molecule PCR, microscale immunoassays | |
| University of Ulster | Nanotechnology and Integrated Bioengineering Centre[161] | Bionanotechnology, Point of Care, Tissues Engineering, Micro-plasma Technology, Medical Devices, Electronics, Photonics, Nanotechnology, Sensors, MEMS, Optical and Environmental devices | |
| University of Southampton | The Nano Research Group[162] | Bionanotechnology, Micro-analytical devices, Nanofluidics, AC Electrokinetics: Cell and particle manipulation methods, AC Electrokinetics: Fluid interactions, Optical biosensing, Modelling and theoretical work | |
| University of Manchester | Miniaturization Research Group[163][164] | Device Fabrication, Analysis, Microfluidics, Nano-droplets, Biosensors, Separation Science | |
| University of Glasgow | Bioelectronics Group[165] | Microfluidics, nanofabrication, plasmonics, CFD, Biosensors, Laser tweezing, Surface enhanced Raman spectroscopy | |
| University of Hertfordshire | Microfluidics and Microengineering Group[166] | mixing, CFD, components | |
| University College London | Microfluidics Group[167] | Development of novel computational and experimental methods for design of microfluidic devices such as micromixers and micropumps | |
| University College London | Microfluidics Group[168] | Microfluidics research focusing on microscale bioprocessing for applications such as drug discovery, cell therapy, mammalian cell culture and enzymatic bioconversion | |
| Bangor University, Wales | Microfluidics Group[169] | Deployment of nanoscale photonic measurement techniques and expertise in microsystem design and fabrication | |
| Imperial College London | deMello Group[170] | Droplet microfluidics, Bionanotechnology, Micro-analytical devices, Nanoparticle synthesis, Nanofluidics, Diagnostics, Ultra sensitive optical sensing | |
| University of Porto | Transport Phenomena Research Center [171] | Flow instabilities, enhanced mixing systems, optimization of micro-devices, micron-sized extensional rheometer, CFD | |
| University of Oviedo | Immunoelectroanalysis Group[172] | Development of applications with microfluidic devices |
[edit] Asia and Australia
| Country | University / Institute | Group | Topic | |
|---|---|---|---|---|
| KAIST | NanoBiotech Laboratory (Je-Kyun Park Group)[173] | Optoelectrofluidics, Hydrophoresis, Magnetophoresis, Cell-based assay system | ||
| National Taiwan University | BEAM Lab (Jing-Tang Yang Group)[174] | Microfluidics, Lab on a Chip, Biomedical applications | ||
| Dalian Institute of Chemical Physics, Chinese Academy of Science | Jianhua Qin Group[175] | Lab on a Chip, Biomedical applications | ||
| Zhejiang University | Institute of Microanalytical Systems[176] | Design and fabrication of microchips on different substrates, World-to-chip interfacing-On-chip sample introduction and pretreatment, High resolution separation of bio samples in microfluidic systems; Detection systems in microfluidics; Microsensors | ||
| Huazhong University of Science and Technology | Bifeng Liu Group[177] | Digital/Droplet microfluidics, capillary electrophoresis, Quantitative and real-time techniques for biomolecular detection and single cell analysis, Development and applications of high-throughput technologies for probing and engineering neural processes | ||
| Peking University | YanYi Huang Lab[178] | Microfluidic applications in bioengineering, analytical chemistry, and chemical biology; Nanophotonics; Integrated optics and biophotonics | ||
| University of Hong Kong | Microfluidics and Soft Matter Group - Anderson Shum[179] | Droplet microfluidics; Water-based microfluidics; Emulsion-templated materials; Microfluidic applications in biomedical engineering | ||
