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    Mini peristaltic pump for Wearable HD: power and battery life

    ByDean Johnson October 5, 2016October 5, 2016

    Power and battery life for wearable hemodialysis. The pump(s) will consume the most energy of all the components of the system. Other power consumers could include, control circuits, wireless communication, display and warning lights, depending on design. A continuous display could consume a great deal of power if not handled correctly. LEDs and LCD indicators…

    Read More Mini peristaltic pump for Wearable HD: power and battery lifeContinue

  • NRG

    Size separation of DNA with NPN pre-filters

    ByKyle Briggs October 4, 2016October 4, 2016

    Since my last update I have been trying to achieve reliable size-separation of DNA by length using dwell time with the NPN pre-filter. Originally I had hoped to achieve 250-bp resolution near the optimal length for the NPN filter devices that we are working with, but that turned out to be a bit overly ambitious,…

    Read More Size separation of DNA with NPN pre-filtersContinue

  • NRG

    SEM FIB Lift-out of 50 nm NPN for TEM Analysis

    ByKilean September 30, 2016September 24, 2020

    As a step to identifying the particles that I am capturing in my systems, I am attempting to do an immunogold labeling with a CD 63 primary antibody and a 10 nm gold conjugated secondary. It is possible to run this analysis in an SEM, but the best confirmation method is using a TEM and…

    Read More SEM FIB Lift-out of 50 nm NPN for TEM AnalysisContinue

  • NRG

    Rapid (and reversible) Vacuolization of Brain Endothelial Cells under Flow

    ByJim September 27, 2016September 27, 2016

    The following contain updates from a group of Swiss collaborators working with NPN for a BBB mimetic. The movies are important because they demonstrate T-cell/endothelial interaction including transmigration and because they show how using vacuum pressure can rapidly cause vacuoles to grow in endothelial cells. BBB flow chamber PPT  

    Read More Rapid (and reversible) Vacuolization of Brain Endothelial Cells under FlowContinue

  • NRG

    BMES 2016 Presentation: SiO2 Membranes & Cell-Substrate Interactions

    ByThomas Gaborski September 27, 2016

    Here is a PDF of the presentation I plan to give at BMES this year. The presentation is first an overview of our SiO2 membranes for cell barrier and co-culture models and then a brief summary of our cell-substrate and cell-cell interactions on porous and soft substrates. I am currently working on getting it under…

    Read More BMES 2016 Presentation: SiO2 Membranes & Cell-Substrate InteractionsContinue

  • NRG

    Exosome Capture Update: A Tale of Two Pumps

    ByKilean September 26, 2016

    The week before last, I finally switched back to my exosome experiments with some hope of repeating my January successes with my new clampable format and two pump system. After failing for several hours (and breaking 7 membranes), I was finally able to get the system to work and get a sample for SEM. (A…

    Read More Exosome Capture Update: A Tale of Two PumpsContinue

  • NRG

    Microporous Magnesium Fluoride Nanomembrane Becomes Stronger as the Film Thickness Increases

    ByGreg Madejski September 18, 2016

    The title really says it all. I have been attempting to make a better cell culture substrate with the Magnesium Fluoride Films. Previous posts have shown the overall structure of the film, and now I am trying to quantify the strength with a burst pressure measurement. In order to make a direct comparison, I needed to…

    Read More Microporous Magnesium Fluoride Nanomembrane Becomes Stronger as the Film Thickness IncreasesContinue

  • NRG

    Blood Cell Separation Using Microslit Chips

    ByKilean September 13, 2016

    Over the summer, I have been working on a project with Rick Waugh that focuses on separating white blood cells from red blood cells. The goal is to be able to take a lancet droplet of whole blood and perform an analysis on this blood, whether it be for white blood cell phenotyping or exosome…

    Read More Blood Cell Separation Using Microslit ChipsContinue

  • NRG

    Designing a Reverse-Centrifugation Sepcon Variant (Part 1: Geometry)

    ByKarl Smith September 12, 2016September 24, 2020

    We have an STTR grant funding us to revise the Sepcon plastic housing to enable us to do reverse centrifugation easier. As outlined in this previous post, we’re trying to remove unbound IgG from a solution of IgG-antibody conjugates using reverse centrifugation:  The earlier work used Josh Winan’s jury-rigged PDMS-filled reverse centrifugation setup, but despite the…

    Read More Designing a Reverse-Centrifugation Sepcon Variant (Part 1: Geometry)Continue

  • NRG

    Raw Data (including preliminary models) and Figure Drafts for the Modeling Paper

    ByKarl Smith September 5, 2016September 13, 2016

    Below are drafts of all the figures I am planning on incorporating into my upcoming model paper. I believe I am done with data collection at this point. Data in figures not marked “NEW” probably needs to be updated. Note that all model curves are calculated with no fitting parameters. They are derived from base principles. That’s why…

    Read More Raw Data (including preliminary models) and Figure Drafts for the Modeling PaperContinue

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    • Home
    • Publications
    • Membranes
      • Common Chip Formats
      • Common Membranes
      • Microslit Membranes
    • Devices
      • µSiM
        • Geometry
        • µSiM CAD Files
        • Assembly
          • Protocols.io (µSiM Assembly)
          • Instructions
          • Common Issues and Troubleshooting Tips
        • Cell Culture Protocols
          • Top Well: hCMEC/D3
          • Top Well: HUVEC
          • Bottom Channel Culturing
          • Immunocytochemistry Protocol
          • Impact of Chip Orientation on Fluorescence Imaging
          • Permeability: In Situ Method
          • Permeability: Sampling Method
          • Cell Culture Common Issues and Troubleshooting Tips
      • SepCon®
        • Sepcon Assembly
        • Sepcon Video Protocol: Assembly
        • SepCon Gasket Silhouette File
        • SepCon Video Protocol: Wetting the membrane
        • SepCon Video Protocol: Disassembly
      • µSiM-DX
        • µSIM Video Protocol: Capture of Nanoparticles
    • Impact
      • TraCe-bMPS
      • HCIC
      • LOMP
      • SiMPore