David Chen

@bigimaginglab

Microscope bender. Postdoc at the MPI-CBG working on high-resolution mesoscopy for multiscale systems biology

Vrijeme pridruživanja: listopad 2009.

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  1. Prikvačeni tweet
    17. velj 2018.
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  2. proslijedio/la je Tweet
    23. sij

    Dresden strikes again. Phase separation buffers gene expression noise - theory and experiment. Powered by & Congrats!

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  3. proslijedio/la je Tweet
    18. sij

    More than ten were honoured for their outstanding & as . In our graphic you’ll get an overview of the universities and their locations. Is there a city in where you would like to ? 🇩🇪

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  4. 15. sij

    I found some Landau and Feynman books at the lounge of the . At the interface of biology, physics, and computer science

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  5. 11. sij

    My favorite hobby in Germany is to open the window and ventilate the room

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  6. proslijedio/la je Tweet
    10. sij

    This is not a video. It is where computer graphics are in 2020. 🤯

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  7. proslijedio/la je Tweet
    28. stu 2019.

    We’re looking for engineers, chemists, physicists, mathematicians and computer scientists to join us at the Crick and set up their first research group with , or . 👩🏾‍🔬👨🏼‍🏫👩🏻‍💻👨🏿‍🔧👩🏽‍💼 Find out more and apply by 9 January. ⬇️

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  8. 30. pro 2019.

    Postdocs looking for an academic position

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  9. proslijedio/la je Tweet
    19. pro 2019.

    PoL is hiring, MPI-CBG is hiring! Two more calls are open, one for a group leader position at MPI-CBG, one for a joint group between MPI-CBG and our Excellence Cluster Physics of Life.

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  10. proslijedio/la je Tweet

    Which new language would you like to learn? Flash Eurobarometer 466, 2018: 🇷🇴 German 🇵🇹 German 🇸🇮 German 🇭🇷 German 🇪🇸 German 🇱🇹 German 🇨🇿 French 🇱🇻 French 🇨🇾 Russian 🇫🇷 Spanish 🇮🇹 Spanish 🇩🇪 Spanish 🇸🇪 Spanish 🇬🇧 Spanish 🇮🇪 Spanish 🇩🇰 Spanish 🇧🇪 Spanish 🇫🇮 Spanish 🇵🇱 Spanish ...

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  11. proslijedio/la je Tweet
    16. pro 2019.

    Come and join us!!! Max Planck Research Group Leader (W2) in Molecular, Cellular or Developmental Biology to establish a Research Group that develops quantitative approaches in molecular, cellular or developmental biosciences. Apply until Jan 15th.

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  12. proslijedio/la je Tweet

    We had a blast! Many thanks to all the speakers and guests who made ' 65th birthday symposium a scientifically superb and warm-hearted event. See you all at Gene's 70th birthday :-)

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  13. proslijedio/la je Tweet
    18. stu 2019.

    is changing the way we do . E.g. tuning parameters of workflows becomes a completely different experience with instant feedback. We're happy and to share it with everyone! Today out in : 🥳

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  14. proslijedio/la je Tweet
    10. stu 2019.

    Problem - how do you know where the probes actually went? Solution - Optical projection tomography (OPT)! Minutes of acquisition for ~10 micron isotropic resolution in whole mouse brain! Gif is Z stack from reconstructed volume w/ NeuroPixels probes.

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  15. proslijedio/la je Tweet
    31. lis 2019.

    Cleared tissue ASLM is online: It enables isotropic, subcellular resolution over large field of views and is compatible with all clearing techniques (n=1.33-1.559). We use ctASLM to image mouse brains, kidneys and bone marrow. Image shows stem cell niche.

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  16. proslijedio/la je Tweet
    28. lis 2019.

    Such a cool way to explain logic gates.

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  18. 19. lis 2019.

    This laser is a dream for 2p-microscopy (I have no commercial interest): wide tuning range (660-1320nm), high power (>1.5 W on average), built-in intensity control, dispersion compensation, and a secondary output

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  19. 18. lis 2019.

    Interesting flat-lens design with an extended depth of focus. Maybe useful for lightsheet microscopes

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  20. proslijedio/la je Tweet
    17. lis 2019.

    New preprint from the documents the initial findings from ~70 TB of publicly available Neuropixels recordings across the mouse visual system. All the physiology data was acquired with the Open Ephys GUI.

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  21. proslijedio/la je Tweet
    16. lis 2019.

    This is an open source laser engine which is capable of SMLM acquisition of up to 4nm at high speed. A work from our own Daniel Schröder (PhD student) from his master thesis at lab

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