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Publication : Tracking the Same Neurons across Multiple Days in Ca<sup>2+</sup> Imaging Data.

First Author  Sheintuch L Year  2017
Journal  Cell Rep Volume  21
Issue  4 Pages  1102-1115
PubMed ID  29069591 Mgi Jnum  J:269830
Mgi Id  MGI:6274031 Doi  10.1016/j.celrep.2017.10.013
Citation  Sheintuch L, et al. (2017) Tracking the Same Neurons across Multiple Days in Ca(2+) Imaging Data. Cell Rep 21(4):1102-1115
abstractText  Ca(2+) imaging techniques permit time-lapse recordings of neuronal activity from large populations over weeks. However, without identifying the same neurons across imaging sessions (cell registration), longitudinal analysis of the neural code is restricted to population-level statistics. Accurate cell registration becomes challenging with increased numbers of cells, sessions, and inter-session intervals. Current cell registration practices, whether manual or automatic, do not quantitatively evaluate registration accuracy, possibly leading to data misinterpretation. We developed a probabilistic method that automatically registers cells across multiple sessions and estimates the registration confidence for each registered cell. Using large-scale Ca(2+) imaging data recorded over weeks from the hippocampus and cortex of freely behaving mice, we show that our method performs more accurate registration than previously used routines, yielding estimated error rates <5%, and that the registration is scalable for many sessions. Thus, our method allows reliable longitudinal analysis of the same neurons over long time periods.
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