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[Vanessa Klein]

Vanessa Klein

Dr.-Ing., Research Associate
email
office 01.113-128
office hrs upon request
address       Institute for Digital Reality
Dept of Computer Science
FAU Erlangen-Nürnberg
Cauerstraße 11
91058 Erlangen, Germany

Short Bio

Vanessa Klein is a Research Associate at the chair of Digital Reality. She studied computer science at FAU from 2011 to 2016. Afterwards she did her PhD on Projection-Mapping-based 3D Painting in 2022. Her research interests include projection mapping, projector-camera systems, extended reality, 3D reconstruction, and cultural heritage.

Science Communication

Vanessa Klein regularly presents the current state of her research through talks and demos at The Long Night of the Sciences ("Die Lange Nacht der Wissenschaften") or through media projects like 2 Minuten Wissen. She is committed to encouraging and promoting a technical and/or research career for students and, as a women’s representative, engages in the empowerment of women in science.

Teaching

In 2012, Vanessa Klein started working as a Teaching Assistant for the lecture "Fundamentals of Computer Science" where she developed a passion for teaching. As a doctoral student, she later took charge of the exercises and lectured for the course until 2022; she also gave presentations on interactive teaching techniques for programming courses, e.g., at “Tag der Lehre” (Day of Teaching). Since 2022 she is managing and designing the exercises for the course “Fundamentals of Programming&rquo; and “Computational Photography and Capture”.

Citation Style:    Recent Publications

[Projection-Mapping-based 3D Painting]
2022
Projection-Mapping-based 3D Painting.
Vanessa Klein.
Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), 2022.
Vanessa Klein. Projection-Mapping-based 3D Painting. PhD thesis, Friedrich-Alexander-Universität Erlangen-Nürnberg, 2022.Klein, V. 2022. Projection-Mapping-based 3D Painting. PhD thesis, Friedrich-Alexander-Universität Erlangen-Nürnberg.V. Klein, “Projection-Mapping-based 3D Painting,” Ph.D. dissertation, Friedrich-Alexander-Universität Erlangen-Nürnberg, 2022. [Online]. Available: https://nbn-resolving.org/urn:nbn:de:bvb:29-opus4-199921
[Web Page][BibTeX]
[Robust Marker-based Projector-Camera Synchronization]
2021
Robust Marker-based Projector-Camera Synchronization.
Vanessa Klein, Martin Edel, Marc Stamminger, Frank Bauer.
Graphics and Visual Computing, Vol. 5, 2021.
Vanessa Klein, Martin Edel, Marc Stamminger, and Frank Bauer. Robust marker-based projector-camera synchronization. Graphics and Visual Computing, 5:200034, 2021.Klein, V., Edel, M., Stamminger, M., and Bauer, F. 2021. Robust marker-based projector-camera synchronization.Graphics and Visual Computing 5, 200034.V. Klein, M. Edel, M. Stamminger, and F. Bauer, “Robust marker-based projector-camera synchronization,” Graphics and Visual Computing, vol. 5, p. 200034, 2021. [Online]. Available: https: //www.sciencedirect.com/science/article/pii/S2666629421000164
