Ergebnis der Suchanfrage nach @suche@G&ampuumlstrow

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  • 14.11.2022 – 09:17

    Technische Universität München

    Molecular monitoring of RNA regulation

    TECHNICAL UNIVERSITY OF MUNICH Corporate Communications Center phone: +49 89 289 10808 - email: presse@tum.de - web: www.tum.de This text on the web: https://www.tum.de/en/news-and-events/all-news/press-releases/details/molecular-monitoring-of-rna-regulation Pictures: https://mediatum.ub.tum.de/1691366 NEWS RELEASE Molecular monitoring of RNA regulation New biological tool for tracking cellular processes The better we ...

  • 15.09.2022 – 11:55

    Technische Universität München

    Improved monitoring of silicone implants

    TECHNICAL UNIVERSITY OF MUNICH Corporate Communications Center phone: +49 89 289 10808 - email: presse@tum.de - web: www.tum.de This text on the web: https://www.tum.de/aktuelles/alle-meldungen/pressemitteilungen/details/verbessertes-monitoring-von-silikonimplantaten Pictures: https://mediatum.ub.tum.de/1687409 NEWS RELEASE Improved monitoring of silicone implants New algorithm for clinical MRI scanners makes breast ...

  • 29.08.2022 – 15:00

    German Bionic Systems

    Lightweight product specialist Mubea and exoskeleton developer German Bionic set to cooperate

    Augsburg/Attendorn (ots) - Top German automotive parts supplier to produce smart power suits from technology leader German Bionic for the global market in the future German Bionic, the global technology leader in the development of smart power suits, and the top German automotive supplier Mubea have entered into a far-reaching cooperation agreement. Mubea, an ...

  • 02.06.2022 – 11:20

    Technische Universität München

    3D printed, bioinspired heart valves

    TECHNICAL UNIVERSITY OF MUNICH Corporate Communications Center phone: +49 89 289 10808 - email: presse@tum.de - web: www.tum.de This text on the web: https://www.tum.de/en/about-tum/news/press-releases/details/37446 Pictures: https://mediatum.ub.tum.de/1659641 NEWS RELEASE 3D printed, bioinspired heart valves Scaffolds created by melt electrowriting aim to support new tissue formation Researchers have developed 3D ...