Alert button
Picture for Akin Caliskan

Akin Caliskan

Alert button

RANA: Relightable Articulated Neural Avatars

Add code
Bookmark button
Alert button
Dec 06, 2022
Umar Iqbal, Akin Caliskan, Koki Nagano, Sameh Khamis, Pavlo Molchanov, Jan Kautz

Figure 1 for RANA: Relightable Articulated Neural Avatars
Figure 2 for RANA: Relightable Articulated Neural Avatars
Figure 3 for RANA: Relightable Articulated Neural Avatars
Figure 4 for RANA: Relightable Articulated Neural Avatars
Viaarxiv icon

LiP-Flow: Learning Inference-time Priors for Codec Avatars via Normalizing Flows in Latent Space

Add code
Bookmark button
Alert button
Mar 15, 2022
Emre Aksan, Shugao Ma, Akin Caliskan, Stanislav Pidhorskyi, Alexander Richard, Shih-En Wei, Jason Saragih, Otmar Hilliges

Figure 1 for LiP-Flow: Learning Inference-time Priors for Codec Avatars via Normalizing Flows in Latent Space
Figure 2 for LiP-Flow: Learning Inference-time Priors for Codec Avatars via Normalizing Flows in Latent Space
Figure 3 for LiP-Flow: Learning Inference-time Priors for Codec Avatars via Normalizing Flows in Latent Space
Figure 4 for LiP-Flow: Learning Inference-time Priors for Codec Avatars via Normalizing Flows in Latent Space
Viaarxiv icon

Multi-person Implicit Reconstruction from a Single Image

Add code
Bookmark button
Alert button
Apr 19, 2021
Armin Mustafa, Akin Caliskan, Lourdes Agapito, Adrian Hilton

Figure 1 for Multi-person Implicit Reconstruction from a Single Image
Figure 2 for Multi-person Implicit Reconstruction from a Single Image
Figure 3 for Multi-person Implicit Reconstruction from a Single Image
Figure 4 for Multi-person Implicit Reconstruction from a Single Image
Viaarxiv icon

Temporal Consistency Loss for High Resolution Textured and Clothed 3DHuman Reconstruction from Monocular Video

Add code
Bookmark button
Alert button
Apr 19, 2021
Akin Caliskan, Armin Mustafa, Adrian Hilton

Figure 1 for Temporal Consistency Loss for High Resolution Textured and Clothed 3DHuman Reconstruction from Monocular Video
Figure 2 for Temporal Consistency Loss for High Resolution Textured and Clothed 3DHuman Reconstruction from Monocular Video
Figure 3 for Temporal Consistency Loss for High Resolution Textured and Clothed 3DHuman Reconstruction from Monocular Video
Figure 4 for Temporal Consistency Loss for High Resolution Textured and Clothed 3DHuman Reconstruction from Monocular Video
Viaarxiv icon

Multi-View Consistency Loss for Improved Single-Image 3D Reconstruction of Clothed People

Add code
Bookmark button
Alert button
Sep 29, 2020
Akin Caliskan, Armin Mustafa, Evren Imre, Adrian Hilton

Figure 1 for Multi-View Consistency Loss for Improved Single-Image 3D Reconstruction of Clothed People
Figure 2 for Multi-View Consistency Loss for Improved Single-Image 3D Reconstruction of Clothed People
Figure 3 for Multi-View Consistency Loss for Improved Single-Image 3D Reconstruction of Clothed People
Figure 4 for Multi-View Consistency Loss for Improved Single-Image 3D Reconstruction of Clothed People
Viaarxiv icon

Learning Dense Wide Baseline Stereo Matching for People

Add code
Bookmark button
Alert button
Oct 02, 2019
Akin Caliskan, Armin Mustafa, Evren Imre, Adrian Hilton

Figure 1 for Learning Dense Wide Baseline Stereo Matching for People
Figure 2 for Learning Dense Wide Baseline Stereo Matching for People
Figure 3 for Learning Dense Wide Baseline Stereo Matching for People
Figure 4 for Learning Dense Wide Baseline Stereo Matching for People
Viaarxiv icon