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Tobias Flath
Tobias Flath
Other namesT. Flath, Flath, Tobias, Flath, T.
Hochschule für Technik, Wirtschaft und Kultur Leipzig
Verified email at htwk-leipzig.de
Title
Cited by
Cited by
Year
Indirect rapid prototyping of sol-gel hybrid glass scaffolds for bone regeneration–effects of organic crosslinker valence, content and molecular weight on mechanical properties
S Hendrikx, C Kascholke, T Flath, D Schumann, M Gressenbuch, ...
Acta biomaterialia 35, 318-329, 2016
282016
Biodegradable and adjustable sol-gel glass based hybrid scaffolds from multi-armed oligomeric building blocks
C Kascholke, S Hendrikx, T Flath, D Kuzmenka, HM Dörfler, D Schumann, ...
Acta biomaterialia 63, 336-349, 2017
222017
3D-printed poly-ε-caprolactone-CaCO3-biocompositescaffolds for hard tissue regeneration.
R Neumann, J Neunzehn, C Hinueber, T Flath, FP Schulze, ...
eXPRESS Polymer Letters 13 (1), 2019
182019
Sustained calcium (II)-release to impart bioactivity in hybrid glass scaffolds for bone tissue engineering
D Kuzmenka, C Sewohl, A König, T Flath, S Hahnel, FP Schulze, ...
Pharmaceutics 12 (12), 1192, 2020
162020
Extrusion-printing of multi-channeled two-component hydrogel constructs from gelatinous peptides and anhydride-containing oligomers
J Krieghoff, J Rost, C Kohn-Polster, BM Müller, A Koenig, T Flath, ...
Biomedicines 9 (4), 370, 2021
102021
Effects of curing and organic content on bioactivity and mechanical properties of hybrid sol–gel glass scaffolds made by indirect rapid prototyping
S Hendrikx, D Kuzmenka, R Köferstein, T Flath, H Uhlig, D Enke, ...
Journal of Sol-Gel Science and Technology 83 (1), 143-154, 2017
82017
Entwicklung eines Doppelschneckenextruder-Dosierkopfes für den 3D-Druck und dessen Potenzial am Beispiel von Knochenersatzwerkstoffen
T Flath
Technische Universität Dresden, 2020
12020
Erforschung neuartiger multimaterialer 3D-Druck-Verfahren zur Integration von Temperatur-und Drucksensorik in Dichtungen
F Strakosch, T Flath, P Kollascheck, F Derbel, FP Schulze, H Nagel, ...
2023
Erforschung neuartiger mutlimaterialer3D-Druck-Verfahren zur Integration von Temperatur-und Drucksensorik in Dichtungen
S Simon, F Strakosch, T Flath, FP Schulze, I Reinhold, F Derbel, H Nagel, ...
2023
Das Potenzial 3D-gedruckter Gradientenwerkstoffe für pharmazeutische Applikationen
T Flath, A Springwald, M Schulz-Siegmund, MC Hacker, P Schulze
2019
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Articles 1–10