Smart hybrid microscopy for cell-friendly detection of rare events

W Willi L. Stepp G Giorgio Tortarolo J Juan C. Landoni E Emine Berna Durmus S Santiago N. Rodriguez Alvarez K Kyle M. Douglass M Martin Weigert S Suliana Manley

Abstract

Abstract Fluorescence microscopy offers unparalleled access to the spatial organization and dynamics of biological events in living samples, yet capturing rare processes over extended durations remains challenging due to trade-offs between exposure to excitation light and sample health. Here, we introduce hybrid-EDA, an event-driven acquisition (EDA) framework that combines the gentleness and contextual richness of phase-contrast with the functional specificity of fluorescence. We develop surveillance for events of interest in label-free microscopy using dynamics-informed neural networks that trigger smart fluorescence acquisitions upon detection. This allows us to dramatically reduce phototoxic damage while obtaining specific and functional information from fluorescence when beneficial. We demonstrate how hybrid-EDA enables improved imaging acquisitions of organelle contacts and mitochondrial divisions. We envision that hybrid-EDA will enable insights into a range of dynamic and rare biological processes, providing a powerful and general strategy for cell-friendly imaging.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 07, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

W

Willi L. Stepp

G

Giorgio Tortarolo

J

Juan C. Landoni

E

Emine Berna Durmus

S

Santiago N. Rodriguez Alvarez

K

Kyle M. Douglass

M

Martin Weigert

S

Suliana Manley