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Materialistic: Selecting Similar Materials in Images

About

Separating an image into meaningful underlying components is a crucial first step for both editing and understanding images. We present a method capable of selecting the regions of a photograph exhibiting the same material as an artist-chosen area. Our proposed approach is robust to shading, specular highlights, and cast shadows, enabling selection in real images. As we do not rely on semantic segmentation (different woods or metal should not be selected together), we formulate the problem as a similarity-based grouping problem based on a user-provided image location. In particular, we propose to leverage the unsupervised DINO features coupled with a proposed Cross-Similarity module and an MLP head to extract material similarities in an image. We train our model on a new synthetic image dataset, that we release. We show that our method generalizes well to real-world images. We carefully analyze our model's behavior on varying material properties and lighting. Additionally, we evaluate it against a hand-annotated benchmark of 50 real photographs. We further demonstrate our model on a set of applications, including material editing, in-video selection, and retrieval of object photographs with similar materials.

Prafull Sharma, Julien Philip, Micha\"el Gharbi, William T. Freeman, Fredo Durand, Valentin Deschaintre• 2023

Related benchmarks

TaskDatasetResultRank
Material SelectionOur Dataset (test)
mIoU51
4
Material SelectionNeRF
mIoU27
4
Material SelectionMIPNeRF-360
mIoU32
4
Multiview ConsistencyNeRF unseen views 49 (test)
Hamming Distance3.9
4
Multiview ConsistencyMIPNeRF-360 unseen views 2 (test)
Hamming Distance0.041
4
Multiview ConsistencyObject-centric (test)
Hamming Distance (x100)4.9
4
RobustnessNeRF unseen views 49 (test)
Hamming Distance (x100)3.2
4
RobustnessMIPNeRF-360 unseen views 2 (test)
Hamming Distance (x100)3.5
4
RobustnessObject-centric (test)
Hamming Distance (x100)1.8
4
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