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741 results for “MWNautilus”

  1. Teach your #microscope how to print: Low-cost rapid-iteration #OpenSource #microfabrication for #biology:

    - no cleanroom required
    - replace SU-8 #photoresist & silicon wafers by #3Dprinting #resin & microscope slides
    - #fluorescence microscope-based maskless #photolithography
    - achieve µm-scale precision across cm-sized areas

    doi.org/10.1039/D5LC00181A
    #DIYbio #lab #instruments #microfluidics

  2. 8-channel high-speed #OpenSource #electrical #impedance #tomography device implemented on a programmable #system-on-a-chip:

    #EIT is a non-invasive #imaging technique providing info about the internal #conductivity distribution of a body/object

    doi.org/10.1016/j.ohx.2025.e00
    #DIYbio #lab #instruments #SoC

  3. 8-channel high-speed device implemented on a programmable -on-a-chip:

    is a non-invasive technique providing info about the internal distribution of a body/object

    doi.org/10.1016/j.ohx.2025.e00

  4. 8-channel high-speed #OpenSource #electrical #impedance #tomography device implemented on a programmable #system-on-a-chip:

    #EIT is a non-invasive #imaging technique providing info about the internal #conductivity distribution of a body/object

    doi.org/10.1016/j.ohx.2025.e00
    #DIYbio #lab #instruments #SoC

  5. 8-channel high-speed #OpenSource #electrical #impedance #tomography device implemented on a programmable #system-on-a-chip:

    #EIT is a non-invasive #imaging technique providing info about the internal #conductivity distribution of a body/object

    doi.org/10.1016/j.ohx.2025.e00
    #DIYbio #lab #instruments #SoC

  6. 8-channel high-speed #OpenSource #electrical #impedance #tomography device implemented on a programmable #system-on-a-chip:

    #EIT is a non-invasive #imaging technique providing info about the internal #conductivity distribution of a body/object

    doi.org/10.1016/j.ohx.2025.e00
    #DIYbio #lab #instruments #SoC