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klouie's saccade [65 articles]

Recent papers added to klouie's library classified by the tag saccade. You can also see everyone's saccade.
  • A Neural Correlate of Motivational Conflict in the Superior Colliculus of the Macaque
    J Neurophysiol (2 July 2008), 90275.2008.
    by Masaki Isoda, Okihide Hikosaka
  • notes Coding of Shape and Position in Macaque Lateral Intraparietal Area
    J. Neurosci., Vol. 28, No. 26. (25 June 2008), pp. 6679-6690.
    by Peter Janssen, Siddharth Srivastava, Sien Ombelet, Guy A Orban
    posted to shape saccade monkey lip electrophysiology by klouie on 2008-06-25 18:32:21 as **
  • Properties of saccades generated as a choice response.
    Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale, Vol. 162, No. 3. (April 2005), pp. 278-286.
    by KM Lee, EL Keller, SJ Heinen
    posted to saccade reaction_time normalization human choicebehavior by klouie on 2008-06-23 22:52:17 as **
  • Expectation of reward modulates cognitive signals in the basal ganglia.
    Nat Neurosci, Vol. 1, No. 5. (September 1998), pp. 411-416.
  • Reward-dependent gain and bias of visual responses in primate superior colliculus.
    Neuron, Vol. 39, No. 4. (14 August 2003), pp. 693-700.
    by T Ikeda, O Hikosaka
    posted to superior saccade reward neurophysiology monkey colliculus by klouie on 2008-05-06 23:49:43 as **
  • Orienting of attention.
    Q J Exp Psychol, Vol. 32, No. 1. (February 1980), pp. 3-25.
    by MI Posner
  • Saccade and blinking evoked by microstimulation of the posterior parietal association cortex of the monkey.
    Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale, Vol. 55, No. 1. (1984), pp. 1-8.
    posted to saccade parietal neurophysiology monkey microstimulation lip by klouie on 2008-05-05 19:35:30 as **
  • Deficits of visual attention and saccadic eye movements after lesions of parietooccipital cortex in monkeys.
    Journal of neurophysiology, Vol. 61, No. 1. (January 1989), pp. 74-90.
    by JC Lynch, JW McLaren
    posted to saccade parietal neglect monkey lesion attention by klouie on 2008-05-04 02:43:39 as **
  • Response of neurons in the lateral intraparietal area to a distractor flashed during the delay period of a memory-guided saccade.
    Journal of neurophysiology, Vol. 84, No. 1. (July 2000), pp. 301-310.
    by KD Powell, ME Goldberg
    posted to saccade neurophysiology monkey lip attention by klouie on 2008-04-30 15:52:27 as **
  • A microcircuit model of the frontal eye fields.
    J Neurosci, Vol. 27, No. 35. (29 August 2007), pp. 9341-9353.
    by J Heinzle, K Hepp, KA Martin
    posted to computational_model cortex fef microcircuit saccade by klouie on 2007-12-21 21:46:34 as **
  • Temporal Patterning of Saccadic Eye Movement Signals
    J. Neurosci., Vol. 27, No. 29. (18 July 2007), pp. 7619-7630.
    by Daniel L Kimmel, Tirin Moore
  • Neuronal switching of sensorimotor transformations for antisaccades.
    Nature, Vol. 408, No. 6815. (8 2000), pp. 971-975.
    by M Zhang, S Barash
  • Progression in neuronal processing for saccadic eye movements from parietal cortex area lip to superior colliculus.
    J Neurophysiol, Vol. 85, No. 6. (June 2001), pp. 2545-2562.
    by M Paré, RH Wurtz
  • A pathway in primate brain for internal monitoring of movements.
    Science, Vol. 296, No. 5572. (24 May 2002), pp. 1480-1482.
    by MA Sommer, RH Wurtz
  • Population coding of saccadic eye movements by neurons in the superior colliculus
    Nature, Vol. 332, No. 6162. (24 March 1988), pp. 357-360.
    by Choongkil Lee, William H Rohrer, David L Sparks
  • Movement selection in advance of action in the superior colliculus.
    Nature, Vol. 355, No. 6360. (6 February 1992), pp. 542-545.
    by PW Glimcher, DL Sparks
  • Neural mechanisms underlying target selection with saccadic eye movements.
    Prog Brain Res, Vol. 149 (2005), pp. 157-171.
    by PH Schiller, EJ Tehovnik
  • Role of the basal ganglia in the control of purposive saccadic eye movements.
    Physiol Rev, Vol. 80, No. 3. (July 2000), pp. 953-978.
  • Reward-predicting activity of dopamine and caudate neurons--a possible mechanism of motivational control of saccadic eye movement.
    J Neurophysiol, Vol. 91, No. 2. (February 2004), pp. 1013-1024.
  • Role of primate substantia nigra pars reticulata in reward-oriented saccadic eye movement.
    J Neurosci, Vol. 22, No. 6. (15 March 2002), pp. 2363-2373.
    by M Sato, O Hikosaka
  • Functional properties of monkey caudate neurons. I. Activities related to saccadic eye movements.
    J Neurophysiol, Vol. 61, No. 4. (April 1989), pp. 780-798.
  • LIP responses to a popout stimulus are reduced if it is overtly ignored
    Nature Neuroscience, Vol. 9, No. 8. (02 July 2006), pp. 1071-1076.
    by Anna E Ipata, Angela L Gee, Jacqueline Gottlieb, James W Bisley, Michael E Goldberg
  • Selection and Maintenance of Saccade Goals in the Human Frontal Eye Fields.
    J Neurophysiol (8 February 2006)
    by Clayton E E Curtis, Mark D'Esposito
  • Look and see: how the brain moves your eyes about.
