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Fred Rieke

University of Washington · US
🔎 Find collaborators in Cognitive Neuroscience · Molecular Biology →
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Area of research
Cognitive Neuroscience · Molecular Biology
Research interest
Research interests include Retinal Development and Disorders, Neural dynamics and brain function, Photoreceptor and optogenetics research, and Visual perception and processing mechanisms.
h-index
61
citations
15,407
works
316
NIH funding
primary concept
email

Recent publications

Author Correction: Biophysical neural adaptation mechanisms enable artificial neural networks to capture dynamic retinal computation
Nature Communications 2025cited by 0position: middledoi
Biophysical neural adaptation mechanisms enable artificial neural networks to capture dynamic retinal computation
Nature Communications 2024cited by 18position: middledoi
Biophysical neural adaptation mechanisms enable artificial neural networks to capture dynamic retinal computation
bioRxiv (Cold Spring Harbor Laboratory) 2023cited by 8position: middledoi
A High-Density Narrow-Field Inhibitory Retinal Interneuron with Direct Coupling to Müller Glia
Journal of Neuroscience 2021cited by 16position: lastdoi
S-cone photoreceptors in the primate retina are functionally distinct from L and M cones
eLife 2019cited by 61position: lastdoi
Inferring synaptic inputs from spikes with a conductance-based neural encoding model
eLife 2019cited by 36position: middledoi
Stimulus- and goal-oriented frameworks for understanding natural vision
Nature Neuroscience 2018cited by 90position: lastdoi
Predicting how and when hidden neurons skew measured synaptic interactions
PLoS Computational Biology 2018cited by 33position: middledoi
GABA release selectively regulates synapse development at distinct inputs on direction-selective retinal ganglion cells
Proceedings of the National Academy of Sciences 2018cited by 25position: middledoi
Contrast-dependent red-green hue shift
Journal of the Optical Society of America A 2018cited by 6position: middledoi
Stimulation of functional neuronal regeneration from Müller glia in adult mice
Nature 2017cited by 523position: middledoi
Cellular and Circuit Mechanisms Shaping the Perceptual Properties of the Primate Fovea
Cell 2017cited by 182position: lastdoi
Effective synaptic interactions in subsampled nonlinear networks with strong coupling
arXiv (Cornell University) 2017cited by 3position: middle
Predicting how and when hidden neurons skew measured synaptic interactions
bioRxiv (Cold Spring Harbor Laboratory) 2017cited by 3position: middledoi
Direction-Selective Circuits Shape Noise to Ensure a Precise Population Code
Neuron 2016cited by 143position: lastdoi
Nonlinear Spatiotemporal Integration by Electrical and Chemical Synapses in the Retina
Neuron 2016cited by 117position: lastdoi
Synaptic Rectification Controls Nonlinear Spatial Integration of Natural Visual Inputs
Neuron 2016cited by 113position: lastdoi
Glutamatergic Monopolar Interneurons Provide a Novel Pathway of Excitation in the Mouse Retina
Current Biology 2016cited by 104position: middledoi
How Do Efficient Coding Strategies Depend on Origins of Noise in Neural Circuits?
PLoS Computational Biology 2016cited by 54position: middledoi
Lack of CaBP1/Caldendrin or CaBP2 Leads to Altered Ganglion Cell Responses
eNeuro 2016cited by 16position: middledoi
Brightness in human rod vision depends on slow neural adaptation to quantum statistics of light
Journal of Vision 2016cited by 3position: lastdoi
Brightness in human rod vision depends on neural adaptation to the quantum statistics of light
Journal of Vision 2016cited by 1position: lastdoi
C-terminal threonines and serines play distinct roles in the desensitization of rhodopsin, a G protein-coupled receptor
eLife 2015cited by 79position: lastdoi
Broad Thorny Ganglion Cells: A Candidate for Visual Pursuit Error Signaling in the Primate Retina
Journal of Neuroscience 2015cited by 57position: middledoi
Complex inhibitory microcircuitry regulates retinal signaling near visual threshold
Journal of Neurophysiology 2015cited by 43position: middledoi
Chromatic detection from cone photoreceptors to V1 neurons to behavior in rhesus monkeys
Journal of Vision 2015cited by 40position: middledoi
Neurotransmission plays contrasting roles in the maturation of inhibitory synapses on axons and dendrites of retinal bipolar cells
Proceedings of the National Academy of Sciences 2015cited by 40position: middledoi
Distinctive receptive field and physiological properties of a wide-field amacrine cell in the macaque monkey retina
Journal of Neurophysiology 2015cited by 38position: middledoi
A simple retinal mechanism contributes to perceptual interactions between rod- and cone-mediated responses in primates
eLife 2015cited by 26position: lastdoi
Limited range correlations, when modulated by firing rate, can substantially improve neural population coding
BMC Neuroscience 2015cited by 3position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Rachel Wong · Seattle University10 papers (2012–2021)Maxwell H. Turner · University of Iowa7 papers (2013–2018)Eric Shea‐Brown · Allen Institute for Brain Science7 papers (2013–2018)Gregory W. Schwartz · Northwestern University7 papers (2012–2016)Mrinalini Hoon · Seattle University6 papers (2014–2021)William N. Grimes · National Institute of Neurological Disorders and Stroke6 papers (2014–2021)Joel Zylberberg · University of Colorado Denver6 papers (2013–2025) · 5 papers (2012–2017)Michael B. Manookin · Seattle University5 papers (2015–2025)Jon Cafaro · Seattle University4 papers (2013–2016)Raunak Sinha · Smith-Kettlewell Eye Research Institute4 papers (2015–2019)Braden A. W. Brinkman · University of Illinois Urbana-Champaign4 papers (2016–2018)Saad Idrees · York University3 papers (2023–2025)Greg D. Field · University of California, Los Angeles3 papers (2023–2025)Juan M Angueyra · University of Maryland, College Park3 papers (2013–2019)Takeshi Yoshimatsu · Seattle University3 papers (2016–2021)Michael A. Buice · Allen Institute3 papers (2017–2018)Michael E. Rudd · University of Nevada, Reno2 papers (2016–2016)Adam Bleckert · Allen Institute for Brain Science2 papers (2014–2018) · 2 papers (2015–2015)
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