Scherb, David

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Postal adress:
Martensstraße 9 91058 Erlangen Location: Fürther Straße 246c 90429 Nürnberg (AEG-Gelände) |
Main Research Topics
- Design of passive, structure-optimized orthotics
- Integration of model order reduced FE-models into the human musculoskeletal simulation
- Patient-specific human modeling
- Simulative estimation of muscle function as a result of revision arthroplasty
Publications
2023
Evidence for the Applicability of Musculoskeletal Human Models to Improve Outcomes of Total Hip Arthroplasty
In: Tavares, João Manuel R. S.; Bourauel, Christoph; Geris, Liesbet; Vander Slote, Jos (ed.): Computer Methods, Imaging and Visualization in Biomechanics and Biomedical Engineering II, Cham: Springer International Publishing, 2023, p. 194-207 (Lecture Notes in Computational Vision and Biomechanics, Vol.38)
ISBN: 9783031100147
DOI: 10.1007/978-3-031-10015-4_17
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Modelling the interaction between wearable assistive devices and digital human models—A systematic review
In: Frontiers in Bioengineering and Biotechnology 10 (2023)
ISSN: 2296-4185
DOI: 10.3389/fbioe.2022.1044275
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Design and Additive Manufacturing of a Passive Ankle–Foot Orthosis Incorporating Material Characterization for Fiber-Reinforced PETG-CF15
In: Materials 16 (2023), p. 3503
ISSN: 1996-1944
DOI: 10.3390/ma16093503
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2022
Integration of musculoskeletal and model order reduced FE simulation for passive ankle foot orthosis design
27th Congress of the European Society of Biomechanics (Porto, 26. June 2022 - 29. June 2022)
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Synthesis of passive lightweight orthoses considering humanmachine interaction
33rd Symposium Design for X (Hamburg, 22. September 2022 - 23. September 2022)
In: Dieter Krause; Kristin Paetzold; Sandro Wartzack (ed.): DS 119: Proceedings of the 33rd Symposium Design for X (DFX2022), Hamburg: 2022
DOI: 10.35199/dfx2022.11
URL: https://www.designsociety.org/publication/45917/Synthesis+of+passive+lightweight+orthoses+considering+humanmachine+interaction
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Proactive Integration of User Data into Engineering Processes - A Generic Approach and Specific Examples
In: Vincent G. Duffy, Mark Lehto, Yuehwern Yih, Robert W. Proctor (ed.): Human-Automation Interaction. Manufacturing, Services and User Experience, Cham: Springer, 2022, p. 337-352 (Automation, Collaboration, & E-Services, Vol.10)
ISBN: 978-3-031-10779-5
DOI: 10.1007/978-3-031-10780-1_18
URL: https://link.springer.com/chapter/10.1007/978-3-031-10780-1_18
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2021
Segmentation of musculotendinous structures of the hip from 3d imaging for patient-specific individualization of biomechanical simulations
3rd International Conference on Human Interaction and Emerging Technologies: Future Applications, IHIET 2020 (Paris, 27. August 2020 - 29. August 2020)
In: Tareq Ahram, Redha Taiar, Karine Langlois, Arnaud Choplin (ed.): Advances in Intelligent Systems and Computing 2021
DOI: 10.1007/978-3-030-55307-4_50
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Patient-Specific Modelling for Preoperative Estimation of Hip Mechanics for Improved Planning of Total Hip Endoprosthesis Using Multibody Simulations
International Conference on Emerging Technologies and Future Systems V (Paris, 27. August 2021 - 29. August 2021)
DOI: 10.1007/978-3-030-85540-6_140
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KTmfk gewinnt Ingenieure ohne Grenzen Challenge 2021
In: WiGeP News (2021), p. 19
ISSN: 1613-5504
Open Access: http://www.wigep.de/fileadmin/download/wigep/WiGeP_News_1_2021.pdf
URL: https://www.archiv.mfk.tf.fau.de?file=pubmfk_60d2e144098d9
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2020
Femoral Shape and Size Variability from segmented CT datasets for patient-specific THA planning
In: Current Directions in Biomedical Engineering 6 (2020), p. 486-488
ISSN: 2364-5504
DOI: 10.1515/cdbme-2020-3125
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Patientenspezifische Modellierung des passiven Bewegungsapparates als Grundlage für die präoperative Abschätzung postoperativer Folgeerscheinungen des endoprothetischen Hüftgelenkersatzes
31st Symposium Design for X (DFX2020) (Virtuell, 16. September 2020 - 17. September 2020)
In: Dieter Krause; Kristin Paetzold; Sandro Wartzack (ed.): Proceedings of the 31st Symposium Design for X (DFX2020) 2020
DOI: 10.35199/dfx2020.1
URL: https://www.designsociety.org/publication/43019/Patientenspezifische+Modellierung+des+passiven+Bewegungsapparates+als+Grundlage+für+die+präoperative+Abschätzung+postoperativer+Folgeerscheinungen+des+endoprothetischen+Hüftgelenkersatzes
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