• Acta Optica Sinica
  • Vol. 40, Issue 4, 0410001 (2020)
Shuo Huang1、2、3, Yong Hu1、2、*, Cailan Gong1、2, Hongyi Bo1、4, Geng Gu4, Qi Xu4, and Wei Wang4
Author Affiliations
  • 1Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083, China
  • 2Key Laboratory of Infrared System Detection and Imaging Technology, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083, China
  • 3University of Chinese Academy of Sciences, Beijing 100049, China
  • 4Jiaxing Opto-Electronic Engineering Center, Chinese Academy of Sciences, Jiaxing, Zhejiang 314022, China
  • show less
    DOI: 10.3788/AOS202040.0410001 Cite this Article Set citation alerts
    Shuo Huang, Yong Hu, Cailan Gong, Hongyi Bo, Geng Gu, Qi Xu, Wei Wang. High Precision Three-Dimensional Face Reconstruction Algorithm Based on Gradient Light Image[J]. Acta Optica Sinica, 2020, 40(4): 0410001 Copy Citation Text show less
    References

    [1] Wang Y, Wang X M. Research progress of three-dimensional reconstruction technique in the diagnosis and treatment of liver cancer[J]. Journal of Shenyang Medical College, 16, 229-230, 233(2014).

    [2] Ma Q. Research of 3D face reconstruction based on a single image[D]. Wuhan: Wuhan University of Technology(2011).

    [3] Wang S, Shen X K, Zhao Q P. Review of 3D facial expression acquisition and modeling technology[J]. Journal of System Simulation, 30, 2423-2444(2018).

    [4] Parke F I, Waters K, Peters A K. Appendix 1: three-dimensional muscle model facial animation[J]. Computer Facial Animation, 337-338(1996).

    [5] Lü H Q, Li X F. A survey of realistic 3D face modeling technology[J]. Software Guide, 17, 1-3, 7(2018).

    [6] Lee S Y, Chwa K Y, Shin S Y et al. Image metamorphosis using snakes and free-form deformations. [C]∥ACM SIGGRAPH 95 Visual Proceedings: The art and interdisciplinary programs of SIGGRAPH'95, August 6-11, 1995, Los Angeles, CA, USA. New York: ACM, 439-448(1995).

    [7] Xu C H, Quan L, Wang Y H et al. Adaptive multi-resolution fitting and its application to realistic head modeling. [C]∥Proceedings of Geometric Modeling and Processing, April 13-15, 2004, Beijing, China. New York: IEEE, 8030876(2004).

    [8] Gu X, Wang Y, Chan T F et al. Genus zero surface conformal mapping and its application to brain surface mapping[J]. IEEE Transactions on Medical Imaging, 23, 949-958(2004).

    [9] Beumier C, Acheroy M. 3D facial surface acquisition by structured light. [C]∥International Workshop on Synthetic-Natural Hybrid Coding and Three Dimensional Imaging. [S.l.: s.n.], 103-106(1999).

    [10] Tarini M, Cignoni P, Montani C. Ambient occlusion and edge cueing for enhancing real time molecular visualization[J]. IEEE Transactions on Visualization and Computer Graphics, 12, 1237-1244(2006).

    [11] Meyer G P, Do M N. Real-time 3D face modeling with a commodity depth camera. [C]∥2013 IEEE International Conference on Multimedia and Expo Workshops (ICMEW), July 15-19, 2013, San Jose, CA, USA. New York: IEEE, 13826079(2013).

    [12] Lee W S, Magnenat-Thalmann N. Fast head modeling for animation[J]. Image and Vision Computing, 18, 355-364(2000).

    [13] Roy Chowdhury A K, Chellappa R. Face reconstruction from monocular video using uncertainty analysis and a generic model[J]. Computer Vision and Image Understanding, 91, 188-213(2003).

    [14] Luo T, Yang Y G, Cong F Q[J]. The interpretation of light-power distributing in Fresnel formula Journal of Changchun Teachers College, 2009, 12-14.

    [15] Sloan P P. Normal mapping for precomputed radiance transfer. [C]∥Proceedings of the 2006 symposium on Interactive 3D graphics and games-SI3D'06, March 14-17, 2006, Redwood City, California. New York: ACM, 23-26(2006).

    [16] Sato Y, Wheeler M D, Ikeuchi K. Object shape and reflectance modeling from observation. [C]∥Proceedings of the 24th annual conference on Computer graphics and interactive techniques-SIGGRAPH'97, August 3-8, 1997, Los Angeles, California, USA. New York: ACM, 379-387(1997).

    [17] Debevec P, Hawkins T, Tchou C et al. Acquiring the reflectance field of a human face. [C]∥Proceedings of the 27th annual conference on Computer graphics and interactive techniques-SIGGRAPH'00, July 23-28, 2000, New Orleans, LA, USA. New York: ACM, 145-156(2000).

    [18] Lensch H P A, Kautz J, Goesele M et al. Image-based reconstruction of spatial appearance and geometric detail[J]. ACM Transactions on Graphics, 22, 234-257(2003).

    [19] Gardner A, Tchou C, Hawkins T et al. Linear light source reflectometry[J]. ACM Transactions on Graphics, 22, 749-758(2003).

    [20] Weyrich T, Matusik W, Pfister H et al. Analysis of human faces using a measurement-based skin reflectance model. [C]∥SIGGRAPH'06 ACM SIGGRAPH 2006 Papers, July 30-August 3, 2006, Boston, Massachusetts. New York: ACM, 1013-1024(2006).

    [21] Ma W C, Hawkins T, Peers P et al. Rapid acquisition of specular and diffuse normal maps from polarized spherical gradient illumination. [C]∥Proceedings of the 18th Eurographics conference on Rendering Techniques, June 25-27, 2007, Grenoble, France. New York: ACM, 183-194(2007).

    [22] Xie Z X, Yu J S, Chi S K et al. Underwater calibration and measurement based on non-parallel stereovision[J]. Acta Optica Sinica, 39, 0912004(2019).

    Shuo Huang, Yong Hu, Cailan Gong, Hongyi Bo, Geng Gu, Qi Xu, Wei Wang. High Precision Three-Dimensional Face Reconstruction Algorithm Based on Gradient Light Image[J]. Acta Optica Sinica, 2020, 40(4): 0410001
    Download Citation