Citation Relationships

Legends: Link to a Model Reference cited by multiple papers


Martínez-Cañada P, Mobarhan MH, Halnes G, Fyhn M, Morillas C, Pelayo F, Einevoll GT (2018) Biophysical network modeling of the dLGN circuit: Effects of cortical feedback on spatial response properties of relay cells. PLoS Comput Biol 14:e1005930 [PubMed]

   Cortical feedback alters visual response properties of dLGN relay cells (Martínez-Cañada et al 2018)

References and models cited by this paper

References and models that cite this paper

Alitto HJ, Usrey WM (2003) Corticothalamic feedback and sensory processing. Curr Opin Neurobiol 13:440-5 [PubMed]
Alitto HJ, Usrey WM (2015) Surround suppression and temporal processing of visual signals. J Neurophysiol 113:2605-17 [Journal] [PubMed]
Alitto HJ, Usrey WM (2015) Dissecting the dynamics of corticothalamic feedback. Neuron 86:605-7 [Journal] [PubMed]
Alitto HJ, Weyand TG, Usrey WM (2005) Distinct properties of stimulus-evoked bursts in the lateral geniculate nucleus. J Neurosci 25:514-23 [Journal] [PubMed]
Allken V, Chepkoech JL, Einevoll GT, Halnes G (2014) The subcellular distribution of T-type Ca2+ channels in interneurons of the lateral geniculate nucleus. PLoS One 9:e107780 [Journal] [PubMed]
   The subcellular distribution of T-type Ca2+ channels in LGN interneurons (Allken et al. 2014) [Model]
Alonso JM, Usrey WM, Reid RC (2001) Rules of connectivity between geniculate cells and simple cells in cat primary visual cortex. J Neurosci 21:4002-15 [PubMed]
Andolina IM, Jones HE, Sillito AM (2013) Effects of cortical feedback on the spatial properties of relay cells in the lateral geniculate nucleus. J Neurophysiol 109:889-99 [Journal] [PubMed]
Andolina IM, Jones HE, Wang W, Sillito AM (2007) Corticothalamic feedback enhances stimulus response precision in the visual system. Proc Natl Acad Sci U S A 104:1685-90 [Journal] [PubMed]
Augustinaite S, Yanagawa Y, Heggelund P (2011) Cortical feedback regulation of input to visual cortex: role of intrageniculate interneurons. J Physiol 589:2963-77 [Journal] [PubMed]
Barlow HB (1961) Possible principles underlying the transformations of sensory messages Sensory Communication, Rosenblith WA, ed. pp.217
Binzegger T, Douglas RJ, Martin KA (2004) A quantitative map of the circuit of cat primary visual cortex. J Neurosci 24:8441-53 [Journal] [PubMed]
Blitz DM, Regehr WG (2005) Timing and specificity of feed-forward inhibition within the LGN. Neuron 45:917-28 [Journal] [PubMed]
Bloomfield SA, Sherman SM (1989) Dendritic current flow in relay cells and interneurons of the cat's lateral geniculate nucleus. Proc Natl Acad Sci U S A 86:3911-4 [PubMed]
Boudreau CE, Ferster D (2005) Short-term depression in thalamocortical synapses of cat primary visual cortex. J Neurosci 25:7179-90 [Journal] [PubMed]
Briggs F, Usrey WM (2011) Corticogeniculate feedback and visual processing in the primate. J Physiol 589:33-40 [Journal] [PubMed]
Cudeiro J, Sillito AM (1996) Spatial frequency tuning of orientation-discontinuity-sensitive corticofugal feedback to the cat lateral geniculate nucleus. J Physiol 490 ( Pt 2):481-92 [PubMed]
Cudeiro J, Sillito AM (2006) Looking back: corticothalamic feedback and early visual processing. Trends Neurosci 29:298-306 [Journal] [PubMed]
Dalcin LD,Paz RR,Kler PA,Cosimo A (2011) Parallel distributed computing using python Advances in Water Resources 34(9):1124-1139
de Labra C, Rivadulla C, Grieve K, Mariño J, Espinosa N, Cudeiro J (2007) Changes in visual responses in the feline dLGN: selective thalamic suppression induced by transcranial magnetic stimulation of V1. Cereb Cortex 17:1376-85 [Journal] [PubMed]
De Schutter E (2009) Computational Modeling Methods for Neuroscientists, De Schutter E, ed. pp.1 [Journal]
