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ShapeEmbed: a self-supervised learning framework for 2D contour quantification

About

The shape of objects is an important source of visual information in a wide range of applications. One of the core challenges of shape quantification is to ensure that the extracted measurements remain invariant to transformations that preserve an object's intrinsic geometry, such as changing its size, orientation, and position in the image. In this work, we introduce ShapeEmbed, a self-supervised representation learning framework designed to encode the contour of objects in 2D images, represented as a Euclidean distance matrix, into a shape descriptor that is invariant to translation, scaling, rotation, reflection, and point indexing. Our approach overcomes the limitations of traditional shape descriptors while improving upon existing state-of-the-art autoencoder-based approaches. We demonstrate that the descriptors learned by our framework outperform their competitors in shape classification tasks on natural and biological images. We envision our approach to be of particular relevance to biological imaging applications.

Anna Foix Romero, Craig Russell, Alexander Krull, Virginie Uhlmann• 2025

Related benchmarks

TaskDatasetResultRank
2D shape retrievalMendeley 2D shape dataset
mAP73
12
2D shape retrievalMPEG-7 CE-Shape-1 Part B
mAP41
12
ClassificationMNIST
F1 Score96
7
Shape classificationBBBC010
F1 Score87
7
ClassificationMendeley
F1-score100
7
Shape classificationHeLa Kyoto
F1-score85
7
Shape classificationMOC
F1 Score70
7
ClassificationMPEG-7
F1 Score75
7
ClassificationMPEG-400
F1-score94
7
Shape classificationcBBBC010
F1 Score84
7
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