• Laser & Optoelectronics Progress
  • Vol. 55, Issue 11, 110004 (2018)
Jiachen Wu1, Liangcai Cao1、*, Hailong Chen2, Xiang Peng2, and Guofan Jin1
Author Affiliations
  • 1 State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China
  • 2 Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering, Shenzhen University, Shenzhen, Guangdong 518060, China
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    DOI: 10.3788/LOP55.110004 Cite this Article Set citation alerts
    Jiachen Wu, Liangcai Cao, Hailong Chen, Xiang Peng, Guofan Jin. Research Progress of Texture Reconstruction in Color Three-Dimensional Scanning[J]. Laser & Optoelectronics Progress, 2018, 55(11): 110004 Copy Citation Text show less
    References

    [1] Ding S W, Zhang X H, Yu Q F et al. Overview of non-contact 3D reconstruction measurement methods[J]. Laser & Optoelectronics Progress, 54, 070003(2017).

    [2] Sutherland I E, Sproull R F, Schumacker R A. A characterization of ten hidden-surface algorithms[J]. ACM Computing Surveys, 6, 1-55(1974). http://doi.acm.org/10.1145/356625.356626

    [3] LevoyM, PulliK, CurlessB, et al.The digital Michelangelo project: 3D scanning of large statues[C]∥Proceedings of the 27th Annual Conference on Computer Graphics and Interactive Techniques, July 23-28, 2000, New Orleans, LA, USA. New York: ACM Press, 2000: 131-144.

    [4] An Y T, Zhang S. Three-dimensional absolute shape measurement by combining binary statistical pattern matching with phase-shifting methods[J]. Applied Optics, 56, 5418-5426(2017). http://europepmc.org/abstract/MED/29047499

    [5] Li B W, Zhang S. Superfast high-resolution absolute 3D recovery of a stabilized flapping flight process[J]. Optics Express, 25, 27270-27282(2017). http://www.ncbi.nlm.nih.gov/pubmed/29092204

    [6] Hyun J S. Chiu G T C, Zhang S. High-speed and high-accuracy 3D surface measurement using a mechanical projector[J]. Optics Express, 26, 1474-1487(2018). http://www.ncbi.nlm.nih.gov/pubmed/29402021

    [7] IzadiS, KimD, HilligesO, et al.KinectFusion: real-time 3D reconstruction and interaction using a moving depth camera[C]∥Proceedings of the 24th Annual ACM Symposium on User Interface Software and Technology, October 16-19, 2011, California. New York: ACM Press, 2011: 559-568.

    [8] Chen D G. -03-27[2018-04-10][P]. Lin C H. Resolving three dimensional spatial information using time-shared structured lighting that embeds digital communication: US9930320B2.(2018).

    [9] Cui H N, Shen S H, Hu Z Y. Global fusion of generalized camera model for efficient large-scale structure from motion[J]. Science China(Information Sciences), 60, 038101(2017). http://kns.cnki.net/KCMS/detail/detail.aspx?filename=JFXG201703015&dbname=CJFD&dbcode=CJFQ

    [10] Dong Q L, Shu M, Cui H N et al. Learning stratified 3D reconstruction[J]. Science China (Information Sciences), 61, 023101(2018).

    [11] Wang J L, Lu Y H, Liu J B et al. A robust three-stage approach to large-scale urban scene recognition[J]. Science China (Information Sciences), 60, 103101(2017). http://kns.cnki.net/KCMS/detail/detail.aspx?filename=JFXG201710020&dbname=CJFD&dbcode=CJFQ

    [12] Zhou L, Zhu S Y, Shen T W et al. Progressive large scale-invariant image matching in scale space. [C]∥2017 IEEE International Conference on Computer Vision, October 22-29, 2017, Venice. New York: IEEE, 2381-2390(2017).

    [13] Zhang R Z, Zhu S Y, Fang T et al. Distributed very large scale bundle adjustment by global camera consensus. [C]∥2017 IEEE International Conference on Computer Vision (ICCV), October 22-29, 2017, Venice, Italy. New York: IEEE, 29-38(2017).

    [14] Su X Y, Zhang Q C, Chen W J. Three-dimensional imaging based on structured illumination[J]. Chinese Journal of Lasers, 41, 0209001(2014).

