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◆ bioRxiv : the preprint server for biology2026-08-06· bioinformatics

Multi-Modal Foundation Model with Whole-Slide Attention Enables Transferrable Digital Pathology at Single-Cell Resolution.

Qitian Wu, Qiyu Gong, Luezhen Yuan, Zhiyi Li, Orr Ashenberg, Fei Chen, Ramnik Xavier, Caroline Uhler

原始摘要(英文原文)· Original abstract
Paired histopathology and spatial transcriptomics data are advancing our understanding of tissue biology and disease, but modeling both modalities at single-cell resolution while mapping local and distal cell-cell interdependencies remains computationally prohibitive. Here we introduce TissueFormer, a framework for pretraining foundation models with linear rather than quadratic computational complexity, overcoming a long-standing barrier to modeling long-range dependencies at scale. Trained on over 17 million image-expression pairs from 1.2K tissue slides, TissueFormer excels at predicting spatial gene expression from histology images at cellular resolution and scales to diagnostic tasks at the cell, region, and slide levels. Additionally, by identifying both long and short-range cell-cell interdependencies, our model enables the generation of testable hypotheses about disease mechanisms and staging, as demonstrated in lung fibrosis and breast cancer.
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Multi-Modal Foundation Model with Whole-Slide Attention Enables Transferrable Digital Pathology at Single-Cell Resolution. — 科研速览 Science Skim