bioRxiv · 10.1101/311548
MIN1PIPE: A Miniscope 1-photon-based Calcium Imaging Signal Extraction Pipeline
Abstract
In vivo calcium imaging using 1-photon based miniscope and microendoscopic lens enables studies of neural activities in freely behaving animals. However, the high and fluctuating background, the inevitable movements and distortions of imaging field, and the extensive spatial overlaps of fluorescent signals emitted from imaged neurons inherent in this 1-photon imaging method present major challenges for extracting neuronal signals reliably and automatically from the raw imaging data. Here we develop a unifying algorithm called MINiscope 1-photon imaging PIPEline (MIN1PIPE) that contains several standalone modules and can handle a wide range of imaging conditions and qualities with minimal parameter tuning, and automatically and accurately isolate spatially localized neural signals. We quantitatively compare MIN1PIPE with other existing partial methods using both synthetic and real datasets obtained from different animal models, and show that MIN1PIPE has a superior performance both in terms of efficiency and precision in analyzing noisy miniscope calcium imaging data.
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Lu, J., Li, C., Singh-Alvarado, J., Zhou, Z., Fröhlich, F., Mooney, R., Wang, F.. 2018-04-30. MIN1PIPE: A Miniscope 1-photon-based Calcium Imaging Signal Extraction Pipeline. https://doi.org/10.1101/311548
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