[1] Wang C, Yang W M, Liao Q M. A space carving based reconstruction method using discrete viewing. In:Proceedings of the 7th International Conference on Image and Graphics. Qingdao, China:IEEE, 2013. 607-611
[2] Liu Guang-Shuai, Li Bai-Lin, He Chao-Ming. Convex optimization of continuous energy model in multiview 3D reconstruction. Computer Engineering and Applications, 2013, 49(1):19-22(刘光帅, 李柏林, 何朝明. 多视三维重构中连续能量模型的凸优化. 计算机工程与应用, 2013, 49(1):19-22)
[3] [3] Yemez Y, Sahillioglu Y. Shape from silhouette using topology-adaptive mesh deformation. Pattern Recognition Letters, 2009, 30(13):1198-1207
[4] [4] Dyer C R. Volumetric scene reconstruction from multiple views. Foundations of Image Understanding, 2001, 628:469-489
[5] [5] Lorensen W E, Cline H E. Marching cubes:a high resolution 3d surface reconstruction algorithm. ACM Computer Graphics, 1987, 21(4):163-169
[6] [6] Seitz S M, Dyer C R. Photorealistic scene reconstruction by voxel coloring. International Journal of Computer Vision, 1999, 35(2):151-173
[7] [7] Kutulakos K N, Seitz S M. A theory of shape by space carving. International Journal of Computer Vision, 2000, 38(3):1999-2218
[8] [8] Rankin J R, Boyapati M. Visual hull construction from semitransparent coloured silhouettes. International Journal of Computer Graphics Animation, 2013, 3(4):57-63
[9] [9] Hernandez Esteban C, Schmitt F. Multi-stereo 3D object reconstruction. In:Proceedings of the 1st International Symposium on 3D Data Processing Visualization and Transmission. Padova, Italy:IEEE, 2002. 159-166
[10] Mulayim A Y, Yilmaz U, Atalay V. Silhouette-based 3-D model reconstruction from multiple images. IEEE Transactions on Systems, Man, and Cybernetics, 2003, 33(4):582-591
[11] Wu C L, Wilburn B, Matsushita Y, Theobalt C. High-quality shape from multi-view stereo and shading under general illumination. In:Proceedings of the 2011 Conference on Computer Vision and Pattern Recognition Workshops. Colorado, USA:IEEE, 2011. 969-976
[12] Cremers D, Kolev K. Multiview stereo and silhouette consistency via convex functionals over convex domains. IEEE Transactions on Pattern Analysis and Machine Intelligence, 2011, 33(6):1161-1174
[13] Ladikos A, Benhimane S, Navab N. Efficient visual hull computation for real-time 3D reconstruction using CUDA. In:Proceedings of the 2008 IEEE Computer Society Conference on Computer Vision and Pattern Recognition Workshops. Anchorage, AK, USA:IEEE, 2008. 1-8
[14] Chang B, Woo S, Ihm I. GPU-based parallel construction of compact visual hull meshes. The Visual Computer, 2014, 30(2):201-211
[15] Huang C H, Lu D M, Diao C Y. Accelerated visual hulls of complex objects using contribution weights. In:Proceedings of the 7th International Conference on Image and Graphics. Qingdao, China:IEEE, 2013. 685-689
[16] Hours J H, Schorsch S, Jones C N. Parametric polytope reconstruction an application to crystal shape estimation. IEEE Transactions on Image Process, 2013, 30(2):201-211
[17] Franco J, Boyer E. Efficient polyhedral modeling from silhouettes. IEEE Transactions on Pattern Analysis and Machine Intelligence, 2009, 31(3):414-427
[18] Matsumoto Y, Terasaki H, Sugimoto K, Arakawa T. A portable three-dimensional digitizer. In:Proceedings of the 1997 International Conference on Recent Advances in 3-D Digital Imaging and Modeling. Ottawa, Ont., Canada:IEEE, 1997. 197-204
[19] Niem W. Automatic reconstruction of 3D objects using a mobile camera. Image and Vision Computing, 1999, 17(2):125-134