DeAngelis GC, Ohzawa I, Freeman RD (1993) Spatiotemporal organization of simple-cell receptive fields in the cat's striate cortex. I. General characteristics and postnatal development. J Neurophysiol 69:1091-117 [Journal] [PubMed]
DeAngelis GC, Ohzawa I, Freeman RD (1995) Receptive-field dynamics in the central visual pathways. Trends Neurosci 18:451-8 [PubMed]
Destexhe A, Contreras D, Steriade M (1998) Mechanisms underlying the synchronizing action of corticothalamic feedback through inhibition of thalamic relay cells. J Neurophysiol 79:999-1016 [Journal] [PubMed]
   Pyramidal Neuron: Deep, Thalamic Relay and Reticular, Interneuron (Destexhe et al 1998, 2001) [Model]
Dubin MW, Cleland BG (1977) Organization of visual inputs to interneurons of lateral geniculate nucleus of the cat. J Neurophysiol 40:410-27 [Journal] [PubMed]
Einevoll GT, Heggelund P (2000) Mathematical models for the spatial receptive-field organization of nonlagged X-cells in dorsal lateral geniculate nucleus of cat. Vis Neurosci 17:871-85 [PubMed]
Einevoll GT, Jurkus P, Heggelund P (2011) Coarse-to-fine changes of receptive fields in lateral geniculate nucleus have a transient and a sustained component that depend on distinct mechanisms. PLoS One 6:e24523 [Journal] [PubMed]
Einevoll GT, Plesser HE (2002) Linear mechanistic models for the dorsal lateral geniculate nucleus of cat probed using drifting-grating stimuli. Network 13:503-30 [PubMed]
Einevoll GT, Plesser HE (2005) Response of the difference-of-Gaussians model to circular drifting-grating patches. Vis Neurosci 22:437-46 [Journal] [PubMed]
Einevoll GT, Plesser HE (2012) Extended difference-of-Gaussians model incorporating cortical feedback for relay cells in the lateral geniculate nucleus of cat. Cogn Neurodyn 6:307-24 [Journal] [PubMed]
Einevoll GT,Halnes G (2015) Lateral Geniculate Nucleus (LGN) Models Encyclopedia of Computational Neuroscience, Jaeger D:Jung R, ed. pp.1
Enroth-Cugell C, Robson JG (1966) The contrast sensitivity of retinal ganglion cells of the cat. J Physiol 187:517-52 [PubMed]
Eppler JM,et al (2015) NEST 2.8.0. Zenodo, Available from: http://dx.doi.org/10.5281/zenodo.32969 [Journal]
Ferster D, Miller KD (2000) Neural mechanisms of orientation selectivity in the visual cortex. Annu Rev Neurosci 23:441-71 [Journal] [PubMed]
Geisert EE, Langsetmo A, Spear PD (1981) Influence of the cortico-geniculate pathway on response properties of cat lateral geniculate neurons. Brain Res 208:409-15 [PubMed]
Gewaltig M-O, Diesmann M (2007) NEST (Neural Simulation Tool) Scholarpedia 2:1430
Gilbert CD (1977) Laminar differences in receptive field properties of cells in cat primary visual cortex. J Physiol 268:391-421 [PubMed]
Godwin DW, Vaughan JW, Sherman SM (1996) Metabotropic glutamate receptors switch visual response mode of lateral geniculate nucleus cells from burst to tonic. J Neurophysiol 76:1800-16 [Journal] [PubMed]
Gropp W,Lusk E,Skjellum A (1999) Using MPI: portable parallel programming with the message-passing interface. vol. 1. MIT press
Guillery RW, Harting JK (2003) Structure and connections of the thalamic reticular nucleus: Advancing views over half a century. J Comp Neurol 463:360-71 [Journal] [PubMed]
Halnes G, Augustinaite S, Heggelund P, Einevoll GT, Migliore M (2011) A multi-compartment model for interneurons in the dorsal lateral geniculate nucleus. PLoS Comput Biol 7:e1002160 [Journal] [PubMed]
   A multi-compartment model for interneurons in the dLGN (Halnes et al. 2011) [Model]
Hayot F, Tranchina D (2001) Modeling corticofugal feedback and the sensitivity of lateral geniculate neurons to orientation discontinuity. Vis Neurosci 18:865-77 [PubMed]
Heiberg T, Hagen E, Halnes G, Einevoll GT (2016) Biophysical Network Modelling of the dLGN Circuit: Different Effects of Triadic and Axonal Inhibition on Visual Responses of Relay Cells. PLoS Comput Biol 12:e1004929 [Journal] [PubMed]