    [15] Lu M T, Su X Y, Cao Y P et al. 3D shape reconstruction algorithms for modulation measuring profilometry with synchronous scanning[J]. Chinese Journal of Lasers, 43, 0308006(2016).

    [16] Jing H L, Su X Y, You Z S. Uniaxial three-dimensional shape measurement with multioperation modes for different modulation algorithms[J]. Optical Engineering, 56, 034115(2017). http://adsabs.harvard.edu/abs/2017OptEn..56c4115J

    [17] Zhou P, Zhu J P, Su X Y et al. Three-dimensional shape measurement using color random binary encoding pattern projection[J]. Optical Engineering, 56, 104102(2017). http://spie.org/Publications/Journal/10.1117/1.OE.56.10.104102

    [18] Liu S Q, Zhong J G, Ma X et al. Embossed imaging technology based on phase-shifting structured light illumination[J]. Journal of Applied Optics, 38, 392-399(2017).

    [19] Zhao M L, Ma X, Zhang Z B et al. Three-dimensional shape absolute measurement based on laser speckles[J]. Chinese Journal of Lasers, 43, 0208001(2016).

    [20] Zhang Z B, Zhong J G. Three-dimensional single-pixel imaging with far fewer measurements than effective image pixels[J]. Optics Letters, 41, 2497-2500(2016). http://www.ncbi.nlm.nih.gov/pubmed/27244398

    [21] He J Y, Liu X L, Peng X et al. Integer pixel correlation searching for three-dimensional digital speckle based on gray constraint[J]. Chinese Journal of Lasers, 44, 0404003(2017).

    [22] Cai Z W, Liu X L, Li A M et al. Phase-3D mapping method developed from back-projection stereovision model for fringe projection profilometry[J]. Optics Express, 25, 1262-1277(2017). http://europepmc.org/abstract/MED/28158010

    [23] Cai Z W, Liu X L, Peng X et al. Universal phase-depth mapping in a structured light field[J]. Applied Optics, 57, A26-A32(2018). http://www.ncbi.nlm.nih.gov/pubmed/29328126

    [24] Cai Z W, Liu X L, Peng X et al. Ray calibration and phase mapping for structured-light-field 3D reconstruction[J]. Optics Express, 26, 7598-7613(2018). http://europepmc.org/abstract/MED/29609313

    [25] Catmull E E. A subdivision algorithm for computer display of curved surfaces[D]. Salt Lake City: The University of Utah(1974).

    [26] Blinn J F, Newell M E. Texture and reflection in computer generated images[J]. Communications of the ACM, 19, 542-547(1976). http://doi.ieeecomputersociety.org/resolve?ref_id=doi:10.1145/360349.360353&rfr_id=mags/cg/1990/02/mcg1990020054.htm

    [27] Bier E, Sloan K R. Two-part texture mappings[J]. IEEE Computer Graphics and Applications, 6, 40-53(1986).

    [28] Debevec PE, Taylor CJ, MalikJ.Modeling and rendering architecture from photographs: a hybrid geometry- and image-based approach[C]∥Proceedings of the 23rd Annual Conference on Computer Graphics and Interactive Techniques, August 4-9, 1996, New Orleans, LA, USA. New York: ACM Press, 1996: 11-20.

    [29] Debevec P, Yu Y Z, Borshukov G. Efficient view-dependent image-based rendering with projective texture-mapping. [C]∥Proceedings of the Eurographics Workshop, June 29-July 1, 1998, Vienna. Vienna: Springer, 105-116(1998).

    [30] Pulli K, Abi-Rached H, Duchamp T et al. Acquisition and visualization of colored 3D objects. [C]∥Proceedings of Fourteenth International Conference on Pattern Recognition, August 20-20, 1998, Brisbane. New York: IEEE, 6096417(1998).

    [31] Hartley R, Zisserman A. Multiple view geometry in computer vision[J]. Kybernetes, 30, 1865-1872(2004).

    [32] Brown D C. Close-range camera calibration[J]. Photogrammetric Engineering, 37, 855-866(1971).

