Frances K. Skinner

Affiliations: 
University of Toronto, Toronto, ON, Canada 
Website:
http://www.uhnres.utoronto.ca/labs/skinner/main.htm
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"Frances Skinner"
Mean distance: 13.29 (cluster 17)
 
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Publications

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Sun Z, Crompton D, Lankarany M, et al. (2023) Reduced oriens-lacunosum/moleculare cell model identifies biophysical current balances for theta frequency spiking resonance. Frontiers in Neural Circuits. 17: 1076761
Rich S, Moradi Chameh H, Rafiee M, et al. (2021) Corrigendum: Inhibitory Network Bistability Explains Increased Interneuronal Activity Prior to Seizure Onset. Frontiers in Neural Circuits. 15: 727442
Guet-McCreight A, Skinner FK. (2021) Deciphering how interneuron specific 3 cells control oriens lacunosum-moleculare cells to contribute to circuit function. Journal of Neurophysiology
Chatzikalymniou AP, Gumus M, Skinner FK. (2021) Linking minimal and detailed models of CA1 microcircuits reveals how theta rhythms emerge and their frequencies controlled. Hippocampus
Skinner FK, Rich S, Lunyov AR, et al. (2021) A Hypothesis for Theta Rhythm Frequency Control in CA1 Microcircuits. Frontiers in Neural Circuits. 15: 643360
Sekulić V, Yi F, Garrett T, et al. (2020) Integration of Within-Cell Experimental Data With Multi-Compartmental Modeling Predicts H-Channel Densities and Distributions in Hippocampal OLM Cells. Frontiers in Cellular Neuroscience. 14: 277
Rich S, Moradi Chameh H, Sekulic V, et al. (2020) Modeling Reveals Human-Rodent Differences in H-Current Kinetics Influencing Resonance in Cortical Layer 5 Neurons. Cerebral Cortex (New York, N.Y. : 1991)
Rich S, Hutt A, Skinner FK, et al. (2020) Neurostimulation stabilizes spiking neural networks by disrupting seizure-like oscillatory transitions. Scientific Reports. 10: 15408
Guet-McCreight A, Skinner FK. (2020) Computationally going where experiments cannot: a dynamical assessment of dendritic ion channel currents during -like states. F1000research. 9: 180
Guet-McCreight A, Skinner FK, Topolnik L. (2020) Common Principles in Functional Organization of VIP/Calretinin Cell-Driven Disinhibitory Circuits Across Cortical Areas. Frontiers in Neural Circuits. 14: 32
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