JUMP-lite: Compact, reproducible benchmarking of cell representations

August 07, 2026 Β· Grace Period Β· πŸ› WACV 2027

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Authors AlΓ‘n F. MuΓ±oz, Johan Fredin Haslum, Runxi Shen, Anne E. Carpenter, Shantanu Singh arXiv ID 2608.07632 Category q-bio.QM Cross-listed cs.CV, eess.IV Citations 0 Venue WACV 2027
Abstract
Image-based profiling captures rich phenotypic signatures for drug discovery and functional genomics. Large public datasets like JUMP Cell Painting now provide millions of images for systematic study. However, the scale of these resources, 115 TB for JUMP alone, and fragmented evaluation practices make systematic comparison of representation methods intractable for many researchers. Here we present Nahual, an open-source framework for reproducible model deployment, and JUMP-lite, a curated 116 GB subset of JUMP that is 1000 times smaller while preserving phenotypic diversity through careful selection of perturbations with high-confidence annotations and a storage reduction via lossy JPEG XL compression. With these, we benchmark five representation methods, including classical features (CellProfiler) and deep learning models (MorphEM, OpenPhenom, SubCell, DINOv2), and demonstrate that compression preserves downstream signal while standardized phenotypic activity and consistency metrics reveal meaningful performance differences across methods. Together, JUMP-lite and Nahual provide a foundation for accessible, reproducible benchmarking of image-based cell representations.
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