    [33] Franken T, Dellepiane M, Ganovelli F et al. Minimizing user intervention in registering 2D images to 3D models[J]. Visual Computer, 21, 619-628(2005). http://link.springer.com/article/10.1007/s00371-005-0309-z

    [34] Liu L, Stamos I. Automatic 3D to 2D registration for the photorealistic rendering of urban scenes. [C]∥2005 IEEE Conference on Computer Vision and Pattern Recognition, June 20-25, 2005, San Diego. New Tork: IEEE, 8624028(2005).

    [35] Neugebauer P J, Klein K. Texturing 3D models of real world objects from multiple unregistered photographic views[J]. Computer Graphics Forum, 18, 245-256(1999). http://onlinelibrary.wiley.com/doi/10.1111/1467-8659.00345/abstract;jsessionid=D7425CFE00ED4AA431885DA4AEC5B5B9.f03t01

    [36] Ikeuchi K, Nakazawa A, Hasegawa K et al. The great buddha project: modeling cultural heritage for VR systems through observation. [C]∥The Second IEEE and ACM International Symposium on Mixed and Augmented Reality, October 10-10, 2003, Tokyo. New York: IEEE(2003).

    [37] Yang G, Becker J, Stewart C V. Estimating the location of a camera with respect to a 3D model. [C]∥Sixth International Conference on 3-D Digital Imaging and Modeling, August 21-23, 2007, Montreal. New York: IEEE, 159-166(2007).

    [38] Wu C, Clipp B, Li X et al. 3D model matching with viewpoint-invariant patches (VIP). [C]∥2008 IEEE Conference on Computer Vision and Pattern Recognition, June 23-28, 2008, Anchorage. New York: IEEE, 10139806(2008).

    [39] Besl P J, Mckay N D. Method for registration of 3-D shapes[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 14, 239-256(1992). http://spie.org/Publications/Proceedings/Paper/10.1117/12.57955

    [40] Xiong F G, Huo W, Han X et al. Removal method of mismatching keypoints in 3D point cloud[J]. Acta Optica Sinica, 38, 0210003(2018).

    [41] Steinbrücker F, Sturm J, Cremers D. Real-time visual odometry from dense RGB-D images. [C]∥2011 IEEE International Conference on Computer Vision Workshops, November 6-13, 2011, Borcelona. New York: IEEE, 719-722(2011).

    [42] Matsushita K, Kaneko T. Efficient and handy texture mapping on 3D surfaces[J]. Computer Graphics Forum, 18, 349-358(1999). http://onlinelibrary.wiley.com/doi/10.1111/1467-8659.00355/pdf

    [43] Dellepiane M, Scopigno R. Global refinement of image-to-geometry registration for color projection. [C]∥2013 Digital Heritage International Congress, October 28-November 1, 2013, Marseille. New York: IEEE, 39-46(2013).

    [44] Zhou Q Y, Koltun V. Color map optimization for 3D reconstruction with consumer depth cameras[J]. ACM Transactions on Graphics, 33, 155(2014). http://dl.acm.org/citation.cfm?id=2601134

    [45] Zhang F, Huang H, Zhang Z, Remote Sensing, Spatial Information Scienceset al. High precision texture reconstruction for 3D sculpture model[J]. XXXIX-, B5, 139-143(2012).

    [46] Walkowski F, Johnston R A, Price N B. Texture mapping for the fastSCAN TM hand-held laser scanner . [C]∥2008 23rd International Conference Image and Vision Computing New Zealand, November 26-28, 2008, Chriatchurch. New Tork: IEEE, 10400909(2009).

    [47] Pagés R, Berjón D, Morán F et al. Seamless, static multi-texturing of 3D meshes[J]. Computer Graphics Forum, 34, 228-238(2015). http://dl.acm.org/citation.cfm?id=2771709

    [48] Niem W, Broszio H. Mapping texture from multiple camera views onto 3D-object models for computer animation. [C]∥Proceedings of the International Workshop on Stereoscopic & Three Dimensional Imaging, September 6-8, 1995, Santorini, Greece., 99-105(1995).

    [49] Callieri M, Cignoni P, Scopigno R. Reconstructing textured meshes from multiple range RGB maps. [C]∥Vision, Modeling, and Visualization Conference 2002, November 20-22, 2002, Erlangen. Holland: IOS press, 419-426(2002).

