Layered Predictive Coding of Time-Consistent Dynamic 3D Meshes using a Non-Linear Predictor.

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Original languageEnglish
Title of host publicationICIP (5)
Pages109-112
Number of pages4
Publication statusPublished - 2007

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Layered Predictive Coding of Time-Consistent Dynamic 3D Meshes using a Non-Linear Predictor. / Stefanoski, Nikolce; Klie, Patrick; Liu, Xiaoliang et al.
ICIP (5). 2007. p. 109-112.

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Stefanoski N, Klie P, Liu X, Ostermann J. Layered Predictive Coding of Time-Consistent Dynamic 3D Meshes using a Non-Linear Predictor. In ICIP (5). 2007. p. 109-112 doi: 10.1109/ICIP.2007.4379777
Stefanoski, Nikolce ; Klie, Patrick ; Liu, Xiaoliang et al. / Layered Predictive Coding of Time-Consistent Dynamic 3D Meshes using a Non-Linear Predictor. ICIP (5). 2007. pp. 109-112
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title = "Layered Predictive Coding of Time-Consistent Dynamic 3D Meshes using a Non-Linear Predictor.",
author = "Nikolce Stefanoski and Patrick Klie and Xiaoliang Liu and J{\"o}rn Ostermann",
note = "Funding Information: This work is partly supported by the EC within FP6 under Grant 511568 with the acronym 3DTV. We would like to thank Matthi- as M{\"u}ller from ETH Z{\"u}rich for providing the Cow sequence. The Chicken character was created by Andrew Glassner, Tom McClu- re, Scott Benza, and Mark Van Langeveld. This short sequence of connectivity and vertex position data is distributed solely for the pur- pose of comparison of geometry compression techniques.",
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AU - Stefanoski, Nikolce

AU - Klie, Patrick

AU - Liu, Xiaoliang

AU - Ostermann, Jörn

N1 - Funding Information: This work is partly supported by the EC within FP6 under Grant 511568 with the acronym 3DTV. We would like to thank Matthi- as Müller from ETH Zürich for providing the Cow sequence. The Chicken character was created by Andrew Glassner, Tom McClu- re, Scott Benza, and Mark Van Langeveld. This short sequence of connectivity and vertex position data is distributed solely for the pur- pose of comparison of geometry compression techniques.

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