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Andreas Fech

Showing results (1-10 of 5) with videos related to

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International Journal of Molecular Sciences|July 2, 2021
Novel Techniques to Improve Precise Cell InjectionWalter Linzenbold, Andreas Fech, Manuela Hofmann, et al.
Neurourology and Urodynamics|December 25, 2019
A novel waterjet technology for transurethral cystoscopic injection of viable cells in the urethral sphincter complexLuise Jäger, Walter Linzenbold, Andreas Fech, et al.
Biomedicines|December 30, 2025
A Novel Technology for Needle-Free Injections of Liquids, Particles and Viable Cells into the Submucosa of the Urethra by a Pressure-Controlled Waterjet TechnologyNiklas Harland, Andreas Fech, Walter Linzenbold, et al.
BJU International|September 17, 2020
Rapid and precise delivery of cells in the urethral sphincter complex by a novel needle-free waterjet technologyWalter Linzenbold, Luise Jäger, Hartmut Stoll, et al.
Scientific Reports|October 9, 2020
Hydrojet-based delivery of footprint-free iPSC-derived cardiomyocytes into porcine myocardiumMarbod Weber, Andreas Fech, Luise Jäger, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
International Journal of Molecular Sciences|July 2, 2021
Novel Techniques to Improve Precise Cell InjectionWalter Linzenbold, Andreas Fech, Manuela Hofmann, et al.
Neurourology and Urodynamics|December 25, 2019
A novel waterjet technology for transurethral cystoscopic injection of viable cells in the urethral sphincter complexLuise Jäger, Walter Linzenbold, Andreas Fech, et al.
Biomedicines|December 30, 2025
A Novel Technology for Needle-Free Injections of Liquids, Particles and Viable Cells into the Submucosa of the Urethra by a Pressure-Controlled Waterjet TechnologyNiklas Harland, Andreas Fech, Walter Linzenbold, et al.
BJU International|September 17, 2020
Rapid and precise delivery of cells in the urethral sphincter complex by a novel needle-free waterjet technologyWalter Linzenbold, Luise Jäger, Hartmut Stoll, et al.
Scientific Reports|October 9, 2020
Hydrojet-based delivery of footprint-free iPSC-derived cardiomyocytes into porcine myocardiumMarbod Weber, Andreas Fech, Luise Jäger, et al.
Pageof 1