    [50] Rocchini C, Cignoni P, Montani C et al. Acquiring, stitching and blending diffuse appearance attributes on 3D models[J]. Visual Computer, 18, 186-204(2002). http://link.springer.com/article/10.1007/s003710100146

    [51] Lempitsky V, Ivanov D. Seamless mosaicing of image-based texture maps. [C]∥2007 IEEE Conference on Computer Vision and Pattern Recognition, June 17-22, 2007, Minneapolis. New York: IEEE, 9737957(2007).

    [52] Allene C, Pons J P, Keriven R. Seamless image-based texture atlases using multi-band blending. [C]∥2008 19th International Conference on Pattern Recognition, December 8-11, 2008, Tampa. New York: IEEE, 10458222(2008).

    [53] Gal R, Wexler Y, Ofek E et al. Seamless montage for texturing models[J]. Computer Graphics Forum, 29, 479-486(2010). http://onlinelibrary.wiley.com/doi/10.1111/j.1467-8659.2009.01617.x/full

    [54] Waechter M, Moehrle N, Goesele M. Let there be color! Large-scale texturing of 3D reconstructions. [C]∥European Conference on Computer Vision, September 6-12, 2014, Zurich, Switzerland. Cham: Springer, 8693, 836-850(2014).

    [55] Jiang H Q, Wang B S, Zhang G F et al. High-quality texture mapping for complex 3D scenes[J]. Chinese Journal of Computers, 38, 2349-2360(2015).

    [56] Shu J, Liu Y G, Li J et al. Rich and seamless texture mapping to 3D mesh models. [C]∥Chinese Conference on Image and Graphics Technologies, July 8-9, 2016, Beijing. Singapore: Springer, 634, 69-76(2016).

    [57] Li M, Zhang W L, Fan D Y. Automatic texture optimization for 3D urban reconstruction[J]. Acta Geodaetica et Cartographica Sinica, 46, 338-345(2017).

    [58] Wang Z, Geng W. Generation of view-dependent textures for an inaccurate model. [C]∥2017 IEEE/ACIS 16th International Conference on Computer and Information Science, May 24-26, 2017, Wuhan. New York: IEEE, 17000151(2017).

    [59] Chen Z L, Zhou J, Chen Y S et al. 3D texture mapping in multi-view reconstruction. [C]∥International Symposium on Visual Computing, July 16-18, 2012, Rethymnon. Berlin, Heidelberg: Springer, 7431, 359-371(2012).

    [60] Pérez P, Gangnet M, Blake A. Poisson image editing[J]. ACM Transactions on Graphics, 22, 313-318(2003).

    [61] Eisemann M, Decker B D, Magnor M et al. Floating textures[J]. Computer Graphics Forum, 27, 409-418(2008).

    [62] Dellepiane M, Marroquim R, Callieri M et al. Flow-based local optimization for image-to-geometry projection[J]. IEEE Transactions on Visualization and Computer Graphics, 18, 463-474(2012). http://www.ncbi.nlm.nih.gov/pubmed/21519108

    [63] Horn B K P, Schunck B G. Determining optical flow[J]. Artificial Intelligence, 17, 185-203(1981).

    [64] Lensch H P A, Heidrich W, Seidel H P. Automated texture registration and stitching for real world models. [C]∥Proceedings of the 8th Pacific Conference on Computer Graphics and Applications, October 3-5, 2000, Washington. New York: IEEE, 317-326, 452(2000).

    [65] Rocchini C, Cignoni P, Montani C et al. Multiple textures stitching and blending on 3D objects. [C]∥Proceeding of Eurographics Rendering, June 21-23, 1999, Granada, Spain. Vienna: Spinger, 119-130(1999).

    [66] BaumbergA.Blending images for texturing 3D models[C]∥Proceedings of the British Machine Vision Conference, September 2-5, 2002, Cardiff, UK. BWVA Press, 2002: 404-413.

    [67] Wang L, Kang S B, Szeliski R et al. Optimal texture map reconstruction from multiple views. [C]∥Proceedings of the 2001 IEEE Computer Society Conference on Computer Vision and Pattern Recognition, December 8-14, 2001, Kauai, HI, USA. New York: IEEE, 7176885(2001).

