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Showing 1–3 of 3 results
Advanced filters: Author: Gwinky G. K. Yip Clear advanced filters
  • The authors present MorphoGenie, an unsupervised model that profiles cell shapes to predict cellular heterogeneity without manual labels. It provides a scalable, interpretable, and generalizable approach for data-driven exploration of cellular heterogeneity across diverse imaging modalities.

    • Rashmi Sreeramachandra Murthy
    • Shobana V. Stassen
    • Kevin K. Tsia
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-20
  • Scalable trajectory inference for multi-omic single cell datasets is challenging in terms of capturing non-tree complex topologies. Here the authors present a method, VIA, that scales to millions of cells across multiple omic modalities using lazy-teleporting random walks.

    • Shobana V. Stassen
    • Gwinky G. K. Yip
    • Kevin K. Tsia
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-18
  • This protocol describes how to use free-space angular-chirp-enhanced delay (FACED), an all-optical, passive and reconfigurable laser-scanning approach, to increase the imaging speed of various microscopy modalities.

    • Queenie T. K. Lai
    • Gwinky G. K. Yip
    • Kevin K. Tsia
    Protocols
    Nature Protocols
    Volume: 16, P: 4227-4264