Microfluidics

  1. The method to generate pulsatile circulatory fluid flow using microfluidics

    Jingjing Li, Osmond Lao, Robert E. Nordon — MethodsX, 2021

    Journal doi:10.1016/j.mex.2021.101269

  2. Engineering a deformation-free plastic spiral inertial microfluidic system for CHO cell clarification in biomanufacturing

    Hyungkook Jeon, Taehong Kwon, Junghyo Yoon, et al. — Lab on a Chip, 2021

    Journal doi:10.1039/d1lc00995h

  3. A microfluidic approach to rapid sperm recovery from heterogeneous cell suspensions

    Steven A. Vasilescu, Shayan Khorsandi, Lin Ding, et al. — Scientific Reports, 2021

    Journal doi:10.1038/s41598-021-87046-9 Fusion 200X High-Precision Syringe Pump

  4. High-temperature high-pressure microfluidic system for rapid screening of supercritical CO2 foaming agents

    Ayrat Gizzatov, Scott C. Pierobon, Zuhair A. AlYousef, et al. — Scientific Reports, 2021

    Journal doi:10.1038/s41598-021-82839-4 Fusion 6000 High Pressure Syringe Pump

  5. A Multiplex Fluidic Chip for Rapid Phenotypic Antibiotic Susceptibility Testing

    Pikkei Wistrand-Yuen, Christer Malmberg, Nikos Fatsis-Kavalopoulos, et al. — mBio, 2020

    Journal doi:10.1128/mbio.03109-19

  6. Improving Sensitivity and Throughput for Bioanalytical Measurements with Mass Spectrometry using Microfluidics and Online Sample Preparation

    Wells, Shane — Deep Blue (University of Michigan), 2020

    Thesis doi:10.7302/1530

  7. Advancing Two-photon Lithography by Integrating Microfluidics and Optical Tweezers

    Samira Chizari — eScholarship (California Digital Library), 2020

    Thesis

  8. A Microfluidic Platform for Functional Testing of Cancer Drugs on Intact Tumor Slices

    A. D. Rodriguez, Lisa F. Horowitz, Kurt Castro, et al. — bioRxiv (Cold Spring Harbor Laboratory), 2020

    Preprint doi:10.1101/2020.03.02.973818

  9. A thiol-ene microfluidic device enabling continuous enzymatic digestion and electrophoretic separation as front-end to mass spectrometric peptide analysis

    Nan Lü, Drago Sticker, Andreas Kretschmann, et al. — Analytical and Bioanalytical Chemistry, 2020

    Journal doi:10.1007/s00216-020-02609-5

  10. Development of a Microfluidic Method to Study Enhanced Oil Recovery by Low Salinity Water Flooding.

    Marzieh Saadat, Peichun A Tsai, Tsai-Hsing Ho, et al. — ACS Omega, 2020

    Journal doi:10.1021/acsomega.0c02005

  11. Fast Detection of 2,4,6-Trinitrotoluene (TNT) at ppt Level by a Laser-Induced Immunofluorometric Biosensor

    Martin Paul, Georg Tscheuschner, Stefan Herrmann, et al. — Biosensors, 2020

    Journal doi:10.3390/bios10080089

  12. Accelerated Lead Halide Perovskite Development by Autonomous Robotic Experimentation in Flow.

    Robert W. Epps — NCSU Libraries Repository (North Carolina State University Libraries), 2020

    Journal

  13. A Microfluidic System to Measure Neonatal Lung Compliance Over Late Stage Development as a Functional Measure of Lung Tissue Mechanics.

    Laurel E Schappell, Daniel J Minahan, Jason P Gleghorn — Journal of Biomechanical Engineering, 2020

    Journal doi:10.1115/1.4047133

  14. Application of a Flow-Induced Stress Wave and Investigation of Associated Injuries on Cell Monolayers Using a Parallel Plate Flow Chamber

    Samar Shurbaji, Mahmoud Khatib A. A. Al-Ruweidi, Fatma Hassan Ali, et al. — Methods and Protocols, 2020

    Journal doi:10.3390/mps3040065

  15. High-Throughput Particle Concentration Using Complex Cross-Section Microchannels.

    Asma Mihandoust, Sajad Razavi Bazaz, Nahid Maleki-Jirsaraei, et al. — Micromachines, 2020

    Journal doi:10.3390/mi11040440

  16. Optimization of a Decatungstate-Catalyzed C(sp3)–H Alkylation Using a Continuous Oscillatory Millistructured Photoreactor

    Zhenghui Wen, Apoorva Maheshwari, Carlo Sambiagio, et al. — Organic Process Research & Development, 2020

    Journal doi:10.1021/acs.oprd.0c00235

  17. Cell softness regulates tumorigenicity and stemness of cancer cells

    Jiadi Lv, Yaoping Liu, Yaoping Liu, et al. — The EMBO Journal, 2020

    Journal doi:10.15252/embj.2020106123

  18. Sweat monitoring beneath garments using passive, wireless resonant sensors interfaced with laser-ablated microfluidics.

    Adam R Carr, Yash H Patel, Charles R Neff, et al. — npj Digital Medicine, 2020

    Journal doi:10.1038/s41746-020-0270-2 Fusion 100 Infusion Pump

  19. 3D Printed Microfluidic Devices for Drug Release Assays

    Benzion Amoyav, Yoel Goldstein, Eliana Steinberg, et al. — Pharmaceutics, 2020

    Journal doi:10.3390/pharmaceutics13010013 Fusion 100 Infusion Pump

  20. A Microfluidic Device for Imaging Samples from Microbial Suspension Cultures.

    Alexander Letourneau, Jack Kegel, Jehad Al-Ramahi, et al. — MethodsX, 2020

    Journal doi:10.1016/j.mex.2020.100891 Fusion 100 Infusion Pump

  21. Evaluating the Effects of Disinfectants on Bacterial Biofilms Using a Microfluidics Flow Cell and Time-Lapse Fluorescence Microscopy

    Miloš Legner, James E. N. Jonkman, Dean Swift — Microorganisms, 2020

    Journal doi:10.3390/microorganisms8111837 Fusion 100 Infusion Pump

  22. Unravelling colloid filter cake motions in membrane cleaning procedures

    Arne Lüken, John Linkhorst, Robin Fröhlingsdorf, et al. — Scientific Reports, 2020

    Journal doi:10.1038/s41598-020-76970-x

  23. Multiplexed and Ultralow-Input ChIP-seq Enabled by Tagmentation-Based Indexing and Facile Microfluidics.

    Chengyu Deng, Travis W Murphy, Qiang Zhang, et al. — Analytical Chemistry, 2020

    Journal doi:10.1021/acs.analchem.0c02550

  24. Under oil open-channel microfluidics empowered by exclusive liquid repellency.

    Chao Li, Zachary Hite, Jay W Warrick, et al. — Science Advances, 2020

    Journal doi:10.1126/sciadv.aay9919

  25. Improving Efficiency by Using Continuous Flow to Enable Cycles: Pseudo-Catalysis, Catalysis and Kinetics

    Sullivan, Ryan — uO Research (University of Ottawa), 2020

    Thesis doi:10.20381/ruor-24620

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