Reference Summary: A universal transferring framework for diffusion models to generate 3D properties, segmentation, and intrinsic images. Project page: We present Transparent Neural Surface Refinement (TNSR), which reconstructs ...

Diffsci Cvpr 2024 -

A universal transferring framework for diffusion models to generate 3D properties, segmentation, and intrinsic images. Project page: We present Transparent Neural Surface Refinement (TNSR), which reconstructs ... EpiDiff only takes 12 seconds to generate 16 multiview-consistent and high-quality images.

Important details found

  • A universal transferring framework for diffusion models to generate 3D properties, segmentation, and intrinsic images.
  • Project page: We present Transparent Neural Surface Refinement (TNSR), which reconstructs ...
  • EpiDiff only takes 12 seconds to generate 16 multiview-consistent and high-quality images.
  • Diffusion models have demonstrated remarkable performance in image and video synthesis.
  • We present an approach to modeling an image-space prior on scene motion.

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Supporting Images

DiffSCI (CVPR 2024)
[CVPR 2024] EpiDiff: Enhancing Multi-View Synthesis via Localized Epipolar-Constrained Diffusion
Hierarchical Patch Diffusion Models for High-Resolution Video Generation [CVPR 2024]
[CVPR 2024] Rethinking Inductive Biases for Surface Normal Estimation
[CVPR 2024] Differentiable Neural Surface Refinement for Transparent Objects
[CVPR 2024 Oral] Rethinking Inductive Biases for Surface Normal Estimation
[CVPR 2024] Exploiting Diffusion Prior for Generalizable Dense Prediction
[CVPR 2024] Robust Depth Enhancement via Polarization Prompt Fusion Tuning
[CVPR 24 Best Paper] Generative Image Dynamics
DragDiffusion (CVPR 2024, Highlight)
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DiffSCI (CVPR 2024)

DiffSCI (CVPR 2024)

Read more details and related context about DiffSCI (CVPR 2024).

[CVPR 2024] EpiDiff: Enhancing Multi-View Synthesis via Localized Epipolar-Constrained Diffusion

[CVPR 2024] EpiDiff: Enhancing Multi-View Synthesis via Localized Epipolar-Constrained Diffusion

EpiDiff only takes 12 seconds to generate 16 multiview-consistent and high-quality images. Instead of limited to fixed views, ...

Hierarchical Patch Diffusion Models for High-Resolution Video Generation [CVPR 2024]

Hierarchical Patch Diffusion Models for High-Resolution Video Generation [CVPR 2024]

Diffusion models have demonstrated remarkable performance in image and video synthesis. However, scaling them to ...

[CVPR 2024] Rethinking Inductive Biases for Surface Normal Estimation

[CVPR 2024] Rethinking Inductive Biases for Surface Normal Estimation

IEEE/CVF Conference on Computer Vision and Pattern Recognition

[CVPR 2024] Differentiable Neural Surface Refinement for Transparent Objects

[CVPR 2024] Differentiable Neural Surface Refinement for Transparent Objects

Project page: We present Transparent Neural Surface Refinement (TNSR), which reconstructs ...

[CVPR 2024 Oral] Rethinking Inductive Biases for Surface Normal Estimation

[CVPR 2024 Oral] Rethinking Inductive Biases for Surface Normal Estimation

IEEE/CVF Conference on Computer Vision and Pattern Recognition

[CVPR 2024] Exploiting Diffusion Prior for Generalizable Dense Prediction

[CVPR 2024] Exploiting Diffusion Prior for Generalizable Dense Prediction

A universal transferring framework for diffusion models to generate 3D properties, segmentation, and intrinsic images. Project ...

[CVPR 2024] Robust Depth Enhancement via Polarization Prompt Fusion Tuning

[CVPR 2024] Robust Depth Enhancement via Polarization Prompt Fusion Tuning

Read more details and related context about [CVPR 2024] Robust Depth Enhancement via Polarization Prompt Fusion Tuning.

[CVPR 24 Best Paper] Generative Image Dynamics

[CVPR 24 Best Paper] Generative Image Dynamics

We present an approach to modeling an image-space prior on scene motion. Our prior is learned ...

DragDiffusion (CVPR 2024, Highlight)

DragDiffusion (CVPR 2024, Highlight)

Read more details and related context about DragDiffusion (CVPR 2024, Highlight).