Publication

Here you will find publications in which SPI-MP was involved.

Eyberg C, Shiravand A, Klemm P, Horsch J, Cattaneo G, Langejürgen J (2024) A Feasibility Study of Fluoroscopy-based Catheter Modeling. Current Directions in Biomedical Engineering 2024;10(1): 13-16. https://doi.org/10.1515/cdbme-2024-1004.

Kurth D, Ristok S, Rühle S, Verl A, Giessen H (2023) Multi-axis two photon polymerization machine and software concept for the manufacturing of aspheric lenses on non-planar substrates. Procedia CIRP 118, 682–687. https://doi.org/10.1016/j.procir.2023.06.117.

Kurth D, Verl A (2023) Kinematic multi-axis two-photon polymerization printer concept for the manufacturing of micro optics, in: Narendran N, Mills ST, Rao G (eds.) 3D Printing for Lighting, p. 13: SPIE. https://doi.org/10.1117/12.2675889.

Jäkel AC, Heymann M, Simmel FC (2023) Multiscale Biofabrication: Integrating Additive Manufacturing with DNA-Programmable Self-Assembly. Advanced biology 7(3), e2200195. https://doi.org/10.1002/adbi.202200195.

Grübel J, Wendlandt T, Urban D, Jauch CO, Wege C, Tovar GEM and Southan A (2023). Soft Sub-Structured Multi-Material Biosensor Hydrogels with Enzymes Retained by Plant Viral Scaffolds. Macromol. Biosci. 2024, 24. https://doi.org/10.1002/mabi.202300311.

Bauernhansl T, Mais F, Schrader P, Gross E, Briem AK, Dangelmaier M, Hildebrandt N, Krieg S, Ulmer J. Herausforderungen der personalisierten Produktion: Expert*innen-Befragungen zum Stand der Personalisierung in der DACH-Region. Wt online 4/2023. 

Wolperdinger M, Mais F, Gross E, Schrader P, Gramberg T, Nebauer S, Briem AK, Dangelmaier M, Hildebrandt N, Krieg S, Storz A, Ulmer J. Mass Personalization: Strategischer Einsatz und Trends: Online-Umfrage zur strategischen Nutzung der Personalisierung in der DACH-Region. Wt-online 12/2023.

Dangelmaier M, Briem AK, Bauernhansl T, Groß E, Krieg S. Einstieg in die Mass Personalization: Perspektiven für Entscheider. Kindle Ausgabe.

Peter A, Onuseit V, Graf T (2022) Three-dimensional beam shaping by means of a spatial phase modulator for two-photon-polymerization. Procedia CIRP 111, 261–265. https://doi.org/10.1016/j.procir.2022.08.063.

Wulle F, Gorke O, Schmidt S, Nistler M, Tovar GEM, Riedel O, Verl A, Weber A, Southan A (2022) Multi-axis 3D printing of gelatin methacryloyl hydrogels on a non-planar surface obtained from magnetic resonance imaging. Additive Manufacturing 50, https://doi.org/10.1016/j.addma.2021.102566.

Vassallo V, Tsianaka A, Alessio N, Grübel J, Cammarota M, Tovar GEM, Southan A, Schiraldi C (2022) Evaluation of novel biomaterials for cartilage regeneration based on gelatin methacryloyl interpenetrated with extractive chondroitin sulfate or unsulfated biotechnological chondroitin. Journal of biomedical materials research. Part A 110(6), 1210–1223. https://doi.org/10.1002/jbm.a.37364.

Waldhof M , Wochner I , Stollenmaier K, Parspour N and Schmitt S (2022) Design and Scaling of Exoskeleton Power Units Considering Load Cycles of Humans Robotics 2022, 11(5), 107; https://doi.org/10.3390/robotics11050107.

 

Erben A, Hörning M, Hartmann B, Becke T, Eisler SA, Southan A, Cranz S, Hayden O, Kneidinger N, Königshoff, M, Lindner M, Tovar GEM, Burgstaller G, Clausen-Schaumann H, Sudhop S, Heymann M (2020) Precision 3D-printed cell scaffolds mimicking native tissue composition and mechanics Advanced Healthcare Materials, 2000918, 1-15. https://doi.org/10.1002/adhm.202000918.