[Web Page][PDF (1.5 MB)][BibTeX][DOI]
[Scan&Paint: Image-based Projection Painting]
Scan&Paint: Image-based Projection Painting.
Vanessa Klein, Markus Leuschner, Tobias Langen, Philipp Kurth, Marc Stamminger, Frank Bauer.
2021 IEEE International Symposium on Mixed and Augmented Reality (ISMAR), 2021, pp. 517-525.
Vanessa Klein, Markus Leuschner, Tobias Langen, Philipp Kurth, Marc Stamminger, and Frank Bauer. Scan&Paint: Image-based projection painting. In 2021 IEEE International Symposium on Mixed and Augmented Reality (ISMAR), pages 517–525, 2021.Klein, V., Leuschner, M., Langen, T., Kurth, P., Stamminger, M., and Bauer, F. 2021. Scan&Paint: Image-based projection painting. In 2021 IEEE International Symposium on Mixed and Augmented Reality (ISMAR), 517–525.V. Klein, M. Leuschner, T. Langen, P. Kurth, M. Stamminger, and F. Bauer, “Scan&Paint: Image-based projection painting,” in 2021 IEEE International Symposium on Mixed and Augmented Reality (ISMAR), 2021, pp. 517–525.
[Web Page][PDF (10 MB)][Low-res PDF (3.2 MB)][Presentation (YouTube)][Demo Video][Video (German)][BibTeX][DOI]
[Projection Mapping for In-Situ Surgery Planning by the Example of DIEP Flap Breast Reconstruction]
Projection Mapping for In-Situ Surgery Planning by the Example of DIEP Flap Breast Reconstruction.
Jana Martschinke, Vanessa Klein, Philipp Kurth, Klaus Engel, Ingo Ludolph, Theresa Hauck, Raymund Horch, Marc Stamminger.
VCBM 2021: Eurographics Workshop on Visual Computing for Biology and Medicine, 2021.
Jana Martschinke, Vanessa Klein, Philipp Kurth, Klaus Engel, Ingo Ludolph, Theresa Hauck, Raymund Horch, and Marc Stamminger. Projection mapping for in-situ surgery planning by the example of diep flap breast reconstruction. In Steffen Oeltze-Jafra, Noeska N. Smit, Björn Sommer, Kay Nieselt, and Thomas Schultz, editors, Eurographics Workshop on Visual Computing for Biology and Medicine. The Eurographics Association, 2021.Martschinke, J., Klein, V., Kurth, P., Engel, K., Ludolph, I., Hauck, T., Horch, R., and Stamminger, M. 2021. Projection mapping for in-situ surgery planning by the example of diep flap breast reconstruction. In Eurographics Workshop on Visual Computing for Biology and Medicine, The Eurographics Association, S. Oeltze-Jafra, N. N. Smit, B. Sommer, K. Nieselt, and T. Schultz, Eds.J. Martschinke, V. Klein, P. Kurth, K. Engel, I. Ludolph, T. Hauck, R. Horch, and M. Stamminger, “Projection mapping for in-situ surgery planning by the example of diep flap breast reconstruction,” in Eurographics Workshop on Visual Computing for Biology and Medicine, S. Oeltze-Jafra, N. N. Smit, B. Sommer, K. Nieselt, and T. Schultz, Eds. The Eurographics Association, 2021.
[Web Page][PDF (13 MB)][Low-res PDF (1.9 MB)][Video][BibTeX][DOI]
[Real-Time Adaptive Color Correction in Dynamic Projection Mapping]
2020
Real-Time Adaptive Color Correction in Dynamic Projection Mapping.
Philipp Kurth, Vanessa Klein, Marc Stamminger, Frank Bauer.
2020 IEEE International Symposium on Mixed and Augmented Reality (ISMAR), pp. 174-184, 2020.