    [68] Bernardini F, Martin I M, Rushmeier H. High-quality texture reconstruction from multiple scans[J]. IEEE Transactions on Visualization and Computer Graphics, 7, 318-332(2001). http://ieeexplore.ieee.org/xpls/icp.jsp?arnumber=965346

    [69] Callieri M, Cignoni P, Corsini M et al. Masked photo blending: mapping dense photographic data set on high-resolution sampled 3D models[J]. Computers & Graphics, 32, 464-473(2008). http://www.sciencedirect.com/science/article/pii/S009784930800054X

    [70] Liu X M, Liu X L, Yin Y K et al. Texture blending of 3D photo-realistic model[J]. Journal of Computer-Aided Design & Computer Graphics, 24, 1440-1446(2012).

    [71] Jiang C S, Christie D, Paudel D P et al. High quality reconstruction of dynamic objects using 2D-3D camera fusion. [C]∥2017 IEEE International Conference on Image Processing, September 17-20, 2017, Beijing. New York: IEEE, 17597138(2017).

    [72] Ma L, Do L, Bondarev E et al. 3D colored model generation based on multiview textures and triangular mesh. [C]∥2013 Seventh International Conference on Distributed Smart Cameras, October 29-November 1, 2013, Palm Springs, CA, USA. New York: IEEE, 14197187(2013).

    [73] Bi S, Kalantari N K, Ramamoorthi R. Patch-based optimization for image-based texture mapping[J]. ACM Transactions on Graphics, 36, 1-11(2017). http://dl.acm.org/citation.cfm?id=3073610

    [74] Simakov D, Caspi Y, Shechtman E et al. Summarizing visual data using bidirectional similarity. [C]∥2018 IEEE Conference on Computer Vision and Pattern Recognition, June 23-28, 2008, Anchorage, AK, USA. New York: IEEE, 10140146(2008).

    [75] Wang Z, Bovik A C, Sheikh H R et al. Image quality assessment: from error visibility to structural similarity[J]. IEEE Transactions on Image Processing, 13, 600-612(2004). http://jamia.bmj.com/external-ref?access_num=10.1109/TIP.2003.819861&link_type=DOI

    [76] Xu S C, Ye X Z, Wu Y et al. Highlight detection and removal based on chromaticity. [C]∥International Conference Image Analysis and Recognition, September 28-30, 2005, Toronto. Berlin: Springer, 3626, 199-206(2005).

    [77] Hoiem D. Single-image shadow detection and removal using paired regions. [C]∥2011 IEEE Conference on Computer Vision and Pattern Recognition, June 20-25, 2011, Providence. New York: IEEE, 12218867(2011).

    [78] Birsak M, Musialski P, Arikan M et al. Seamless texturing of archaeological data. [C]∥Digital Heritage International Congress, October 28-November 1, 2013, Marseille. New York: IEEE, 14143729(2013).

    [79] Heindl C, Akkaladevi S C, Bauer H. Photorealistic texturing of human busts reconstructions. [C]∥7th International Conference on 3D Body Scanning Technologies, November 30-December 1, 2016, Lugano, Switzerland. Ascona: Hometrica Consulting, 225-230(2016).

    [80] Velho L, Júnior J S. Projective texture atlas construction for 3D photography[J]. Visual Computer, 23, 621-629(2007). http://dl.acm.org/citation.cfm?id=1283976

    [81] Chuang M, Luo L, Brown B J et al. Estimating the laplace-beltrami operator by restricting 3D functions[J]. Computer Graphics Forum, 28, 1475-1484(2010). http://dl.acm.org/citation.cfm?id=1735603.1735633

    [82] Dessein A. Smith W A P, Wilson R C, et al. Seamless texture stitching on a 3D mesh by poisson blending in patches. [C]∥2014 IEEE International Conference on Image Processing, October 27-30, 2014, Paris. New York: IEEE, 14884131(2015).

