Spatial connectivity matches direction selectivity in visual cortex
暂无分享,去创建一个
[1] T. Bonhoeffer,et al. Relationship between input connectivity, morphology and orientation tuning of layer 2/3 pyramidal cells in mouse visual cortex , 2020, bioRxiv.
[2] D. Fitzpatrick,et al. Differential tuning of excitation and inhibition shapes direction selectivity in ferret V1 , 2018, Nature.
[3] M. Scanziani,et al. Cortical direction selectivity emerges at convergence of thalamic synapses , 2018, Nature.
[4] L. Petreanu,et al. The functional organization of cortical feedback inputs to primary visual cortex , 2018, Nature Neuroscience.
[5] Petr Znamenskiy,et al. Functional selectivity and specific connectivity of inhibitory neurons in primary visual cortex , 2018, bioRxiv.
[6] M. Carandini,et al. Vision and Locomotion Shape the Interactions between Neuron Types in Mouse Visual Cortex , 2016, Neuron.
[7] Sonja B. Hofer,et al. Synaptic organization of visual space in primary visual cortex , 2017, Nature.
[8] Andreas Hierlemann,et al. Causal evidence for retina dependent and independent visual motion computations in mouse cortex , 2017, Nature Neuroscience.
[9] Mario Dipoppa,et al. Suite2p: beyond 10,000 neurons with standard two-photon microscopy , 2016, bioRxiv.
[10] Kenneth D. Harris,et al. High-Yield Methods for Accurate Two-Alternative Visual Psychophysics in Head-Fixed Mice , 2016, bioRxiv.
[11] Nicholas J Priebe,et al. Mechanisms of Orientation Selectivity in the Primary Visual Cortex. , 2016, Annual review of vision science.
[12] Patrick J. Mineault,et al. Spatial clustering of tuning in mouse primary visual cortex , 2016, Nature Communications.
[13] David E. Whitney,et al. Orientation selectivity and the functional clustering of synaptic inputs in primary visual cortex , 2016, Nature Neuroscience.
[14] Denise M. Piscopo,et al. Large-scale imaging of cortical dynamics during sensory perception and behavior. , 2016, Journal of neurophysiology.
[15] Edward M Callaway,et al. Improved Monosynaptic Neural Circuit Tracing Using Engineered Rabies Virus Glycoproteins. , 2016, Cell reports.
[16] Qing Nie,et al. Primary visual cortex shows laminar‐specific and balanced circuit organization of excitatory and inhibitory synaptic connectivity , 2016, The Journal of physiology.
[17] Brett J. Graham,et al. Anatomy and function of an excitatory network in the visual cortex , 2016, Nature.
[18] Na Ji,et al. Thalamus provides layer 4 of primary visual cortex with orientation- and direction-tuned inputs , 2015, Nature Neuroscience.
[19] Li I. Zhang,et al. Strengthening of Direction Selectivity by Broadly Tuned and Spatiotemporally Slightly Offset Inhibition in Mouse Visual Cortex. , 2015, Cerebral cortex.
[20] Balázs Rózsa,et al. Single-cell–initiated monosynaptic tracing reveals layer-specific cortical network modules , 2015, Science.
[21] K. Svoboda,et al. A Cellular Resolution Map of Barrel Cortex Activity during Tactile Behavior , 2015, Neuron.
[22] Nathan C. Klapoetke,et al. Transgenic Mice for Intersectional Targeting of Neural Sensors and Effectors with High Specificity and Performance , 2015, Neuron.
[23] D. R. Muir,et al. Functional organization of excitatory synaptic strength in primary visual cortex , 2015, Nature.
[24] Demetris K. Roumis,et al. Removable cranial windows for long-term imaging in awake mice , 2014, Nature Protocols.
[25] Ian Nauhaus,et al. Topography and Areal Organization of Mouse Visual Cortex , 2014, The Journal of Neuroscience.
[26] Srinivas C. Turaga,et al. Space-time wiring specificity supports direction selectivity in the retina , 2014, Nature.
[27] Edward M. Callaway,et al. A dedicated circuit linking direction selective retinal ganglion cells to primary visual cortex , 2014, Nature.
[28] Li I. Zhang,et al. Linear Transformation of Thalamocortical input by Intracortical Excitation , 2013, Nature Neuroscience.
[29] Tuned Thalamic Excitation is Amplified by Visual Cortical Circuits , 2013, Nature Neuroscience.
[30] Stefan R. Pulver,et al. Ultra-sensitive fluorescent proteins for imaging neuronal activity , 2013, Nature.
[31] M. Carandini,et al. Inhibition dominates sensory responses in awake cortex , 2012, Nature.
[32] Sebastian Sulis Sato,et al. Finding a Needle in a Haystack: Identification of EGFP Tagged Neurons during Calcium Imaging by Means of Two-Photon Spectral Separation , 2012, Front. Mol. Neurosci..
[33] Nathan R. Wilson,et al. Division and subtraction by distinct cortical inhibitory networks in vivo , 2012, Nature.
[34] Karl Deisseroth,et al. Activation of Specific Interneurons Improves V1 Feature Selectivity and Visual Perception , 2012, Nature.
