Abstract—In recent years researchers have made noticeable progresses in mesh denoising, that is, recovering high-quality 3D models from meshes corrupted with noise (raw or synthetic). Nevertheless, these state of the art approaches still fall short for robustly handling various noisy 3D models. The main technical challenge of robust mesh denoising is to remove noise while maximally preserving geometric features. In particular, this issue becomes more difficult for models with considerable amount of noise. In this paper we present a novel scheme for robust feature-preserving mesh denoising. Given a noisy mesh input, our method first estimates an initial mesh, then performs feature detection, identification and connection, and finally, iterat...
International audienceRecent advances in scanning and acquisition technologies allow the constructio...
Mesh denoising is a classical task in mesh processing. Many state-of-the-art methods are still unabl...
In this paper, we propose a feature-preserving mesh denoising algorithm which is effective, simple a...
Distinguishing among different kinds of features as well as noises on 3D mesh models is crucial for ...
LNCS v. 7633 entitled: Computational visual media : first international conference, CVM 2012, Beijin...
Working with noisy meshes and aiming at providing high-fidelity 3D object models without tampering t...
In this paper, we introduce a feature-preserving denoising algorithm. It is built on the premise tha...
Abstract We propose in this paper a robust surface mesh denoising method that can effectively remove...
Mesh denoising is a fundamental problem in digital geometry processing. It seeks to remove surface n...
We propose a novel global 3D mesh denoising method that is carried out in two steps, i.e. mollificat...
An approach to mesh denoising based on the concept of random walks is examined. The proposed method ...
code available at the following address:https://gitlab.inria.fr/marmando/deep-mesh-denoizingInternat...
© 2016 IEEE. A feature-preserving mesh denoising filter is proposed in the paper for 3-D printers. T...
Skeletons are well-known descriptors that capture the geometry and topology of 2D and 3D shapes. We ...
Abstract We present a simple denoising technique for geometric data rep-resented as a semiregular me...
International audienceRecent advances in scanning and acquisition technologies allow the constructio...
Mesh denoising is a classical task in mesh processing. Many state-of-the-art methods are still unabl...
In this paper, we propose a feature-preserving mesh denoising algorithm which is effective, simple a...
Distinguishing among different kinds of features as well as noises on 3D mesh models is crucial for ...
LNCS v. 7633 entitled: Computational visual media : first international conference, CVM 2012, Beijin...
Working with noisy meshes and aiming at providing high-fidelity 3D object models without tampering t...
In this paper, we introduce a feature-preserving denoising algorithm. It is built on the premise tha...
Abstract We propose in this paper a robust surface mesh denoising method that can effectively remove...
Mesh denoising is a fundamental problem in digital geometry processing. It seeks to remove surface n...
We propose a novel global 3D mesh denoising method that is carried out in two steps, i.e. mollificat...
An approach to mesh denoising based on the concept of random walks is examined. The proposed method ...
code available at the following address:https://gitlab.inria.fr/marmando/deep-mesh-denoizingInternat...
© 2016 IEEE. A feature-preserving mesh denoising filter is proposed in the paper for 3-D printers. T...
Skeletons are well-known descriptors that capture the geometry and topology of 2D and 3D shapes. We ...
Abstract We present a simple denoising technique for geometric data rep-resented as a semiregular me...
International audienceRecent advances in scanning and acquisition technologies allow the constructio...
Mesh denoising is a classical task in mesh processing. Many state-of-the-art methods are still unabl...
In this paper, we propose a feature-preserving mesh denoising algorithm which is effective, simple a...