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Surround 3-dimensional scanner

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Języki publikacji
EN
Abstrakty
EN
The paper describes original 3-dimensional structured light scanner used for medical application. Scanner kinematics is similar to the gantry mechanism of computed tomography apparatus. The unique feature of the presented scanner is a glass table for capturing image of a human body part. The scanner can acquire an object through the table. It gives the chance for surround scanning of the human body, using only one scanning head, without changing the body position. It is more cost effective scanner solution than multihead scanner configuration.
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autor
  • Cracow University of Technology, Institute of Production Engineering, al. Jana Pawła II nr 37, 31-864 Kraków, Poland
Bibliografia
  • [1] Górski F. et al., Application of close-range photogrammetry in reverse engineering, Proceedings of the 7th International Conference of DAAAM Baltic Industrial Engineering, 1–2, 30–35, 2010.
  • [2] Razak T. et al., Application of 3D Scanning onto Automotive Door Panel for Quality, International Conference on Robotics and Automation Engineering, p. 31–34, 2016.
  • [3] Górski F. et al., Effective Design of Educational Virtual Reality Applications for Medicine using Knowledge-Engineering Techniques, Eurasia Journal of Mathematics Science and Technology Education, 13, 2, 395–416, 2017.
  • [4] Chang C.C. et al., Error control and calibration in three-dimensional anthropometric measurement of the hand by laser scanning with glass support, Measurement, 40, 1, 21–27, 2007.
  • [5] Tong J., Zhou J., Liu L., Pan Z., Yan H., Scanning 3D Full Human Bodies using Kinects, Visualization and Computer Graphics, 18, 4, 643–650, 2012.
  • [6] shenghuijingmi.en.made-in-china.com/.
  • [7] www.artec3d.com/cases/eva-helps-produce-3dprinted-prosthesis-gastrocnemius-muscle.
  • 8] Massen R., Arrangement and method for producing photogrammetric image records, United States Patent No. US 7095886 B2, 2006.
  • [9] Kahlon S., Apparatus for recommendation for best fitting shoe, United States Patent No. US 20140285646 A1, 2014.
  • [10] Huang J-T., Yu F., Apparatus and method for rapidly measuring 3-dimensional foot sizes from multiimages, United States Patent No. US 7742633 B2, 2010.
  • [11] Tohme Y., System and method of acquiring threedimensional coordinates using multiple coordinate measurement devices, United States Patent No. US 20140028805 A1, 2014.
  • [12] Rodríguez-Quiñonez J.C. et al., Optical monitoring of scoliosis by 3D medical laser scanner, Optics and Lasers in Engineering, 54, 175–186, 2014.
  • [13] http://vorum.com/cad-cam-prosthetic-orthotic/ scangogh-3d-scanner/.
  • [14] Liu Z. et al., 3D real human reconstruction via multiple low-cost depth cameras, Signal Processing, 112, 162–179, 2015.
  • [15] Pesce M., Galantucci L.M., Percoco G., Lavecchia F., A low-cost multi camera 3D scanning system for quality measurement of non-static subjects, Procedia CIRP, 28, 88–93, 2015.
  • [16] Reece G.P. et al., 3D surface imaging of the human female torso in upright to supine positions, Medical Engineering and Physics, 37, 375–383, 2015.
  • [17] Kumar S.T., Vijai A., 3D Reconstruction of Face from 2D CT Scan Images, Procedia Engineering, 30, 970–977, 2012.
  • [18] Brownridge A., Twigg P., Body scanning for avatar production and animation, International Journal of Fashion Design, Technology and Education, 7, 2, 125–132, 2014.
  • [19] Chen Y., Dang G., Cheng Z.-Q., Xu K., Fast capture of personalized avatar using two Kinects, Journal of Manufacturing Systems, 33, 1, 233–240, 2014.
  • [20] Smulders M. et al., Comfort and pressure distribution in a human contour shaped aircraft seat (developed with 3D scans of the human body), Work, 54, 4, 925–940, 2016.
  • [21] Li X., Li X., Human body dimensions extraction from 3D scan data, 2010 International Conference on Intelligent Computation Technology and Automation, 2, 441–444, 2010.
  • [22] Karbowski K., Skaner białego światła strukturalnego, W.124119, Biuletyn Urzędu Patentowego, Urząd Patentowy Rzeczypospolitej Polskiej, Warszawa 25/2016, p.49.
  • [23] Ostrowska K., Szewczyk D., Sładek J., Calibration of optical systems according to ISO standards and VDI/VDE recommendations, Technical Transactions, 9-M/2012, 167–179, 2012
  • [24] Pfeffer C., The state of 3-D imaging standards, Quality Digest, 11/09/2010.
  • [25] physics.info/refraction/.
  • [26] Li Z., Chang C.-C., Dempsey P.G., Cai X., Refraction effect analysis of using a hand-held laser scanner with glass support for 3D anthropometric measurement of the hand: A theoretical study, Measurement, 41, 842–850, 2008.
  • [27] Karbowski K., Sujka W., Reverse engineering in medicine, Mechanik, 88, 12, 111–113, 2015.
Uwagi
Opracowanie w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-38e04247-11fd-4cd6-aa31-e4001fcd0e01
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