Hill S, Tononi G (2005) Modeling sleep and wakefulness in the thalamocortical system. J Neurophysiol 93:1671-98 [Journal] [PubMed]
Hines ML, Carnevale NT (2004) Discrete event simulation in the NEURON environment. Neurocomputing 58-60:1117-1122 [Journal]
   Discrete event simulation in the NEURON environment (Hines and Carnevale 2004) [Model]
Hirsch JA, Alonso JM, Reid RC, Martinez LM (1998) Synaptic integration in striate cortical simple cells. J Neurosci 18:9517-28 [PubMed]
Hirsch JA, Martinez LM (2006) Circuits that build visual cortical receptive fields. Trends Neurosci 29:30-9 [Journal] [PubMed]
HPC group (2016) UiT The Arctic University of Norway. Stallo supercomputer, Available from: http://hpc-uit.readthedocs.io/
HUBEL DH, WIESEL TN (1962) Receptive fields, binocular interaction and functional architecture in the cat's visual cortex. J Physiol 160:106-54 [PubMed]
Jones HE, Andolina IM, Ahmed B, Shipp SD, Clements JT, Grieve KL, Cudeiro J, Salt TE, Sillito AM (2012) Differential feedback modulation of center and surround mechanisms in parvocellular cells in the visual thalamus. J Neurosci 32:15946-51 [Journal] [PubMed]
Jones HE, Andolina IM, Oakely NM, Murphy PC, Sillito AM (2000) Spatial summation in lateral geniculate nucleus and visual cortex. Exp Brain Res 135:279-84 [Journal] [PubMed]
Kielland A, Heggelund P (2002) AMPA and NMDA currents show different short-term depression in the dorsal lateral geniculate nucleus of the rat. J Physiol 542:99-106 [PubMed]
Kirkland KL, Gerstein GL (1998) A model of cortically induced synchronization in the lateral geniculate nucleus of the cat: a role for low-threshold calcium channels. Vision Res 38:2007-22 [PubMed]
Kirkland KL, Sillito AM, Jones HE, West DC, Gerstein GL (2000) Oscillations and long-lasting correlations in a model of the lateral geniculate nucleus and visual cortex. J Neurophysiol 84:1863-8 [Journal] [PubMed]
Köhn J, Wörgötter F (1996) Corticofugal feedback can reduce the visual latency of responses to antagonistic stimuli. Biol Cybern 75:199-209 [PubMed]
Langtangen HP (2009) A primer on scientific programming with Python. vol. 2. Springer
Lesica NA, Stanley GB (2004) Encoding of natural scene movies by tonic and burst spikes in the lateral geniculate nucleus. J Neurosci 24:10731-40 [Journal] [PubMed]
Lesica NA, Weng C, Jin J, Yeh CI, Alonso JM, Stanley GB (2006) Dynamic encoding of natural luminance sequences by LGN bursts. PLoS Biol 4:e209 [Journal] [PubMed]
Lindén H, Hagen E, Leski S, Norheim ES, Pettersen KH, Einevoll GT (2013) LFPy: a tool for biophysical simulation of extracellular potentials generated by detailed model neurons. Front Neuroinform 7:41 [Journal] [PubMed]
Lindström S, Wróbel A (1990) Frequency dependent corticofugal excitation of principal cells in the cat's dorsal lateral geniculate nucleus. Exp Brain Res 79:313-8 [PubMed]
Mante V, Bonin V, Carandini M (2008) Functional mechanisms shaping lateral geniculate responses to artificial and natural stimuli. Neuron 58:625-38 [Journal] [PubMed]
Marrocco RT, McClurkin JW, Young RA (1982) Modulation of lateral geniculate nucleus cell responsiveness by visual activation of the corticogeniculate pathway. J Neurosci 2:256-63 [PubMed]
Martinez LM, Alonso JM (2003) Complex receptive fields in primary visual cortex. Neuroscientist 9:317-31 [Journal] [PubMed]
Martinez LM, Molano-Mazón M, Wang X, Sommer FT, Hirsch JA (2014) Statistical wiring of thalamic receptive fields optimizes spatial sampling of the retinal image. Neuron 81:943-956 [Journal] [PubMed]
Martinez LM, Wang Q, Reid RC, Pillai C, Alonso JM, Sommer FT, Hirsch JA (2005) Receptive field structure varies with layer in the primary visual cortex. Nat Neurosci 8:372-9 [Journal] [PubMed]
