Sembdner, Philipp
Research Associate
NameMr Dr.-Ing. Philipp Sembdner
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Chair of Virtual Product Development
Chair of Virtual Product Development
Visitor address:
Zeuner-Bau, 216 George-Bähr-Straße 3c
01069 Dresden
Philipp Sembdner studied mechanical engineering at the TU Dresden from 2003 to 2009, specialising in "general and constructive mechanical engineering". During his internship at Koenig & Bauer AG Planeta in Radebeul, he was jointly responsible for the modelling of purchased and standard parts. In his diploma thesis he dealt with the topic of linking complex and heterogeneous assembly models in VR.
Since completing his studies, he has been working as a research assistant at the chair in the area of Reverse Engineering. In 2017, he completed his doctorate on the topic of computer-aided planning and reconstruction for individual long-term bone implants using the mandible as an example („Rechnergestützte Planung und Rekonstruktion für individuelle Langzeit-Knochenimplantate am Beispiel des Unterkiefers“).
His work focuses on developing effective methods and software tools for planning, designing and manufacturing individual medical devices. In particular, the improvement of processes of interdisciplinary cooperation between physicians, designers and technicians, among others, is the focus of his research activities in order to ultimately accelerate the development process of individual medical devices and thus strengthen the acceptance of individual care.
2021
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Proposal for an adaptive bone screw design based on FEA studies exemplified by pedicle screw , 2021, 47th Design Automation Conference (DAC). The American Society of Mechanical Engineers(ASME), V03AT03A008Electronic (full-text) versionResearch output: Contribution to book/conference proceedings/anthology/report > Conference contribution
2020
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3D Printing of Bone Grafts for Cleft Alveolar Osteoplasty – In vivo Evaluation in a Preclinical Model , 25 Mar 2020, In: Frontiers in bioengineering and biotechnology. 8, 217Electronic (full-text) versionResearch output: Contribution to journal > Research article
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Adjustment of locally resolved pore sizes for extrusion printing of biomaterials , 2020, Fraunhofer Direct Digital Manufacturing Conference (DDMC)Research output: Contribution to book/conference proceedings/anthology/report > Conference contribution
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Digitales parametrisches Modell eines Knieimplantats zur patientenindividuellen Anpassung , 2020, In: Zeitschrift für Orthopädie und Unfallchirurgie. 158, 01, p. 148Research output: Contribution to journal > Meeting abstract
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Image-based individual design and additive manufacturing of osteochondral bone tissue substitutes , 2020Research output: Contribution to conferences > Poster
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Konstruktion eines individuellen Knieimplantates für die Fertigung mittels EBM , 2020, Konstruktion für die Additive Fertigung 2019 (KfAF). Springer VerlagElectronic (full-text) versionResearch output: Contribution to book/conference proceedings/anthology/report > Chapter in book/Anthology/Report
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Workflow for planning, design and additive manufacturing of individual scaffold-like bone replacement structures in maxillofacial surgery , 2020, International Journal of Computer Assisted Radiology and Surgery. 1 ed., Vol. 15. p. 136-138Electronic (full-text) versionResearch output: Contribution to book/conference proceedings/anthology/report > Conference contribution
2019
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A proposal for digital imaging and communication in product engineering using CT data , 2019, 24th Design for Manufacturing and the Life Cycle Conference; 13th International Conference on Micro- and Nanosystems. The American Society of Mechanical Engineers(ASME)Electronic (full-text) versionResearch output: Contribution to book/conference proceedings/anthology/report > Conference contribution
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Design of a parametric knee implant model based on Active Shape Model output data for individualized knee implants , 2019, International Journal of Computer Assisted Radiology and Surgery. 1 ed., Vol. 14. p. 149-150Research output: Contribution to book/conference proceedings/anthology/report > Conference contribution
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Design of a parametric knee implant model for patient-individualized adaption based on Active Shape Model output data , 2019, International Conference on Innovative Technologies 2019 (IN-TECH)Research output: Contribution to book/conference proceedings/anthology/report > Chapter in book/Anthology/Report