Wulle F, Richter M, Hinze C, Verl A (2021) Time-optimal Path Planning of Multi-axis CNC Processes Using Variability of Orientation. Procedia CIRP 96, 324–329. https://doi.org/10.1016/j.procir.2021.01.095.

Rebers L, Reichsöllner R, Regett S, Tovar GEM, Borchers K, Baudis S, Southan A (2021) Differentiation of physical and chemical cross-linking in gelatin methacryloyl hydrogels. Scientific reports 11(1), 3256. https://doi.org/10.1038/s41598-021-82393-z

Reiff, M. Buser, T. Betten, V. Onuseit, M. Hoßfeld, D. Wehner, O. Riedel (2021) A Process-Planning Framework for Sustainable Manufacturing, Energies 2021, 14, 8511, https://doi.org/10.3390/en14185811.

Erben A, Hörning M, Hartmann B, Becke T, Eisler SA, Southan A, Cranz S, Hayden O, Kneidinger N, Königshoff, M, Lindner M, Tovar GEM, Burgstaller G, Clausen-Schaumann H, Sudhop S, Heymann M (2020) Precision 3D-printed cell scaffolds mimicking native tissue composition and mechanics Advanced Healthcare Materials, 2000918, 1-15. https://doi.org/10.1002/adhm.202000918.

Wolf M, Elser A, Riedel O, Verl A (2020) A software architecture for a multi-axis additive manufacturing path-planning tool. Procedia CIRP 88, 433–438. https://doi.org/10.1016/j.procir.2020.05.075.

Claaßen C, Rebers L, Claaßen MH, Borchers K, Tovar GEM, Southan A (2019) Expanding the Range of Available Isoelectric Points of Highly Methacryloylated Gelatin. Macromol. Chem. Phys. 220(14), 1900097. https://doi.org/10.1002/macp.201900097.

Rebers L, Granse T, Tovar GEM, Southan A, Borchers K (2019) Physical Interactions Strengthen Chemical Gelatin Methacryloyl Gels. Gels (Basel, Switzerland) 5(1). https://doi.org/10.3390/gels5010004.

C.Reiff, F. Wulle, F. Streig, O. Riedel (2019) Model for the Client-Oriented Selection of Additive Manufacturing Infrastructure based on Information gathered from Production Networks. Procedia CIRP Vol. 84, 2019, 322-327, https://doi.org/10.1016/j.procir.2019.04.208.

Claaßen C, Claaßen MH, Truffault V, Sewald L, Tovar GEM, Borchers K, Southan A (2018) Quantification of Substitution of Gelatin Methacryloyl: Best Practice and Current Pitfalls. Biomacromolecules 19(1), 42–52. https://doi.org/10.1021/acs.biomac.7b01221.

Sewald L, Claaßen C, Götz T, Claaßen MH, Truffault V, Tovar GEM, Southan A, Borchers K (2018) Beyond the Modification Degree: Impact of Raw Material on Physicochemical Properties of Gelatin Type A and Type B Methacryloyls. Macromolecular bioscience 18(12), e1800168. https://doi.org/10.1002/mabi.201800168

Claaßen C, Claaßen MH, Gohl F, Tovar GEM, Borchers K, Southan A (2018) Photoinduced Cleavage and Hydrolysis of o-Nitrobenzyl Linker and Covalent Linker Immobilization in Gelatin Methacryloyl Hydrogels. Macromolecular bioscience 18(9), e1800104. https://doi.org/10.1002/mabi.201800104.

Southan, A., Lang, T., Schweikert, M., Tovar, G. E. M., Wege, C. & Eiben, S. (2018). Covalent incorporation of tobacco mosaic virus increases the stiffness of poly(ethyleneglycol) diacrylate hydrogels. RSC Advances 8, 4686-4694. https://doi.org/10.1039/C7RA10364F.

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