    [83] Pan R J, Taubin G. Color adjustment in image-based texture maps[J]. Graphical Models, 79, 39-48(2015). http://www.sciencedirect.com/science/article/pii/S1524070315000119

    [84] Troccoli A, Allen P. Building illumination coherent 3D models of large-scale outdoor scenes[J]. International Journal of Computer Vision, 78, 261-280(2008). http://link.springer.com/article/10.1007/s11263-007-0100-x

    [85] Laffont P Y, Bousseau A, Paris S et al. Coherent intrinsic images from photo collections[J]. ACM Transactions on Graphics, 31, 1-11(2012). http://dl.acm.org/citation.cfm?id=2366221

    [86] Agathos A, Fisher R B. Colour texture fusion of multiple range images. [C]∥Proceedings of Fourth International Conference on 3-D Digital Imaging and Modeling, October 6-10, 2003, Banff. New York: IEEE, 8322497(2003).

    [87] Bannai N, Agathos A, Fisher R B. Fusing multiple color images for texturing models. [C]∥Proceedings 2nd International Symposium on 3D Data Processing, Visualization and Transmission, September 9, 2004, Thessaloniki. New York: IEEE, 8224592(2004).

    [88] Bannai N, Fisher R B, Agathos A. Multiple color texture map fusion for 3D models[J]. Pattern Recognition Letters, 28, 748-758(2007). http://www.sciencedirect.com/science/article/pii/S0167865506002029

    [89] Xu L, Li E, Li J G et al. A general texture mapping framework for image-based 3D modeling. [C]∥Proceedings of 2010 IEEE International Conference on Image Processing, September 26-29, 2010, Hong Kong. New York: IEEE, 11692796(2010).

    [90] Park I K, Zhang H, Vezhnevets V. Image-based 3D face modeling system[J]. EURASIP Journal on Advances in Signal Processing, 2005, 1-19(2005). http://link.springer.com/article/10.1155/ASP.2005.2072

    [91] Lee W B, Man H L, Park I K. Photorealistic 3D face modeling on a smartphone. [C]∥2011 IEEE Computer Society Conference on Computer Vision and Pattern Recognition Workshops, June 20-25, 2011, Colorado Springs. New York: IEEE, 163-168(2011).

    [92] Ma Q, Ge B Z, Chen L. Correction technique for color difference of multi-sensor texture[J]. Journal of Computer Applications, 36, 1075-1079(2016).

    [93] Reinhard E, Adhikhmin M, Gooch B et al. Color transfer between images[J]. IEEE Computer Graphics and Applications, 21, 34-41(2002).

    [94] Pintus R, Gobbetti E. A fast and robust framework for semiautomatic and automatic registration of photographs to 3D geometry[J]. Journal on Computing and Cultural Heritage, 7, 1-23(2015). http://dl.acm.org/citation.cfm?id=2629514

    [95] Previtali M, Barazzetti L, Scaioni M. An automated and accurate procedure for texture mapping from images. [C]∥Proceedings of the 18th International Conference on Virtual Systems and Multimedia, September 2-5, 2012, Milan. New York: IEEE, 13154673(2012).

    [96] Ortin D, Remondino F. Occlusion-free image generation for realistic texture mapping. [C]∥International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, August 22-24, 2005, Venice, Italy., 36, 7(2005).

    [97] Li M, Guo B X, Zhang W L. An occlusion detection algorithm for 3D texture reconstruction of multi-view images[J]. International Journal of Machine Learning and Computing, 7, 152-155(2017).

    [98] Schirmacher H, Heidrich W, Rubick M et al. Image-based BRDF reconstruction. [C]∥Proceedings of the 4th Conference on Vision, Modeling, and Visualization, November 17-19, 1999, Sankt Augustin. Holland: IOS press, 285-292(1999).

    [99] Tan P. Phong reflectance model[M]. ∥Ikeuchi K. Computer vision: a reference guide. Boston: Springer., 592-594(2014).

    [100] Li H B, Wu L L, Wu Y. Two-step light source detection algorithm importing the 3D shadow and specular reflection[J]. Journal of Chinese Computer Systems, 34, 892-896(2013). http://en.cnki.com.cn/Article_en/CJFDTOTAL-XXWX201304044.htm

    [101] Sun S J, Zhai A P, Cao Y P. A fast algorithm for obtaining 3D shape and texture information of objects[J]. Acta Optica Sinica, 36, 0312001(2016).

    Jiachen Wu, Liangcai Cao, Hailong Chen, Xiang Peng, Guofan Jin. Research Progress of Texture Reconstruction in Color Three-Dimensional Scanning[J]. Laser & Optoelectronics Progress, 2018, 55(11): 110004
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