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Single-Objective Light-Sheet Microscopy Allows Long-Term, High-Resolution In Vivo Brain Imaging of Drosophila

Oct 2026 · ACS Photonics · 0 citations · 76 references

Abstract

In vivo imaging of dynamic subcellular brain structures is key to understanding several phenomena in neuroscience. However, in the fruit fly, its implementation has been hindered by a trade-off among spatial resolution, speed, photobleaching, phototoxicity, and setup complexity required to access specific target regions of the small brain of Drosophila. Here, we present DrosoScope: a single-objective light-sheet microscope customized for in vivo imaging of adult flies and optimized for maximum resolution. With it, we imaged the axonal projections of small lateral ventral neurons (s-LNvs) in intact adult flies. We imaged the plasma membrane, cytoplasm, mitochondria, and dense-core vesicles with high spatial resolution of up to 310 nm, lower photobleaching than confocal microscopy, lower invasiveness and reduced sample-mounting complexity than alternative light-sheet technologies, and without relying on potentially phototoxic pulsed infrared lasers. Furthermore, we implemented active focus stabilization and sample-drift correction. Combined, these features enabled time-lapse brain imaging in living flies for up to 5 h, revealing neuronal plasticity and dynamic mitochondrial transport.

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