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Nature Methods
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November 13, 2025
Differentiable simulation expands frontiers for biophysical neural models
Samuel A Neymotin, Hananel Hazan
Frontiers in Neural Circuits
|
March 25, 2014
Color opponent receptive fields self-organize in a biophysical model of visual cortex via spike-timing dependent plasticity
Akihiro Eguchi, Samuel A Neymotin, Simon M Stringer
Hippocampus
|
April 14, 2015
Impaired dendritic inhibition leads to epileptic activity in a computer model of CA3
M Sanjay, Samuel A Neymotin, Srinivasa B Krothapalli
Journal of Neuroscience Methods
|
May 3, 2008
The virtual slice setup
William W Lytton, Samuel A Neymotin, Michael L Hines
Journal of Computational Surgery
|
March 1, 2016
Multiscale modeling for clinical translation in neuropsychiatric disease
William W Lytton, Samuel A Neymotin, Cliff C Kerr
NPJ Schizophrenia
|
September 22, 2020
In silico hippocampal modeling for multi-target pharmacotherapy in schizophrenia
Mohamed A Sherif, Samuel A Neymotin, William W Lytton
Biorxiv : the Preprint Server for Biology
|
June 29, 2026
DeltaQ: Value-Guided Hebbian Learning in Spiking Neuronal Networks for Multi-Goal Navigation
Christopher Earl, Gozde Unal, Hananel Hazan, et al.
Frontiers in Computational Neuroscience
|
April 26, 2014
Electrostimulation to reduce synaptic scaling driven progression of Alzheimer's disease
Mark S Rowan, Samuel A Neymotin, William W Lytton
Journal of Clinical Neurophysiology : Official Publication of the American Electroencephalographic Society
|
November 16, 2010
Interictal EEG discoordination in a rat seizure model
Samuel A Neymotin, Heekyung Lee, André A Fenton, et al.
Neural Computation
|
June 7, 2008
Just-in-time connectivity for large spiking networks
William W Lytton, Ahmet Omurtag, Samuel A Neymotin, et al.
Page
of 5
Search research articles
Search
Showing results (1-10 of 43) with videos related to
Sort By:
Page
of 5
Nature Methods
|
November 13, 2025
Differentiable simulation expands frontiers for biophysical neural models
Samuel A Neymotin, Hananel Hazan
Frontiers in Neural Circuits
|
March 25, 2014
Color opponent receptive fields self-organize in a biophysical model of visual cortex via spike-timing dependent plasticity
Akihiro Eguchi, Samuel A Neymotin, Simon M Stringer
Hippocampus
|
April 14, 2015
Impaired dendritic inhibition leads to epileptic activity in a computer model of CA3
M Sanjay, Samuel A Neymotin, Srinivasa B Krothapalli
Journal of Neuroscience Methods
|
May 3, 2008
The virtual slice setup
William W Lytton, Samuel A Neymotin, Michael L Hines
Journal of Computational Surgery
|
March 1, 2016
Multiscale modeling for clinical translation in neuropsychiatric disease
William W Lytton, Samuel A Neymotin, Cliff C Kerr
NPJ Schizophrenia
|
September 22, 2020
In silico hippocampal modeling for multi-target pharmacotherapy in schizophrenia
Mohamed A Sherif, Samuel A Neymotin, William W Lytton
Biorxiv : the Preprint Server for Biology
|
June 29, 2026
DeltaQ: Value-Guided Hebbian Learning in Spiking Neuronal Networks for Multi-Goal Navigation
Christopher Earl, Gozde Unal, Hananel Hazan, et al.
Frontiers in Computational Neuroscience
|
April 26, 2014
Electrostimulation to reduce synaptic scaling driven progression of Alzheimer's disease
Mark S Rowan, Samuel A Neymotin, William W Lytton
Journal of Clinical Neurophysiology : Official Publication of the American Electroencephalographic Society
|
November 16, 2010
Interictal EEG discoordination in a rat seizure model
Samuel A Neymotin, Heekyung Lee, André A Fenton, et al.
Neural Computation
|
June 7, 2008
Just-in-time connectivity for large spiking networks
William W Lytton, Ahmet Omurtag, Samuel A Neymotin, et al.
Page
of 5