Mastronarde DN (1992) Nonlagged relay cells and interneurons in the cat lateral geniculate nucleus: receptive-field properties and retinal inputs. Vis Neurosci 8:407-41 [PubMed]
McClurkin JW, Marrocco RT (1984) Visual cortical input alters spatial tuning in monkey lateral geniculate nucleus cells. J Physiol 348:135-52 [PubMed]
McCormick DA, von Krosigk M (1992) Corticothalamic activation modulates thalamic firing through glutamate "metabotropic" receptors. Proc Natl Acad Sci U S A 89:2774-8 [PubMed]
McCormick DA, Wang Z, Huguenard J (1993) Neurotransmitter control of neocortical neuronal activity and excitability. Cereb Cortex 3:387-98 [PubMed]
Montero VM (1991) A quantitative study of synaptic contacts on interneurons and relay cells of the cat lateral geniculate nucleus. Exp Brain Res 86:257-70 [PubMed]
Murphy PC, Sillito AM (1987) Corticofugal feedback influences the generation of length tuning in the visual pathway. Nature 329:727-9 [Journal] [PubMed]
Murphy PC, Sillito AM (1996) Functional morphology of the feedback pathway from area 17 of the cat visual cortex to the lateral geniculate nucleus. J Neurosci 16:1180-92 [PubMed]
Norheim ES, Wyller J, Nordlie E, Einevoll GT (2012) A minimal mechanistic model for temporal signal processing in the lateral geniculate nucleus. Cogn Neurodyn 6:259-81 [Journal] [PubMed]
   LGNcircuit: Minimal LGN network model of temporal processing of visual input (Norheim et al. 2012) [Model]
Olsen SR, Bortone DS, Adesnik H, Scanziani M (2012) Gain control by layer six in cortical circuits of vision. Nature 483:47-52 [Journal] [PubMed]
Potjans TC, Diesmann M (2014) The cell-type specific cortical microcircuit: relating structure and activity in a full-scale spiking network model. Cereb Cortex 24:785-806 [Journal] [PubMed]
   A full-scale cortical microcircuit spiking network model (Shimoura et al 2018) [Model]
Przybyszewski AW, Gaska JP, Foote W, Pollen DA (2000) Striate cortex increases contrast gain of macaque LGN neurons. Vis Neurosci 17:485-94 [PubMed]
Reid RC, Alonso JM (1995) Specificity of monosynaptic connections from thalamus to visual cortex. Nature 378:281-4 [Journal] [PubMed]
Rivadulla C, Martinez L, Grieve KL, Cudeiro J (2003) Receptive field structure of burst and tonic firing in feline lateral geniculate nucleus. J Physiol 553:601-10 [Journal] [PubMed]
Rogala J, Waleszczyk WJ, Leski S, Wróbel A, Wójcik DK (2013) Reciprocal inhibition and slow calcium decay in perigeniculate interneurons explain changes of spontaneous firing of thalamic cells caused by cortical inactivation. J Comput Neurosci 34:461-76 [Journal] [PubMed]
Ruksenas O, Bulatov A, Heggelund P (2007) Dynamics of spatial resolution of single units in the lateral geniculate nucleus of cat during brief visual stimulation. J Neurophysiol 97:1445-56 [Journal] [PubMed]
Ruksenas O, Fjeld IT, Heggelund P (2000) Spatial summation and center-surround antagonism in the receptive field of single units in the dorsal lateral geniculate nucleus of cat: comparison with retinal input. Vis Neurosci 17:855-70 [PubMed]
Sclar G, Freeman RD (1982) Orientation selectivity in the cat's striate cortex is invariant with stimulus contrast. Exp Brain Res 46:457-61 [PubMed]
Sherman SM (1996) Dual response modes in lateral geniculate neurons: mechanisms and functions. Vis Neurosci 13:205-13 [PubMed]
Sherman SM, Guillery RW (2001) Exploring the Thalamus
Sherman SM, Guillery RW (2002) The role of the thalamus in the flow of information to the cortex. Philos Trans R Soc Lond B Biol Sci 357:1695-708 [Journal] [PubMed]
Sillito AM, Cudeiro J, Jones HE (2006) Always returning: feedback and sensory processing in visual cortex and thalamus. Trends Neurosci 29:307-16 [Journal] [PubMed]
