Editing Mesh Sequences with Varying Connectivity

Fuente: arXiv
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Autores principales: Hácha, Filip, Dvořák, Jan, Káčereková, Zuzana, Váša, Libor
Formato: Preprint
Publicado: 2024
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author Hácha, Filip
Dvořák, Jan
Káčereková, Zuzana
Váša, Libor
author_facet Hácha, Filip
Dvořák, Jan
Káčereková, Zuzana
Váša, Libor
contents Time-varying connectivity of triangle mesh sequences leads to substantial difficulties in their processing. Unlike editing sequences with constant connectivity, editing sequences with varying connectivity requires addressing the problem of temporal correspondence between the frames of the sequence. We present a method for time-consistent editing of triangle mesh sequences with varying connectivity using sparse temporal correspondence, which can be obtained using existing methods. Our method includes a deformation model based on the usage of the sparse temporal correspondence, which is suitable for the temporal propagation of user-specified deformations of the edited surface with respect to the shape and true topology of the surface while preserving the individual connectivity of each frame. Since there is no other method capable of comparable types of editing on time-varying meshes, we compare our method and the proposed deformation model with a baseline approach and demonstrate the benefits of our framework.
format Preprint
id arxiv_https___arxiv_org_abs_2405_04957
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Editing Mesh Sequences with Varying Connectivity
Hácha, Filip
Dvořák, Jan
Káčereková, Zuzana
Váša, Libor
Graphics
Time-varying connectivity of triangle mesh sequences leads to substantial difficulties in their processing. Unlike editing sequences with constant connectivity, editing sequences with varying connectivity requires addressing the problem of temporal correspondence between the frames of the sequence. We present a method for time-consistent editing of triangle mesh sequences with varying connectivity using sparse temporal correspondence, which can be obtained using existing methods. Our method includes a deformation model based on the usage of the sparse temporal correspondence, which is suitable for the temporal propagation of user-specified deformations of the edited surface with respect to the shape and true topology of the surface while preserving the individual connectivity of each frame. Since there is no other method capable of comparable types of editing on time-varying meshes, we compare our method and the proposed deformation model with a baseline approach and demonstrate the benefits of our framework.
title Editing Mesh Sequences with Varying Connectivity
topic Graphics
url https://arxiv.org/abs/2405.04957