[Web Page][Video][BibTeX]
[Proxy Painting: Digital Colorization of Real-world Objects]
Proxy Painting: Digital Colorization of Real-world Objects.
Vanessa Lange, Philipp Kurth, Benjamin Keinert, Martin Boß, Marc Stamminger, Frank Bauer.
Journal on Computing and Cultural Heritage, Vol. 5, 2020.
Vanessa Lange, Philipp Kurth, Benjamin Keinert, Martin Boß, Marc Stamminger, and Frank Bauer. Proxy Painting: Digital Colorization of Real-world Objects. Journal of Computing and Cultural Heritage, 13, 2020.Lange, V., Kurth, P., Keinert, B., Boß, M., Stamminger, M., and Bauer, F. 2020. Proxy Painting: Digital Colorization of Real-world Objects. Journal of Computing and Cultural Heritage 13.V. Lange, P. Kurth, B. Keinert, M. Boß, M. Stamminger, and F. Bauer, “Proxy Painting: Digital Colorization of Real-world Objects,” Journal of Computing and Cultural Heritage, vol. 13, 2020. [Online]. Available: https://www.lgdv.tf.fau.de/?p=2264
[Web Page][Video][BibTeX]
[Proxy Painting]
2018
Proxy Painting.
Vanessa Lange, Philipp Kurth, Benjamin Keinert, Martin Boß, Marc Stamminger, Frank Bauer.
Eurographics Workshop on Graphics and Cultural Heritage (GCH), 2018.
Vanessa Lange, Philipp Kurth, Benjamin Keinert, Martin Boß, Marc Stamminger, and Frank Bauer. Proxy Painting. In Wimmer Michael Sablatnig Robert, editor, Eurographics Workshop on Graphics and Cultural Heritage, pages 97–104. The Eurographics Association, 2018.Lange, V., Kurth, P., Keinert, B., Boß, M., Stamminger, M., and Bauer, F. 2018. Proxy Painting. In Eurographics Workshop on Graphics and Cultural Heritage, The Eurographics Association, W. M. Sablatnig Robert, Ed., 97–104.V. Lange, P. Kurth, B. Keinert, M. Boß, M. Stamminger, and F. Bauer, “Proxy Painting,” in Eurographics Workshop on Graphics and Cultural Heritage, W. M. Sablatnig Robert, Ed. The Eurographics Association, 2018, pp. 97–104. [Online]. Available: https://www.lgdv.tf.fau.de/?p=2264
[Web Page][Video][BibTeX]
[Auto-Calibration for Dynamic Multi-Projection Mapping on Arbitrary Surfaces]
Auto-Calibration for Dynamic Multi-Projection Mapping on Arbitrary Surfaces.
Philipp Kurth, Vanessa Lange, Christian Siegl, Marc Stamminger, Frank Bauer.
IEEE Transactions on Visualization and Computer Graphics, Vol. 24, pp. 2886-2894, 2018.
Philipp Kurth, Vanessa Lange, Christian Siegl, Marc Stamminger, and Frank Bauer. Auto-Calibration for Dynamic Multi-Projection Mapping on Arbitrary Surfaces. IEEE Transactions on Visualization and Computer Graphics, 24:2886–2894, 2018.Kurth, P., Lange, V., Siegl, C., Stamminger, M., and Bauer, F. 2018. Auto-Calibration for Dynamic Multi-Projection Mapping on Arbitrary Surfaces. IEEE Transactions on Visualization and Computer Graphics 24, 2886–2894.P. Kurth, V. Lange, C. Siegl, M. Stamminger, and F. Bauer, “Auto-Calibration for Dynamic Multi-Projection Mapping on Arbitrary Surfaces,” IEEE Transactions on Visualization and Computer Graphics, vol. 24, pp. 2886–2894, 2018.
[Web Page][Video][BibTeX]
[FaceForge: Markerless Non-Rigid Face Multi-Projection Mapping]
2017
FaceForge: Markerless Non-Rigid Face Multi-Projection Mapping.
Christian Siegl, Vanessa Lange, Marc Stamminger, Frank Bauer, Justus Thies.
IEEE Transactions on Visualization and Computer Graphics, Vol. 23, 2017, pp. 2440-2446.
Christian Siegl, Vanessa Lange, Marc Stamminger, Frank Bauer, and Justus Thies. FaceForge: Markerless Non-Rigid Face Multi-Projection Mapping.IEEE Transactions on Visualization and Computer Graphics, PP, 2017.Siegl, C., Lange, V., Stamminger, M., Bauer, F., and Thies, J. 2017. FaceForge: Markerless Non-Rigid Face Multi-Projection Mapping. IEEE Transactions on Visualization and Computer Graphics PP.C. Siegl, V. Lange, M. Stamminger, F. Bauer, and J. Thies, “FaceForge: Markerless Non-Rigid Face Multi-Projection Mapping,” IEEE Transactions on Visualization and Computer Graphics, vol. PP, 2017.
[Web Page][Video][BibTeX]
[Robust Blending and Occlusion Compensation in Dynamic Multi-Projection Mapping]
Robust Blending and Occlusion Compensation in Dynamic Multi-Projection Mapping.
Vanessa Lange, Christian Siegl, Matteo Colaianni, Marc Stamminger, Frank Bauer.
