Published July 2007 | Version public
Journal Article

Mesh Puppetry: Cascading Optimization of Mesh Deformation with Inverse Kinematics

Abstract

We present mesh puppetry, a variational framework for detail-preserving mesh manipulation through a set of high-level, intuitive, and interactive design tools. Our approach builds upon traditional rigging by optimizing skeleton position and vertex weights in an integrated manner. New poses and animations are created by specifying a few desired constraints on vertex positions, balance of the character, length and rigidity preservation, joint limits, and/or self-collision avoidance. Our algorithm then adjusts the skeleton and solves for the deformed mesh simultaneously through a novel cascading optimization procedure, allowing realtime manipulation of meshes with 50K+ vertices for fast design of pleasing and realistic poses. We demonstrate the potential of our framework through an interactive deformation platform and various applications such as deformation transfer and motion retargeting.

Additional Information

© 2007 Association for Computing Machinery. Publication date: July 2007. We would like to thank the reviewers for their valuable comments, and Shichao Hu and Bennett Wilburn for their help during demo and video production. Xiaohan Shi and Hujun Bao were partially supported by the 973 Program of China (No. 2202CB312100) and the Cultivation Fund of the Key Scientific and Technical Innovation Project, Ministry of Education of China (No. 705027). Additional funding include NSF (CAREER CCR-0133983 and ITR DMS-0453145), DOE (DE-FG02-04ER25657), Pixar Animation Studios, and the Okawa Foundation.

Additional details

Identifiers

Eprint ID
20698
Resolver ID
CaltechAUTHORS:20101105-135518677

Funding

973 Program of China
No. 2202CB312100
Cultivation Fund of the Key Scientific and Technical Innovation Project, Ministry of Education of China
705027
NSF
CCR-0133983
NSF
DMS-0453145
Department of Energy (DOE)
DE-FG02-04ER25657
Pixar Animation Studios
Okawa Foundation

Dates

Created
2010-11-08
Created from EPrint's datestamp field
Updated
2021-11-09
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