    Prog Brain Res, Vol. 134 (2001), pp. 127-142.
    by PH Schiller, EJ Tehovnik
  • Shape Representations and Visual Guidance of Saccadic Eye Movements
    Science, Vol. 285, No. 5435. (17 September 1999), pp. 1914-1917.
    by Tirin Moore
  • notes Changes in visual receptive fields with microstimulation of frontal cortex.
    Neuron, Vol. 50, No. 5. (1 June 2006), pp. 791-798.
  • Selective gating of visual signals by microstimulation of frontal cortex.
    Nature, Vol. 421, No. 6921. (23 January 2003), pp. 370-373.
    by T Moore, KM Armstrong
  • The effects of frontal eye field and dorsomedial frontal cortex lesions on visually guided eye movements.
    Nat Neurosci, Vol. 1, No. 3. (July 1998), pp. 248-253.
    by PH Schiller, IH Chou
  • Electrical microstimulation distinguishes distinct saccade-related areas in the posterior parietal cortex.
    J Neurophysiol, Vol. 80, No. 4. (October 1998), pp. 1713-1735.
    by P Thier, RA Andersen
  • Activity in the lateral intraparietal area predicts the goal and latency of saccades in a free-viewing visual search task.
    J Neurosci, Vol. 26, No. 14. (5 April 2006), pp. 3656-3661.
    by AE Ipata, AL Gee, ME Goldberg, JW Bisley
  • A model of saccade generation based on parallel processing and competitive inhibition.
    Behav Brain Sci, Vol. 22, No. 4. (August 1999)
    by JM Findlay, R Walker
  • A visual salience map in the primate frontal eye field.
    Prog Brain Res, Vol. 147 (2005), pp. 251-262.
    by KG Thompson, NP Bichot
  • Role of Dopamine in the Primate Caudate Nucleus in Reward Modulation of Saccades
    J. Neurosci., Vol. 26, No. 20. (17 May 2006), pp. 5360-5369.
    by Kae Nakamura, Okihide Hikosaka
  • Eye position effects on visual, memory, and saccade-related activity in areas LIP and 7a of macaque.
    J Neurosci, Vol. 10, No. 4. (April 1990), pp. 1176-1196.
    by RA Andersen, RM Bracewell, S Barash, JW Gnadt, L Fogassi
  • The role of the lateral intraparietal area of the monkey in the generation of saccades and visuospatial attention.
    Ann N Y Acad Sci, Vol. 956 (April 2002), pp. 205-215.
    posted to attention lip monkey review saccade by klouie on 2005-11-21 14:26:13 as ** along with 1 group Glimcher_Lab
  • The updating of the representation of visual space in parietal cortex by intended eye movements.
    Science, Vol. 255, No. 5040. (3 January 1992), pp. 90-92.
    by JR Duhamel, CL Colby, ME Goldberg
  • The supplementary motor area encodes reward expectancy in eye movement tasks.
    J Neurophysiol (20 April 2005)
    by Michael Campos, Boris Breznen, Kyle Bernheim, Richard A A Andersen
  • Saccadic eye movements cause compression of time as well as space
    Nature Neuroscience, Vol. 8, No. 7. (19 June 2005), pp. 950-954.
    by Concetta M Morrone, John Ross, David Burr
  • Saccades exhibit abrupt transition between reactive and predictive; predictive saccade sequences have long-term correlations.
    J Neurophysiol, Vol. 90, No. 4. (October 2003), pp. 2763-2769.
    by M Shelhamer, WM Joiner
  • Sequences of predictive saccades are correlated over a span of approximately 2 s and produce a fractal time series.
    J Neurophysiol, Vol. 93, No. 4. (April 2005), pp. 2002-2011.
  • The neural selection and control of saccades by the frontal eye field.
    Philos Trans R Soc Lond B Biol Sci, Vol. 357, No. 1424. (29 August 2002), pp. 1073-1082.
    by JD Schall
  • Contextual modulation of substantia nigra pars reticulata neurons.
    J Neurophysiol, Vol. 83, No. 5. (May 2000), pp. 3042-3048.
    by A Handel, PW Glimcher
  • Single neurons in posterior cingulate cortex of behaving macaque: eye movement signals.
    J Neurophysiol, Vol. 76, No. 5. (November 1996), pp. 3285-3300.
    by CR Olson, SY Musil, ME Goldberg
  • Saccadic probability influences motor preparation signals and time to saccadic initiation.
    J Neurosci, Vol. 18, No. 17. (1 September 1998), pp. 7015-7026.
    by MC Dorris, DP Munoz
  • Modulation of neuronal activity in superior colliculus by changes in target probability.
    J Neurosci, Vol. 18, No. 18. (15 September 1998), pp. 7519-7534.
    by MA Basso, RH Wurtz
  • Modulation of neuronal activity by target uncertainty.
    Nature, Vol. 389, No. 6646. (4 September 1997), pp. 66-69.
    by MA Basso, RH Wurtz
  • Nonspatial saccade-specific activation in area LIP of monkey parietal cortex.
    J Neurophysiol, Vol. 90, No. 4. (October 2003), pp. 2460-2464.
    by AR Dickinson, JL Calton, LH Snyder
  • Motor intention activity in the macaque's lateral intraparietal area. II. Changes of motor plan.
    J Neurophysiol, Vol. 76, No. 3. (September 1996), pp. 1457-1464.
  • Motor intention activity in the macaque's lateral intraparietal area. I. Dissociation of motor plan from sensory memory.
    J Neurophysiol, Vol. 76, No. 3. (September 1996), pp. 1439-1456.
  • Coding of intention in the posterior parietal cortex.
    Nature, Vol. 386, No. 6621. (13 March 1997), pp. 167-170.
    by LH Snyder, AP Batista, RA Andersen
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