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February 11, 2026Scientific Reports2 citationsOpen Access

Fast learning-free organoid quantification and tracking with OrganoSeg2

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CWCameron WellsNLNajwa LabbanSSShayna L. Showalter

Key Points

  • The aim is to enhance organoid image analysis through improved segmentation algorithms.
  • Introduced OrganoSeg2 software for organoid analysis.
  • Utilized multi-window adaptive thresholding for improved segmentation.
  • Applied in luminal breast cancer organoids for growth and treatment response tracking.
  • OrganoSeg2 demonstrates enhanced segmentation accuracy compared to alternatives.
  • Achieved approximately 10-fold acceleration in processing time.
  • Effectively tracks growth trajectories and radiotherapy responses.

Abstract

Organoids are routinely imaged by brightfield microscopy at low magnification, but these images are challenging to analyze quantitatively at scale. Given differences in organoid-culture format and image acquisition among research groups, there is a general need for versatile segmentation algorithms that refine for specific applications. Here, we introduce OrganoSeg2, an overhauled software that substantively advances the multi-window adaptive thresholding of its predecessor. OrganoSeg2 gives users access to additional segmentation parameters that were latent in OrganoSeg, and common operations are accelerated ~10-fold. Using data from six organoid types, we find that the generalized segmentation accuracy of OrganoSeg2 surpasses multiple alternatives, including segmenters based on deep learning. OrganoSeg2 adds longitudinal single-organoid tracking and multicolor fluorescence quantification, which we use to examine growth trajectories and radiotherapy responses in luminal breast cancer organoids. OrganoSeg2 is shared freely as installation packages for current users and source code for future developers ( https://github.com/JanesLab/OrganoSeg2 ).

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Cite This Study

Wells et al. (2026) studied this question.

synapsesocial.com/papers/698be001058ab1890a13ba0fhttps://doi.org/10.1038/s41598-026-37526-7
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