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Single image reconstruction of human faces using database of depth images.

, , , and . VS-GAMES, page 109-116. IEEE Computer Society, (2017)

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Automated Confocal Microscopy: The Way of Achieving both Quality and Quantity in 3D Image Cytometry., , and . ISBI, page 69-72. IEEE, (2004)Multimodal Point Distribution Model for Anthropological Landmark Detection., and . ICIP, page 2986-2990. IEEE, (2019)Applications of Image Registration in Human Genome Research., , and . ECCV Workshops CVAMIA and MMBIA, volume 3117 of Lecture Notes in Computer Science, page 376-384. Springer, (2004)Automated cell segmentation in phase-contrast images based on classification and region growing., , , and . ISBI, page 1447-1451. IEEE, (2015)Acquiarium: Free Software for the Acquisition and Analysis of 3D Images of Cells in Fluorescence Microscopy., , , , and . ISBI, page 1138-1141. IEEE, (2009)High-Resolution Cytometry Network Project: Client/Server System for 3D Optical Microscope Data Storage and Analysis., , , and . 3DPVT, page 580-583. IEEE Computer Society, (2004)High-Resolution Cytometry Network Project: Towards Remote a d Distributed Acquisition, Processing and Visualisation of 3D Image Data in Human Genome Research., , , and . 3DPVT, page 99-106. IEEE Computer Society, (2002)Detecting host factors involved in virus infection by observing the clustering of infected cells in siRNA screening images., , , , , , , , and . Bioinformatics, (2010)Automated Analysis of siRNA Screens of Virus Infected Cells Based on Immunofluorescence Microscopy., , , , , , , and . Bildverarbeitung für die Medizin, page 453-457. Springer, (2008)Automated Multi-view 3D Image Acquisition in Human Genome Research., , , and . 3DPVT, page 91-98. IEEE Computer Society, (2002)