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741 results for “MWNautilus”
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#ESPressoscope: A small & powerful #OpenSource platform for multi-configurable in situ #microscopy:
-portable digital time-lapse #imaging
-#WiFi-access
-#spectrophotometerhttps://doi.org/10.1101/2024.01.20.576174
#DIYbio #lab #instruments #microscope #microfluidics #spectroscopy #FrugalScience -
#ESPressoscope: A small & powerful #OpenSource platform for multi-configurable in situ #microscopy:
-portable digital time-lapse #imaging
-#WiFi-access
-#spectrophotometerhttps://doi.org/10.1101/2024.01.20.576174
#DIYbio #lab #instruments #microscope #microfluidics #spectroscopy #FrugalScience -
#FINDUS: An #OpenSource #3Dprintable liquid-handling workstation for #laboratory #automation in life sciences:
-#peptide #synthesis module: 4-20 aa, <0.5 mmol
-#ESP8266/#Arduino/#Python-controlled
-cost ~$400https://doi.org/10.1177/2472630319877374
#DIYbio #DIYchem #lab #instruments #pipet -
#FINDUS: An #OpenSource #3Dprintable liquid-handling workstation for #laboratory #automation in life sciences:
-#peptide #synthesis module: 4-20 aa, <0.5 mmol
-#ESP8266/#Arduino/#Python-controlled
-cost ~$400https://doi.org/10.1177/2472630319877374
#DIYbio #DIYchem #lab #instruments #pipet -
#FINDUS: An #OpenSource #3Dprintable liquid-handling workstation for #laboratory #automation in life sciences:
-#peptide #synthesis module: 4-20 aa, <0.5 mmol
-#ESP8266/#Arduino/#Python-controlled
-cost ~$400https://doi.org/10.1177/2472630319877374
#DIYbio #DIYchem #lab #instruments #pipet -
#FINDUS: An #OpenSource #3Dprintable liquid-handling workstation for #laboratory #automation in life sciences:
-#peptide #synthesis module: 4-20 aa, <0.5 mmol
-#ESP8266/#Arduino/#Python-controlled
-cost ~$400https://doi.org/10.1177/2472630319877374
#DIYbio #DIYchem #lab #instruments #pipet -
#FINDUS: An #OpenSource #3Dprintable liquid-handling workstation for #laboratory #automation in life sciences:
-#peptide #synthesis module: 4-20 aa, <0.5 mmol
-#ESP8266/#Arduino/#Python-controlled
-cost ~$400https://doi.org/10.1177/2472630319877374
#DIYbio #DIYchem #lab #instruments #pipet -
MVO #Automation Platform: Addressing unmet needs in #clinical #laboratories with #microcontrollers, #3Dprinting & #OpenSource hardware/software:
-#RaspberryPi/#PiCam/#Python/#OpenCV-controlled
-#pipetting
-#photometryhttps://doi.org/10.1177/2472630318773693
#DIYbio #lab #instruments -
MVO #Automation Platform: Addressing unmet needs in #clinical #laboratories with #microcontrollers, #3Dprinting & #OpenSource hardware/software:
-#RaspberryPi/#PiCam/#Python/#OpenCV-controlled
-#pipetting
-#photometryhttps://doi.org/10.1177/2472630318773693
#DIYbio #lab #instruments -
MVO #Automation Platform: Addressing unmet needs in #clinical #laboratories with #microcontrollers, #3Dprinting & #OpenSource hardware/software:
-#RaspberryPi/#PiCam/#Python/#OpenCV-controlled
-#pipetting
-#photometryhttps://doi.org/10.1177/2472630318773693
#DIYbio #lab #instruments -
MVO #Automation Platform: Addressing unmet needs in #clinical #laboratories with #microcontrollers, #3Dprinting & #OpenSource hardware/software:
-#RaspberryPi/#PiCam/#Python/#OpenCV-controlled
-#pipetting
-#photometryhttps://doi.org/10.1177/2472630318773693
#DIYbio #lab #instruments -
MVO #Automation Platform: Addressing unmet needs in #clinical #laboratories with #microcontrollers, #3Dprinting & #OpenSource hardware/software:
-#RaspberryPi/#PiCam/#Python/#OpenCV-controlled
-#pipetting
-#photometryhttps://doi.org/10.1177/2472630318773693
#DIYbio #lab #instruments -
#OpenSource, programmable pneumatic setup for operation & #automated control of single- & multi-layer #microfluidic devices:
-#Python #pneumatic control software (#Geppetto), #Kivy #GUI & optional Windows binary
https://doi.org/10.1016/j.ohx.2017.10.001
#DIYbio #lab #instruments #microfluidics -
#OpenSource, #3Dprinted #laboratory sample rotator #mixer & #shaker:
-two build-options
-cost: approx. US $30-50
-#Arduino-controlledhttps://doi.org/10.1016/j.ohx.2016.07.001
#DIYbio #lab #instruments #OpenHardware -
