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Comparison of place field detection methods and their effect on place field stability and drift in mouse dCA1
Vladislav Ivantaev1, Alireza Chenani2, Alessio Attardo3
1Albert-Ludwigs-Universität Freiburg, Fakultät für Biologie & Bernstein Center Freiburg, Hansastr 9a, Freiburg 79104, Germany.
Background:
Hippocampal place cells (PCs) undergo representational drift, i.e., a gradual change in their place fields despite unaltered behavior. While Ca2 + imaging enables long-term tracking of PC populations, distinct PC detection methods have been shown to yield different subpopulations of PCs, with only a few systematic comparisons between methods, especially in open arenas.
New Method:
We provide an analysis protocol for one-photon PC data obtained during free foraging in two-dimensional arenas that allows us to compare two widely used PC detection methods, significance of spatial information (SI), and split-half correlation (SHC), and their effect on representational drift. The analysis is demonstrated on previously published Ca2 + data from dorsal CA1 of freely foraging mice, with cells tracked for 10 consecutive days.
Results:
Both criteria, SI and SHC, yielded proportions of approx. 17% PCs with only 40% overlap. SI-identified PCs demonstrated higher stability, higher rate map correlations, and a slower rate of representational drift than SHC-PCs.
Comparison With Existing Methods:
Previous studies comparing SI and SHC PC detection methods in Ca2 + data did not focus on either open field behavior or representational drift.
Conclusion:
Our results indicate that the choice of PC detection method significantly affects the estimate of representational drift in Ca2 + imaging studies.
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