| Indian Institute of Technology Kharagpur | Microfluidics Laboratory [180] | Microfluidic applications | ||
| Indian Institute of Technology Roorkee | R.P Bharti Research Group [181] | Electrokinetics, Biofluidics | ||
| Sharif University of Technology | Biofluid Group[182] | Biofluid Dynamics, Microfluidics, Bioreactors | ||
| K. N. Toosi University of Technology | Electronic Materials Laboratory[183] | Microfluidics, analytical devices, sensor technology | ||
| University of Tokyo | Kitamori Lab[184] | organic chemistry, integrated chemistry on a chip | ||
| Nagoya University | Baba Lab | Lab on a chip | ||
| Seoul National University | BINEL (Biophtonics and Nanoengineering Lab[185] | Railed Microfluidics, Optofluidics, BioMems, Optics | ||
| RMIT University | Micro/Nano Research Laboratory[186] | SAW microfluidics, biomicrofluidics, stem cell scaffolds, drug delivery, microsurgery and micromotors | ||
| RMIT University | Micro/Nano Electronics and Sensors Group[187] | Biomicrofluidics, Sensors, Optofluidics, electrowetting | ||
| Nanyang Technological University | Micro/Nanofluidics Research Lab[188] | microfluidics, nanofluidics, droplet-based microfluidics, lab on a chip | ||
| Gadjah Mada University | Microfluidics Laboratory (Dr. Gea O.F. Parikesit)[189] | micro-/nano-fluidics, capillarity-driven flows, electrokinetics, textile-based microsystems | ||
| University of Auckland | UoA Microfabrication laboratory[190] | Microfluidics, Metabolomics, Gene sensors, lab on a chip | ||
| University of Auckland | The BioMEMS Research Group/Wlodkowic Lab[191] | BioMEMS, Biomicrofluidics, Lab-on-a-chip, uTAS, cytometry, cytOmics, small model organisms |
[edit] References
- ^ Center for High-Throughput Biology
- ^ Okanagan Digital Microfluidic Laboratory
- ^ Centre for Advanced Micro-Electro-Fluidics
- ^ David Juncker Micro and Nano Bioengineering Group
- ^ Carolyn Ren's Group
- ^ Dongqing Li's group
- ^ Suresh's Bionano Lab group
- ^ Lin lab Immuno trafficking group
- ^ Eugenia Kumacheva's Group
- ^ Axel Guenther's Group
- ^ Wheeler Lab-on-a-Chip Group
- ^ Microinstrumentation Laboratory
- ^ Prof. D.J. Harisson's Group
- ^ Prof. Sushanta K. Mitra
- ^ Advanced Micro- / Nano- Devices Lab
- ^ UofT Fluidics & Energy Group
- ^ Microengineering Laboratory for MEMS (MICROS)
- ^ [1]
- ^ Dr. XiuJun James Li Microfluidic Bioanalysis group
- ^ J.W. Hong's SNEL Group
- ^ SMALL (Sensors and MicroActuators Learning Lab) - Kwang W. Oh's Group @SUNY-Buffalo
- ^ Dr. Ellis Meng's Group
- ^ The Landers Group @ UVA
- ^ Dr. Hang Lu Group
- ^ Dr. Alexeev Group
- ^ Dr. Ali Beskok's Group
- ^ Dr. Stone Group
- ^ Anup K. Singh Group
- ^ Don DeVoe Group
- ^ Jacobson Group
- ^ IMG, BioMEMS and Microfluidics Laboratory
- ^ Don DeVoe Group
- ^ posner.uw.edu
- ^ [2]
- ^ [3]
- ^ [4]
- ^ [5]
- ^ The laboratory of Rustem Ismagilov
- ^ Qiao Lin's Lab
- ^ Daniel Attinger's Lab
- ^ Samuel Sia's Lab
- ^ Xu Microfluidics Lab
- ^ Bioanalytical Microsystems & Biosensors Lab
- ^ Craighead Research Group
- ^ [6]
- ^ Kirby Research Group
- ^ [7]
- ^ Laboratory for Particle Mixing and Self-Organization
- ^ [8]
- ^ Orlin Velev's web page ( Orlin D. Velev )
- ^ Lab-on-a-Chip Diagnostics
- ^ Stanford Microfluidics Laboratory
- ^ Stephen Quake's Group
- ^ Paul Kenis' Research Group
- ^ [9]
- ^ MicroSystems and BioMEMS Lab
- ^ (The Scripps Research Institute Florida)
- ^ Vanapalli Lab
- ^ Mathies Research Group
- ^ Luke Lee BioPOETS Group
- ^ Amy Herr Group
- ^ [http://www.me.berkeley.edu/srl/
- ^ BioMiNT Group
- ^ BioMEMs Group
- ^ Cubaud Research Group