Minimal-invasive #biocompatible #laser-based #3Dprinting of #microimplants in living organisms:
https://doi.org/10.1101/2024.01.23.576808
#DIYbio #lab #instruments #implants #3Dprinted -
Minimal-invasive #biocompatible #laser-based #3Dprinting of #microimplants in living organisms:
https://doi.org/10.1101/2024.01.23.576808
#DIYbio #lab #instruments #implants #3Dprinted -
Minimal-invasive #biocompatible #laser-based #3Dprinting of #microimplants in living organisms:
https://doi.org/10.1101/2024.01.23.576808
#DIYbio #lab #instruments #implants #3Dprinted -
Minimal-invasive #biocompatible #laser-based #3Dprinting of #microimplants in living organisms:
https://doi.org/10.1101/2024.01.23.576808
#DIYbio #lab #instruments #implants #3Dprinted -
Minimal-invasive #biocompatible #laser-based #3Dprinting of #microimplants in living organisms:
https://doi.org/10.1101/2024.01.23.576808
#DIYbio #lab #instruments #implants #3Dprinted -
Smart palm-size #optofluidic #hematology #analyzer for #automated #imaging-based #leukocyte concentration detection:
-particle counting based on #Python/#OpenCV
https://doi.org/10.29026/oes.2023.230018
#DIYbio #lab #instruments #PoC #diagnostics #microfluidics #fluorescence #microscopy -
Smart palm-size #optofluidic #hematology #analyzer for #automated #imaging-based #leukocyte concentration detection:
-particle counting based on #Python/#OpenCV
https://doi.org/10.29026/oes.2023.230018
#DIYbio #lab #instruments #PoC #diagnostics #microfluidics #fluorescence #microscopy -
Smart palm-size #optofluidic #hematology #analyzer for #automated #imaging-based #leukocyte concentration detection:
-particle counting based on #Python/#OpenCV
https://doi.org/10.29026/oes.2023.230018
#DIYbio #lab #instruments #PoC #diagnostics #microfluidics #fluorescence #microscopy -
Smart palm-size #optofluidic #hematology #analyzer for #automated #imaging-based #leukocyte concentration detection:
-particle counting based on #Python/#OpenCV
https://doi.org/10.29026/oes.2023.230018
#DIYbio #lab #instruments #PoC #diagnostics #microfluidics #fluorescence #microscopy -
Smart palm-size #optofluidic #hematology #analyzer for #automated #imaging-based #leukocyte concentration detection:
-particle counting based on #Python/#OpenCV
https://doi.org/10.29026/oes.2023.230018
#DIYbio #lab #instruments #PoC #diagnostics #microfluidics #fluorescence #microscopy -
#OpenStage: A low-cost #OpenSource #Arduino-#motorized #microscope #stage with sub-micron #positioning accuracy:
-stage control: #PlayStation3, #DualShock3 game pad, PC serial port using #MATLAB/#Python
https://doi.org/10.1371/journal.pone.0088977
#DIYbio #lab #instruments #imaging #microscopy -
#Openspritzer: A high-performance, #Arduino-controlled #OpenHardware #pressure #ejection system for reliably delivering pL volumes:
-off the shelf components & #3Dprinted parts (~£360)
https://doi.org/10.1038/s41598-017-02301-2
#DIYbio #lab #instruments #neurobiology #DrugDelivery #microinjection -
#Openspritzer: A high-performance, #Arduino-controlled #OpenHardware #pressure #ejection system for reliably delivering pL volumes:
-off the shelf components & #3Dprinted parts (~£360)
https://doi.org/10.1038/s41598-017-02301-2
#DIYbio #lab #instruments #neurobiology #DrugDelivery #microinjection -
#Openspritzer: A high-performance, #Arduino-controlled #OpenHardware #pressure #ejection system for reliably delivering pL volumes:
-off the shelf components & #3Dprinted parts (~£360)
https://doi.org/10.1038/s41598-017-02301-2
#DIYbio #lab #instruments #neurobiology #DrugDelivery #microinjection -
#Openspritzer: A high-performance, #Arduino-controlled #OpenHardware #pressure #ejection system for reliably delivering pL volumes:
-off the shelf components & #3Dprinted parts (~£360)
https://doi.org/10.1038/s41598-017-02301-2
#DIYbio #lab #instruments #neurobiology #DrugDelivery #microinjection -
#Openspritzer: A high-performance, #Arduino-controlled #OpenHardware #pressure #ejection system for reliably delivering pL volumes:
-off the shelf components & #3Dprinted parts (~£360)
https://doi.org/10.1038/s41598-017-02301-2
#DIYbio #lab #instruments #neurobiology #DrugDelivery #microinjection