[20] Schmitt F, Yemez Y. 3D color object reconstruction from 2D image sequences. In:Proceedings of the 1999 International Conference on Image Processing. Kobe, Japan:IEEE, 1999. 65-69
[21] Slabaugh G, Schafer R, Hans M. Image-based photo hulls. In:Proceedings of the 1st International Symposium on 3D Data Processing Visualization and Transmission. Padova, Italy:IEEE, 2002. 704-862
[22] Montani C, Scateni R, Scopigno R. Discretized marching cubes. In:Proceedings of the 1994 IEEE Conference on Visualization'94. Washington, D.C., USA:IEEE, 1994. 281-287
[23] Cheung K, Baker S, Kanade T. Shape-from-silhouette of articulated objects and its use for human body kinematics estimation and motion capture. Computer Vision and Pattern Recognition, 2003, 1:77-84
[24] Zhang Jian-Qing, Su Guo-Zhong, Zheng Shun-Yi, Zhong Liang. High accurate outline detection algorithm based on line diffusion function model. Geomatics and Information Science of Wuhan University, 2006, 31(2):95-104(张剑清, 苏国中, 郑顺义, 钟良. 基于线扩散函数的高精度轮廓特征提取算法. 武汉大学学报(信息科学版), 2006, 31(2):95-104)
[25] Li Cai-Lin, Guo Bao-Yun, Li Chang. The high-accurate extraction of line features of object contour. Acta Geodaetica et Cartographica Sinica, 2011, 40(1):66-70(李彩林, 郭宝云, 李畅. 目标轮廓直线特征的高精度提取. 测绘学报, 2011, 40(1):66-70)
[26] Zheng S Y, Li C L, Su G Z, Zhang J Q. High-accurate line feature extraction algorithm based on line diffusion function model. In:Proceedings of the 2007 International Symposium on Multispectral Image Processing and Pattern Recognition. Wuhan, China:SPIE, 2007. 678-683
[27] Xu Ying-Xin, Li Xing-Fei, Zhu Jia. Application of telecentric lens in rotary workpiece measurement system. Transducer and Microsystem Technologies, 2010, 29(1):111-113(徐颖欣, 李醒飞, 朱嘉. 远心镜头在回转体测量系统中的应用. 传感器与微系统, 2010, 29(1):111-113)
[28] Fremont V, Chellali R. Turntable-based 3D object reconstruction. In:Proceedings of the 2004 IEEE Conference on Cybernetics and Intelligent Systems. Singapore:IEEE, 2004. 1277-1282
[29] Beardsley P A, Torr P H S, Zisserman A. 3D model acquisition from extended image sequences. In:Proceedings of the 4th European Conference on Computer Vision-ECCV'96. Berlin Heidelberg:Springer-Verlag, 1996. 683-695
[30] Fitzgibbon A W, Cross G, Zisserman A. Automatic 3D model construction for turn-table sequences. In:Proceedings of the 1998 the European Workshop on 3D Structure from Multiple Images of Large-Scale Environments. Berlin Heidelberg:Springer-Verlag, 1998. 155-170
[31] Eisert P, Steinbach E, Girod B. Automatic reconstruction of stationary 3-D objects from multiple uncalibrated camera views. IEEE Transactions on Circuits and Systems for Video Technology, 2000, 10(2):261-277
[32] Gardner R J, Paolo G, Thorsten T. Determining a rotation of a tetrahedron from a projection. Discrete Computational Geometry, 2012, 48(3):749-765
[33] Presles B, Debayle J, Pinoli J C. Size and shape estimation of 3-D convex objects from their 2-D projections:application to crystallization processes. Journal of Microscopy, 2012, 248(2):140-155
[34] Lin T H, Chang H T, Hu S J. 3D reconstruction of intricate objects using planar cast shadows. In:Proceedings of the 2013 ACM SIGGRAPH 2013 Posters. New York, NY, USA:ACM, 2013. 78-88
[35] Servin M, Garnica G, Estrada J C, Padilla J M. High-resolution low-noise 360-degree digital solid reconstruction using phase-stepping profilometry. Optics Express, 2014, 22(9):10914-10922
[36] Xiong Bang-Shu, Yu Liang, Ou Qiao-Feng, Du Jing. An image-based quality detection method of syringe needles. Chinese Journal of Biomedical Engineering, 2010, 29(4):627-631(熊邦书, 余亮, 欧巧凤, 杜静. 注射器针头合格性图像检测方法. 中国生物医学工程学报, 2010, 29(4):627-631)