EG '17: Proceedings of the European Association for Computer Graphics: Short Papers, 2017, pp. 1-4.
Vanessa Lange, Christian Siegl, Matteo Colaianni, Marc Stamminger, and Frank Bauer. Robust Blending and Occlusion Compensation in Dynamic Multi-Projection Mapping. In EG 2017 - Short Papers, volume 1, pages 1–4. The Eurographics Association, 2017.Lange, V., Siegl, C., Colaianni, M., Stamminger, M., and Bauer, F. 2017. Robust Blending and Occlusion Compensation in Dynamic Multi-Projection Mapping. In EG 2017 Short Papers, The Eurographics Association, vol. 1, 1–4.V. Lange, C. Siegl, M. Colaianni, M. Stamminger, and F. Bauer, “Robust Blending and Occlusion Compensation in Dynamic Multi-Projection Mapping,” in EG 2017 - Short Papers, vol. 1. The Eurographics Association, 2017, pp. 1–4.
[Web Page][Video][BibTeX]
[Reality forge: interactive dynamic multi-projection mapping]
2016
Reality forge: interactive dynamic multi-projection mapping.
Christian Siegl, Matteo Colaianni, Vanessa Lange, Marc Stamminger, Frank Bauer.
SA '16: SIGGRAPH ASIA 2016 Emerging Technologies, pp. 12, 2016.
Christian Siegl, Matteo Colaianni, Vanessa Lange, Marc Stamminger, and Frank Bauer. Reality Forge: Interactive Dynamic Multi-Projection Mapping. In ACM SIGGRAPH 2016 Emerging Technologies, pages 10:1–10:2, New York, NY, USA, 2016. ACM.Siegl, C., Colaianni, M., Lange, V., Stamminger, M., and Bauer, F. 2016. Reality Forge: Interactive Dynamic Multi-Projection Mapping. In ACM SIGGRAPH 2016 Emerging Technologies, ACM, New York, NY, USA, 10:1–10:2.C. Siegl, M. Colaianni, V. Lange, M. Stamminger, and F. Bauer, “Reality Forge: Interactive Dynamic Multi-Projection Mapping,” in ACM SIGGRAPH 2016 Emerging Technologies. New York, NY, USA: ACM, 2016, pp. 10:1–10:2.
[Web Page][Video][BibTeX]
[Scan&Paint: Image-based Projection Painting]
Scan&Paint: Image-based Projection Painting.
Vanessa Lange, Christian Siegl, Matteo Colaianni, Philipp Kurth, Marc Stamminger, Frank Bauer.
Augmented Reality, Virtual Reality, and Computer Graphics, pp. 113-125, 2016.
Vanessa Lange, Christian Siegl, Matteo Colaianni, Philipp Kurth, Marc Stamminger, and Frank Bauer. Interactive Painting and Lighting in Dynamic Multi-Projection Mapping. In Springer, editor, International Conference on Augmented Reality, Virtual Reality and Computer Graphics, pages 113–125. Springer, 2016.Lange, V., Siegl, C., Colaianni, M., Kurth, P., Stamminger, M., and Bauer, F. 2016. Interactive Painting and Lighting in Dynamic Multi-Projection Mapping. In International Conference on Augmented Reality, Virtual Reality and Computer Graphics, Springer, Springer, Ed., 113–125.V. Lange, C. Siegl, M. Colaianni, P. Kurth, M. Stamminger, and F. Bauer, “Interactive Painting and Lighting in Dynamic Multi-Projection Mapping,” inInternational Conference on Augmented Reality, Virtual Reality and Computer Graphics, Springer, Ed. Springer, 2016, pp. 113–125.
[Web Page][Video][BibTeX]
[Towards a Better Understanding of the Local Attractor in Particle Swarm Optimization: Speed and Solution Quality]
2014
Towards a Better Understanding of the Local Attractor in Particle Swarm Optimization: Speed and Solution Quality.
Vanessa Lange, Manuel Schmitt, Rolf Wanka.
Part of the Lecture Notes in Computer Science book series (LNAI), Vol. 8779, 2014.
Vanessa Lange, Manuel Schmitt, and Rolf Wanka. Towards a Better Understanding of the Local Attractor in Particle Swarm Optimization: Speed and Solution Quality. In Proc. International Conference on Adaptive and Intelligent Systems (ICAIS), pages 90–99. Springer Verlag, 2014.Lange, V., Schmitt, M., and Wanka, R. 2014. Towards a Better Understanding of the Local Attractor in Particle Swarm Optimization: Speed and Solution Quality. In Proc. International Conference on Adaptive and Intelligent Systems (ICAIS), Springer Verlag, 90–99.V. Lange, M. Schmitt, and R. Wanka, “Towards a Better Understanding of the Local Attractor in Particle Swarm Optimization: Speed and Solution Quality,” in Proc. International Conference on Adaptive and Intelligent Systems (ICAIS). Springer Verlag, 2014, pp. 90–99.
[Web Page][BibTeX]

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