Books and Papers
Luhmann, T. (2023):
Nahbereichsphotogrammetrie – Grundlagen, Methoden, Beispiele. 5. Auflage, Wichmann Verlag, Offenbach/Berlin
, Weblink
Garms, M.; Leiz, M.; Mayer, M. (2023):
Perception of climate change-related forest dieback in mountain forests among the local population. European Journal of Forest Research
, doi: 10.1007/s10342-023-01627-z , Weblink
Luhmann, T. (2023):
Photogrammetrie. Schmitt/Dietrich (eds.): Handbuch Messtechnik in der industriellen Produktion, Carl Hanser Verlag, München
, Weblink
Leiz, M.; Moon, K.; Rehner, L.; Stentzel, U.; Radicke, R.; Hoffmann, W.; van den Berg, N. (2023):
Population-Based, Spatial Analysis of Specialised Ambulatory Palliative Care in Mecklenburg-Western Pomerania, Germany, on the Basis of Reimbursement Data. International Journal of Environmental Research and Public Health (IJERPH)
, doi: 10.3390/ijerph20032231 , Weblink
Presentations
Bethmann, F. :
Multi-image Semi-global Matching in Object Space.
SPIE Conference 9528 „Videometrics, Range Imaging and Applications XIII“, München,
Juni 2015
Lorkowski, P. :
Towards Real-Time Processing of Massive Spatio-Temporally Distributed Sensor Data: A Sequential Strategy Based on Kriging.
18th AGILE International Conference on Geographic Information Science 2015, Lisbon, Portugal,
Mai 2015
Helle, A. :
Precise Head Tracking in Hearing Applications.
ISPRS WG V/5 and WG III/3 Workshop “Photogrammetric techniques for video surveillance, biometrics and biomedicine”, Moscow, Russia,
Mai 2015
Willemsen, T. :
Precise Laser-based Optical 3D Measurement of Welding Seams under Water.
ISRPS Workshop Underwater 3D Recording and Modeling, Piano di Sorrento, Italy,
April 2015
Bethmann, F. :
Semi-global Matching in Object Space.
Photogrammetric Image Analysis (PIA15), München,
März 2015
Projects
The project focusses on the conception and implementation of the geometric monitoring of the Bremen Cog (appr. 25m x 8m x 8m). The Bremen Cog is the best preserved medieval merchant ship in the world. A large-volume optical 3D-measurement con...
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This interdisciplinary project aims to develop autonomous underwater and surface vehicles. One subproject focusses on the development of calibration procedures and algorithms for the special challenges of underwater photogrammetry. Another subproject...
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Dieses Forschungsvorhaben befasst sich mit der Entwicklung eines kompakten Prototyps zur hochgenauen berührungslosen 3D-Oberflächenvermessung unter Wasser durch den Einsatz optischer 3D-Messverfahren.
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