Exact(5)
First, interneuron and principal cell coherence have distinct relationships to task performance.
The phase of principal cell coherence to each rhythm during correct and incorrect trials.
We hope that these changes better emphasize the meaningful trends in the single cell coherence to each rhythm.
The strength of principal cell coherence to each rhythm is greater during correct trials than incorrect trials.
The strength of principal cell coherence to each rhythm was also greater during correct trials than during incorrect trials, suggesting that there is an organization of principal cell spike timing that is unique to correct trials.
Similar(55)
It had been recognised even earlier that extracellular Ca2+ levels are important for cell-to-cell coherence, and it is now established that the (calcium-dependent) homotypic interaction of the extracellular domains of E-cadherin molecules, located in adherens junctions, is crucial for the mechanical stability of intercellular contacts (Perez-Moreno et al, 2003).
We demonstrate that principal cells exhibiting coherence to correct trials are almost exclusively coherent to Correct Trials Only for beta15-35Hz, low gamma35-55Hz, and high gamma65-90Hz, while the theta4-12Hz coherent population exhibits a significantly greater number of neurons that are coherent to All Trials.
For very small grid cells, the coherence is very high.
The majority of principal cells exhibited coherence to a single rhythmic circuit during both correct and incorrect trial types.
In this figure, it is clear that the reviewer was correct in predicting that many of the cells exhibiting coherence to two rhythms exhibit coherence to theta.
In response to this question, we calculated the mean firing rate during 250ms time bins within correct trial nose pokes for all interneurons and principal cells exhibiting coherence to a specific rhythm.
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