- ^ Di Carlo Microfluidic Research Group
- ^ Squires Research Group
- ^ Biosensors Lab
- ^ The Penn State BioNEMS Group
- ^ Laboratory for Multiscale Regenerative Technologies
- ^ Innovations in International Health
- ^ Microfluidic/Nanofluidic Research Group
- ^ Hatsopoulos Microfluids Laboratory
- ^ Klavs F. Jensen Lab
- ^ Khademhosseini
- ^ Manalis Laboratory
- ^ Biological Microtechnology and BioMEMS Group
- ^ High Throughput Neurotechnology Group
- ^ Experimental Soft Condensed Matter Group
- ^ The Whitesides Research Group
- ^ The Quake Research Group
- ^ UCLA Microsystems Laboratories
- ^ Burns Research Group
- ^ BioMEMS and Microsystems Research Group
- ^ Daniel Chiu Group
- ^ Utah Center of Excellence for Biomedical Microfluidics
- ^ Albert Folch Group
- ^ Paul Yager Group
- ^ Shashi Murthy Group
- ^ Sandip Ghosal Group
- ^ John Wikswo Group
- ^ Chang Lu Group
- ^ Jeffrey Zahn Group
- ^ [10]
- ^ Xiangchun Xuan Group
- ^ Amy Shen Group
- ^ [11]
- ^ Microscale Bioseparation Laboratory
- ^ Alejandro Allievi's Group
- ^ Brazilian Synchrotron Light Laboratory
- ^ [12]
- ^ [13]
- ^ Nano Systems Research Group
- ^ Institute of Sensor and Actuator Systems
- ^ Research Group SynBioC
- ^ Group Renaud
- ^ Demetri Psaltis Group
- ^ [14]
- ^ [15]
- ^ Department of Micro and Nanotechnology
- ^ Department of Micro and Nanosciences
- ^ Division of Pharmaceutical Chemistry
- ^ VTT
- ^ [16]
- ^ MMN Group
- ^ Lab of the Future
- ^ LadHyX
- ^ [17]
- ^ [18]
- ^ [19]
- ^ [20]
- ^ Institute for Nano- and Microfluidics
- ^ Köhler Group
- ^ DMI
- ^ Max Planck Institute: Microfluidics research group
- ^ Microfluidics and Nanofluidics
- ^ IMM: Institut für Mikrotechnik Mainz GmbH
- ^ ENAS: Dept. MDI - Microfluidics
- ^ [21]
- ^ [22]
- ^ ISAS: Institute for Analytical Sciences
- ^ [23]
- ^ Experimental Biophysics and Applied Nanoscience at University of Bielefeld
- ^ HSG-IMIT
- ^ IMTEK - Laboratory for MEMS Applications
- ^ Belder Research Group
- ^ IPHT Microfluidics Department
- ^ ICT Group of Microreaction Technology
- ^ Stokes Institute
- ^ [http://www.dienca.unibo.it/DIENCA/Ricerca/Progetti+e+attivita/area_di_ricerca/termofluidodinamica.htm/
- ^ Laboratory of Biomaterials & Bioencapsulation
- ^ [24]
- ^ KeymerLab
- ^ Laboratory for Aero & Hydrodynamics of TU DELFT
- ^ TNO Microfluidics
- ^ MCS: Mesoscale Chemical Systems
- ^ PCF: Physics of Complex Fluids
- ^ BIOS: The Lab-on-a-Chip Group
- ^ POF: Physics of Fluids
- ^ http://www.ntnu.no/ept/lab/microflow Microfluidics research group
- ^ Garstecki lab of microfluidics and complex fluids, IChF PAN
- ^ Chemical Sensor Research Group
- ^ Orwar Research Group
- ^ Nanobiotechnology and Lab-on-a-Chip Group
- ^ Microsystem Technology Group
- ^ Transport and separations group
- ^ Division of Micro Systems Technology
- ^ Microfluidics and Lab-on-a-chip Research Group
- ^ [25]
- ^ [26]
- ^ [27]
- ^ [28]
- ^ [29]
- ^ [30]
- ^ Bioelectronics Group
- ^ Microfluidics and Microengineering Group
- ^ UCL Mechanical Engineering : Microfluidics
- ^ [31]
- ^ [32]
- ^ [33]
- ^ Transport Phenomena Research Center
- ^ Immunoelectroanalysis Group
- ^ NanoBiotech Laboratory (Prof. Je-Kyun Park), Department of Bio and Brain Engineering, KAIST
- ^ BEAM Lab (Prof. Jing-Tang Yang)
- ^ Jianhua Qin Group
- ^ Fang's Group
- ^ [34]
- ^ YanYi Huang Research Group
- ^ Anderson Shum's Research Group
- ^ Microfluidic Lab IIT Kharagpur
- ^ R.P Bharti Research Group
- ^ [35]
- ^ [36]
- ^ Kitamori Lab Group
- ^ BINEL(Biophtonics and Nanoengineering Lab)
- ^ [37]
- ^ [38]
- ^ N. T. Nguyen's Micro/Nanofluidics Research Lab
- ^ Microfluidics Laboratory
- ^ Auckland Microfab
- ^ [39]