Andrei Sharf

Senior Academic

4D Reconstruction of Blooming Flowers

Qian Zheng, Xiaochen Fan, Minglun Gong, Andrei Sharf, Oliver Deussen, Hui Huang

Flower blooming is a beautiful phenomenon in nature as flowers open in an intricate and complex manner whereas petals bend, stretch and twist under various deformations. Flower petals are typically thin structures arranged in tight configurations with heavy self-occlusions. Thus, capturing and reconstructing spatially and temporally coherent sequences of blooming flowers is highly challenging. Early in the process only exterior petals are visible and thus interior parts will be completely missing in the captured data. Utilizing commercially available 3D scanners, we capture the visible parts of blooming flowers into a sequence of 3D point clouds. We reconstruct the flower geometry and deformation over time using a template-based dynamic tracking algorithm. To track and model interior petals hidden in early stages of the blooming process, we employ an adaptively constrained optimization. Flower characteristics are exploited to track petals both forward and backward in time. Our methods allow us to faithfully reconstruct the flower blooming process of different species. In addition, we provide comparisons with state-of-the-art physical simulation-based approaches and evaluate our approach by using photos of captured real flowers.

Publication language English
Pages 405-417
Journal Computer Graphics Forum
Volume 36
Issue number 6
Publication status Published - 01.09.2017

Keywords

I.3.5 [Computer Graphics]: Computational Geometry and Object Modelling Modelling; I.3.7 [Computer Graphics]: Three-Dimensional Graphics and Realism Animation
animation
animation
behavioural animation
geometric modelling
modelling
point-based animation

ASJC Scopus subject areas

Computer Graphics and Computer-Aided Design
Access to Document
10.1111/cgf.12989
Other files and links
Link to publication in Scopus