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3D RECONSTRUCTION WITH HANDHELD STRUCTURED LIGHT SCANNER
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References26
. BLIŠġAN, P. - KOVANIý,ď. Jr.: Geodetic methods for efficient spatial data collection. In: EGRSE. Vol. 19, no. 1 (2012), p. 1-12.
. Dziubek A. „Skaner 3D na bazie strukturalnego oświetlenia.” Wrocław, 2009.
. GIGLI, G. - CASAGLI, N.: Extraction of rock mass structural data from high resolution laser scanning products. In: Landslide Science and Practice: Spatial Analysis and Modelling. Vol, 2013, Pages 89-94
. H. T. Nguyen, T. M. Fernandez-Steeger, T. Wiatr, D. Rodrigues, R. Azzam: Use of terrestrial laser scanning for engineering geological applications on volcanic rock slopes – an example from Madeira island (Portugal), Nat. Hazards Earth Syst. Sci., 11, 807– 817, 2011
. Jaboyedoff, M., Thierry O.,Antonio A.,Marc-Henri D.,Alex L.,Richard, M.,Andrea P. (2010). Use of LiDAR in Landslide Investigations: A Review.Natural Hazards DOI: 10.1007/s11069-010-9634-2
. K. Januszkiewicz, Szablowska-Gnab E., Dąbrowska J., Supporting tool for the investigation process by playing back appearance of the crime scene, and the course of events; poster presentation The 2nd INTERPOL-Europol Cybercrime Conference, 2014.
. Xiaolan Li, Jie Feng, Hongbin Zha: 3D modeling of Geological Fosils and Ores by combining high-resolution textures with 3d scanning data; Natural Laboratory on Machine Perception, Peking University, 2010.
. Mantis Vision Ltd. F5 3D Imaging System User Manual. .
. Płatek P., „Inżynieria odwrotna, pomiar i geometryczne odwzorowanie powierzchni swobodnych. Urządzenia pomiarowe i oprogramowanie do obróbki chmury punktów.” 2012.
. White, P. D. and Jones, R. R.: A cost-efficient solution to true color terrestrial laser scanning, Geosphere, 4, 564 –575, DOI: 10.1130/GES00155.1, 2008
. Wrona M.Close range surveying with NIR handheld scanner. INTERNATIONAL MULTIDISCIPLINARY SCIENTIFIC GEOCONFERENCES, 17-26 June, 2014, Bulgaria, 14th GeoConference on INFORMATICS, GEOINFORMATICS AND REMOTE SENSING, Conference Proceedings, Volume II, GEODESY & MINE SURVEYING, ISBN 978-619 - 7105-11-7/ISSN 1314-2704, DOI: 10.5593/SGEM2014/B22/S9.016, pp. 121-127
. Wrona M. Using optical NIR handheld scanner for close range 3d mapping. 9th International Conference “Environmental Engineering”, 22–23 May 2014, Vilnius, Lithuania, SELECTED PAPERS, eISSN 2029-7092 / eISBN 978- 609-457-640-9, DOI: 10.3846/enviro.2014.253
. Wrona M., Piotrwska W., Nowe metody skanowania 3d na potrzeby inwentaryzacji geometrycznej pojazdów, Technika Transportu Szynowego, 2015 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
. BLIŠġAN, P. - KOVANIý,ď. Jr.: Geodetic methods for efficient spatial data collection. In: EGRSE. Vol. 19, no. 1 (2012), p. 1-12.
. Dziubek A. „Skaner 3D na bazie strukturalnego oświetlenia.” Wrocław, 2009.
. GIGLI, G. - CASAGLI, N.: Extraction of rock mass structural data from high resolution laser scanning products. In: Landslide Science and Practice: Spatial Analysis and Modelling. Vol, 2013, Pages 89-94
. H. T. Nguyen, T. M. Fernandez-Steeger, T. Wiatr, D. Rodrigues, R. Azzam: Use of terrestrial laser scanning for engineering geological applications on volcanic rock slopes – an example from Madeira island (Portugal), Nat. Hazards Earth Syst. Sci., 11, 807– 817, 2011
. Jaboyedoff, M., Thierry O.,Antonio A.,Marc-Henri D.,Alex L.,Richard, M.,Andrea P. (2010). Use of LiDAR in Landslide Investigations: A Review.Natural Hazards DOI: 10.1007/s11069-010-9634-2
. K. Januszkiewicz, Szablowska-Gnab E., Dąbrowska J., Supporting tool for the investigation process by playing back appearance of the crime scene, and the course of events; poster presentation The 2nd INTERPOL-Europol Cybercrime Conference, 2014.
. Xiaolan Li, Jie Feng, Hongbin Zha: 3D modeling of Geological Fosils and Ores by combining high-resolution textures with 3d scanning data; Natural Laboratory on Machine Perception, Peking University, 2010.
. Mantis Vision Ltd. F5 3D Imaging System User Manual. .
. Płatek P., „Inżynieria odwrotna, pomiar i geometryczne odwzorowanie powierzchni swobodnych. Urządzenia pomiarowe i oprogramowanie do obróbki chmury punktów.” 2012.
. White, P. D. and Jones, R. R.: A cost-efficient solution to true color terrestrial laser scanning, Geosphere, 4, 564 –575, DOI: 10.1130/GES00155.1, 2008
. Wrona M.Close range surveying with NIR handheld scanner. INTERNATIONAL MULTIDISCIPLINARY SCIENTIFIC GEOCONFERENCES, 17-26 June, 2014, Bulgaria, 14th GeoConference on INFORMATICS, GEOINFORMATICS AND REMOTE SENSING, Conference Proceedings, Volume II, GEODESY & MINE SURVEYING, ISBN 978-619 - 7105-11-7/ISSN 1314-2704, DOI: 10.5593/SGEM2014/B22/S9.016, pp. 121-127
. Wrona M. Using optical NIR handheld scanner for close range 3d mapping. 9th International Conference “Environmental Engineering”, 22–23 May 2014, Vilnius, Lithuania, SELECTED PAPERS, eISSN 2029-7092 / eISBN 978- 609-457-640-9, DOI: 10.3846/enviro.2014.253
. Wrona M., Piotrwska W., Nowe metody skanowania 3d na potrzeby inwentaryzacji geometrycznej pojazdów, Technika Transportu Szynowego, 2015 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
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