[35] Benjamin Sivyer,et al. Direction selectivity in the retina: symmetry and asymmetry in structure and function , 2012, Nature Reviews Neuroscience.
[36] M. Carandini,et al. Parvalbumin-Expressing Interneurons Linearly Transform Cortical Responses to Visual Stimuli , 2012, Neuron.
[37] R. Reid,et al. Local Diversity and Fine-Scale Organization of Receptive Fields in Mouse Visual Cortex , 2011, The Journal of Neuroscience.
[38] M. Scanziani,et al. How Inhibition Shapes Cortical Activity , 2011, Neuron.
[39] R. Yuste,et al. Dense, Unspecific Connectivity of Neocortical Parvalbumin-Positive Interneurons: A Canonical Microcircuit for Inhibition? , 2011, The Journal of Neuroscience.
[40] James H. Marshel,et al. New Rabies Virus Variants for Monitoring and Manipulating Activity and Gene Expression in Defined Neural Circuits , 2011, Neuron.
[41] Li I. Zhang,et al. Broad Inhibition Sharpens Orientation Selectivity by Expanding Input Dynamic Range in Mouse Simple Cells , 2011, Neuron.
[42] Hongkui Zeng,et al. Differential tuning and population dynamics of excitatory and inhibitory neurons reflect differences in local intracortical connectivity , 2011, Nature Neuroscience.
[43] Hongkui Zeng,et al. Differential tuning and population dynamics of excitatory and inhibitory neurons reflect differences in local intracortical connectivity , 2011, Nature Neuroscience.
[44] M. Drobizhev,et al. Two-photon absorption properties of fluorescent proteins , 2011, Nature Methods.
[45] Andreas T Schaefer,et al. Transfection via whole-cell recording in vivo: bridging single-cell physiology, genetics and connectomics , 2011, Nature Neuroscience.
[46] Kevin L. Briggman,et al. Wiring specificity in the direction-selectivity circuit of the retina , 2011, Nature.
[47] P. J. Sjöström,et al. Functional specificity of local synaptic connections in neocortical networks , 2011, Nature.
[48] Li I. Zhang,et al. Visual Representations by Cortical Somatostatin Inhibitory Neurons—Selective But with Weak and Delayed Responses , 2010, The Journal of Neuroscience.
[49] Kristina J. Nielsen,et al. Targeting Single Neuronal Networks for Gene Expression and Cell Labeling In Vivo , 2010, Neuron.
[50] H. Adesnik,et al. Lateral competition for cortical space by layer-specific horizontal circuits , 2010, Nature.
[51] Hongbo Jia,et al. Dendritic organization of sensory input to cortical neurons in vivo , 2010, Nature.
[52] Li I. Zhang,et al. Intervening Inhibition Underlies Simple-Cell Receptive Field Structure in Visual Cortex , 2009, Nature Neuroscience.
[53] Philipp Berens,et al. CircStat: AMATLABToolbox for Circular Statistics , 2009, Journal of Statistical Software.
[54] M. Häusser,et al. Targeted single-cell electroporation of mammalian neurons in vivo , 2009, Nature Protocols.
[55] W. Denk,et al. Targeted patch-clamp recordings and single-cell electroporation of unlabeled neurons in vivo , 2008, Nature Methods.
[56] Denis G. Pelli,et al. ECVP '07 Abstracts , 2007, Perception.
[57] Ian R. Wickersham,et al. Monosynaptic Restriction of Transsynaptic Tracing from Single, Genetically Targeted Neurons , 2007, Neuron.
[58] Ian R. Wickersham,et al. Retrograde neuronal tracing with a deletion-mutant rabies virus , 2007, Nature Methods.
[59] K. Hoffmann,et al. Contribution of inhibitory mechanisms to direction selectivity and response normalization in macaque middle temporal area. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[60] T. Harkany,et al. Pyramidal cell communication within local networks in layer 2/3 of rat neocortex , 2003, The Journal of physiology.
[61] Karel Svoboda,et al. ScanImage: Flexible software for operating laser scanning microscopes , 2003, Biomedical engineering online.
[62] Lyle J. Graham,et al. Orientation and Direction Selectivity of Synaptic Inputs in Visual Cortical Neurons A Diversity of Combinations Produces Spike Tuning , 2003, Neuron.
[63] Frank S. Werblin,et al. Mechanisms and circuitry underlying directional selectivity in the retina , 2002, Nature.
[64] Luis Puelles,et al. Cortical Excitatory Neurons and Glia, But Not GABAergic Neurons, Are Produced in the Emx1-Expressing Lineage , 2002, The Journal of Neuroscience.
[65] J. Alonso,et al. Functional connectivity between simple cells and complex cells in cat striate cortex , 1998, Nature Neuroscience.
[66] M. Livingstone,et al. Mechanisms of Direction Selectivity in Macaque V1 , 1998, Neuron.
[67] E. Kandel,et al. Control of Memory Formation Through Regulated Expression of a CaMKII Transgene , 1996, Science.
[68] H. Barlow,et al. The mechanism of directionally selective units in rabbit's retina. , 1965, The Journal of physiology.