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All figures (10)
Fig. 8. Strand having a smaller number of mass nodes is sampled to higher dimensions via addition of extra mass nodes. Blue nodes are original mass nodes and red nodes are newly created. The original and extra mass nodes of the left hand side strand are mapped to right hand side strand nodes
Fig. 9. A hair model created in under 3 min
Fig. 1. Flow diagram of the hairstyle capture process
Fig. 2a–d. The effect of wisp parameters. a Constant closeness value. b Increasing closeness value. c Decreasing closeness value. d The effect of fuzziness value
Table 1. Flow diagram of the hairstyle capture process
Fig. 11. A combination of consecutive key frame animation screenshots, showing how the in-between frames gradually transform the hair strands into the target key frames
Fig. 10. The model is animated with physical techniques
Fig. 3. The segments S3 and S12 are intersecting. Therefore, mass nodes forming the loop are mapped to a helix via the found axis of rotation
Fig. 6a–c. Extraction of physical and detail representative components from a skeleton strand. a The sketched skeleton strand. b The extracted components red rods are physical components and yellow rods are detail components. c The wisp generated
Fig. 7. The intersection points of the GSFS and the walls of the grid are found and a force vector between these points is formed
Journal Article
•
DOI
•
3D Hair sketching for real-time dynamic & key frame animations
[...]
Rıfat Aras
1
,
Barkın Başarankut
1
,
Tolga Capin
1
,
Bülent Özgüç
1
•
Institutions (1)
Bilkent University
1
02 Jul 2008
-
The Visual Computer