Henrik Pascal Heymann, M. Sc.

Henrik Pascal Heymann, M. Sc.
Address
Schneiderberg 32
30167 Hannover
Building
Room
234
Henrik Pascal Heymann, M. Sc.
Address
Schneiderberg 32
30167 Hannover
Building
Room
234
  • Publikationsliste

    Showing results 1 - 6 out of 6

    2024


    An Intelligent and Efficient Workflow for Path-Oriented 3D Bioprinting of Tubular Scaffolds. / Baroth, Timo; Loewner, Sebastian; Heymann, Henrik et al.
    In: 3D Printing and Additive Manufacturing, Vol. 11, No. 1, 15.02.2024, p. 323-332.

    Research output: Contribution to journalArticleResearchpeer review


    2023


    Successful endothelial monolayer formation on melt electrowritten scaffolds under dynamic conditions to mimic tunica intima. / Loewner, Sebastian; Heene, Sebastian; Cholewa, Fabian et al.
    In: International Journal of Bioprinting, Vol. 10, No. 1, 11.09.2023, p. 477-491.

    Research output: Contribution to journalArticleResearchpeer review

    Technische Aspekte des Tissue Engineerings. / Stanislawski, Nils Hendrik; Heymann, Henrik Pascal; Blume, Holger Christoph.
    In: Unimagazin: Forschungsmagazin der Leibniz Universität Hannover, Vol. 2023, No. 1/2, 19.05.2023, p. 28-31.

    Research output: Contribution to specialist publicationContribution in popular science journalTransfer


    2022


    Recent advances in melt electro writing for tissue engineering for 3D printing of microporous scaffolds for tissue engineering. / Loewner, Sebastian; Heene, Sebastian; Baroth, Timo et al.
    In: Frontiers in Bioengineering and Biotechnology, Vol. 10, 896719, 17.08.2022.

    Research output: Contribution to journalReview articleResearchpeer review


    2020


    Automated Bioreactor System for the Cultivation of Autologous Tissue-Engineered Vascular Grafts. / Stanislawski, Nils; Cholewa, Fabian; Heymann, Henrik et al.
    42nd Annual International Conferences of the IEEE Engineering in Medicine and Biology Society: Enabling Innovative Technologies for Global Healthcare, EMBC 2020. Institute of Electrical and Electronics Engineers Inc., 2020. p. 2257-2261 9175340 (Proceedings of the Annual International Conference of the IEEE Engineering in Medicine and Biology Society, EMBS; Vol. 2020-July).

    Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review


    2017


    Tool-supported design space exploration of a processor system for SIFT-feature detection. / Hartig, Julian; Paya-Vaya, Guillermo; Heymann, Henrik et al.
    2017 IEEE 7th International Conference on Consumer Electronics - Berlin (ICCE-Berlin). IEEE Computer Society, 2017. p. 168-169.

    Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review


  • Forschungsprojekte

    Biomedizintechnik

    • "Hören mit Licht" - Entwicklung der Implantat-Elektronik für das optische Cochlea-Implantat
      In diesem Projekt wird die Implantat-Elektronik für ein 64-kanaliges optisches Cochlea-Implantat entwickelt. Am IMS liegt der Schwerpunkt auf einer integrierten Schaltung zur Ansteuerung von Laserdioden-Arrays, die in ein elektronisches Gesamtsystem mit drahtloser Energie- und Datenübertragung eingebunden wird.
      Led by: Prof. Dr.-Ing. Holger Blume, Prof. Dr.-Ing. Bernhard Wicht
      Team: Henrik Heymann, M.Sc., Adrian Gehl, M.Sc.
      Year: 2024
      Duration: 2023-2025