bioRxiv · 10.1101/2025.03.26.645628
Suite3D: Volumetric cell detection for two-photon microscopy
Abstract
In two-photon imaging of neuronal activity it is increasingly common to acquire 3-dimensional volumes. However, these volumes are typically processed plane by plane, leading to uncorrected axial movement, duplicated cells across planes, reduced signal-to-noise ratio per cell, and missed cells. To overcome these limitations, we introduce Suite3D, a volumetric cell detection pipeline. Suite3D corrects for rigid and non-rigid 3D brain motion, both lateral and axial. It detects neurons using 3D correlation, improving detectability. Finally, it performs 3D segmentation, identifying cells across imaging planes. We validated Suite3D with data from conventional multi-plane microscopes and advanced volumetric microscopes, at multiple resolutions and in multiple brain regions, and with ground truth anatomical labelling. Suite3D successfully detected cells appearing on multiple imaging planes, improving cell detectability and signal quality, avoiding duplications, and running faster than a prior volumetric pipeline. Suite3D offers a powerful solution for analyzing volumetric two-photon data.
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Haydaroglu, A., Dodgson, S., Krumin, M., Landau, A., Baruchin, L. J., Chang, T., Guo, J., Meyer, D., Reddy, C. B., Zhong, J., Ji, N., Schröder, S., Harris, K. D., Vaziri, A., Carandini, M.. 2025-04-01. Suite3D: Volumetric cell detection for two-photon microscopy. https://doi.org/10.1101/2025.03.26.645628
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