Sillito AM, Cudeiro J, Murphy PC (1993) Orientation sensitive elements in the corticofugal influence on centre-surround interactions in the dorsal lateral geniculate nucleus. Exp Brain Res 93:6-16 [PubMed]
Sillito AM, Jones HE (2002) Corticothalamic interactions in the transfer of visual information. Philos Trans R Soc Lond B Biol Sci 357:1739-52 [Journal] [PubMed]
Sillito AM, Jones HE, Gerstein GL, West DC (1994) Feature-linked synchronization of thalamic relay cell firing induced by feedback from the visual cortex. Nature 369:479-82 [Journal] [PubMed]
Somers DC, Nelson SB, Sur M (1995) An emergent model of orientation selectivity in cat visual cortical simple cells. J Neurosci 15:5448-65 [PubMed]
Sompolinsky H, Shapley R (1997) New perspectives on the mechanisms for orientation selectivity. Curr Opin Neurobiol 7:514-22 [PubMed]
Stoelzel CR, Bereshpolova Y, Gusev AG, Swadlow HA (2008) The impact of an LGNd impulse on the awake visual cortex: synaptic dynamics and the sustained/transient distinction. J Neurosci 28:5018-28 [Journal] [PubMed]
Troyer TW, Krukowski AE, Priebe NJ, Miller KD (1998) Contrast-invariant orientation tuning in cat visual cortex: thalamocortical input tuning and correlation-based intracortical connectivity. J Neurosci 18:5908-27 [Journal] [PubMed]
Tsumoto T, Creutzfeldt OD, Legéndy CR (1978) Functional organization of the corticofugal system from visual cortex to lateral geniculate nucleus in the cat (with an appendix on geniculo-cortical mono-synaptic connections). Exp Brain Res 32:345-64 [PubMed]
Turner JP, Salt TE (1998) Characterization of sensory and corticothalamic excitatory inputs to rat thalamocortical neurones in vitro. J Physiol 510 ( Pt 3):829-43 [PubMed]
Usrey WM, Alitto HJ (2015) Visual Functions of the Thalamus. Annu Rev Vis Sci 1:351-371 [Journal] [PubMed]
Usrey WM, Reppas JB, Reid RC (1999) Specificity and strength of retinogeniculate connections. J Neurophysiol 82:3527-40 [Journal] [PubMed]
Vidyasagar TR, Urbas JV (1982) Orientation sensitivity of cat LGN neurones with and without inputs from visual cortical areas 17 and 18. Exp Brain Res 46:157-69 [PubMed]
Wang W, Andolina IM, Lu Y, Jones HE, Sillito AM (2018) Focal Gain Control of Thalamic Visual Receptive Fields by Layer 6 Corticothalamic Feedback. Cereb Cortex 28:267-280 [Journal] [PubMed]
Wang W, Jones HE, Andolina IM, Salt TE, Sillito AM (2006) Functional alignment of feedback effects from visual cortex to thalamus. Nat Neurosci 9:1330-6 [Journal] [PubMed]
Wang X, Sommer FT, Hirsch JA (2011) Inhibitory circuits for visual processing in thalamus. Curr Opin Neurobiol 21:726-33 [Journal] [PubMed]
Webb BS, Tinsley CJ, Barraclough NE, Easton A, Parker A, Derrington AM (2002) Feedback from V1 and inhibition from beyond the classical receptive field modulates the responses of neurons in the primate lateral geniculate nucleus. Vis Neurosci 19:583-92 [PubMed]
Wohrer A, Kornprobst P (2009) Virtual Retina: a biological retina model and simulator, with contrast gain control. J Comput Neurosci 26:219-49 [Journal] [PubMed]
   Virtual Retina: biological retina simulator, with contrast gain control (Wohrer and Kornprobst 2009) [Model]
Wörgötter F, Nelle E, Li B, Funke K (1998) The influence of corticofugal feedback on the temporal structure of visual responses of cat thalamic relay cells. J Physiol 509 ( Pt 3):797-815 [PubMed]
Yousif N, Denham M (2007) The role of cortical feedback in the generation of the temporal receptive field responses of lateral geniculate nucleus neurons: a computational modelling study. Biol Cybern 97:269-77 [Journal] [PubMed]
Zhu JJ, Uhlrich DJ, Lytton WW (1999) Burst firing in identified rat geniculate interneurons. Neuroscience 91:1445-60 [PubMed]
   Thalamic interneuron multicompartment model (Zhu et al. 1999) [Model]
(108 refs)