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Modeling 3D Hair by Outlining Hair Cards

Published:25 July 2022Publication History

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We propose an intuitive method for modeling 3DCG character?s hair by inputting sketched lines as the left and right contour lines of a hair strand. Modeling a character?s hairstyle is an important task that affects the character?s appearance. Generally, hair modeling requires many complex tasks. In our method, the user inputs the left and right outlines by sketching them to create hair strand meshes. This enables the user to adjust the details while considering the overall outline of the hairstyle.Papers,Poster abstract, movies, and another materials.

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We propose an intuitive method for modeling 3DCG character?s hair by inputting sketched lines as the left and right contour lines of a hair strand. Modeling a character?s hairstyle is an important task that affects the character?s appearance. Generally, hair modeling requires many complex tasks. In our method, the user inputs the left and right outlines by sketching them to create hair strand meshes. This enables the user to adjust the details while considering the overall outline of the hairstyle.Papers,Poster abstract, movies, and another materials.

References

  1. Jun Xing, Koki Nagano, Weikai Chen, Haotian Xu, Li-yi Wei, Yajie Zhao, Jingwan Lu, Byungmoon Kim, and Hao Li, 2019. HairBrush for Immersive Data-Driven Hair Modeling. In Proceedings of the 32nd Annual ACM Symposium on User Interface Software and Technology. Association for Computing Machinery, New York, NY, USA, 263–279. DOI: https://doi.org/10.1145/3332165.3347876Google ScholarGoogle ScholarDigital LibraryDigital Library
  2. Yuefan Shen, Changgeng Zhang, Hongbo Fu, Kun Zhou, and Youyi Zheng, 2021. DeepSketchHair: Deep Sketch-Based 3D Hair Modeling. IEEE Transactions on Visualization and Computer Graphics 27, 7, 3250–3263.DOI: https://doi.org/10.1109/TVCG.2020.2968433Google ScholarGoogle ScholarDigital LibraryDigital Library
  3. relarar, 2019. https://github.com/relarar/Blender-AnimeHairSupporterGoogle ScholarGoogle Scholar
  4. Wu Shin-Ting, Adler C. G. da Silva, and Mercedes Rocío Gonzales Márquez, 2004. The Douglas-Peucker Algorithm: Sufficiency Conditions for Non-Self-Intersections. J. Braz. Comput. Soc., 9, 67-84.Google ScholarGoogle ScholarCross RefCross Ref
  5. Johannes Schmid, Martin Sebastian Senn, Markus Gross, Robert W. Sumner, 2011. OverCoat: an implicit canvas for 3D painting. ACM Trans. Graph. 30, 4, Article 28 (July 2011), 10 pages. DOI: https://doi.org/10.1145/2010324.1964923Google ScholarGoogle ScholarDigital LibraryDigital Library

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  • Published in

    cover image ACM Conferences
    SIGGRAPH '22: ACM SIGGRAPH 2022 Posters
    July 2022
    132 pages
    ISBN:9781450393614
    DOI:10.1145/3532719

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    New York, NY, United States

    Publication History

    • Published: 25 July 2022

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