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rchava performancephysiology [32 articles]

Recent papers added to rchava library classified by the tag performancephysiology. You can also see everyone's performancephysiology.
  • Event-related dynamics of the gamma-band oscillation in the human brain: information processing during a GO/NOGO hand movement task.
    Neurosci Res, Vol. 33, No. 3. (March 1999), pp. 215-22.
  • Neural topography and content of movement representations.
    J Cogn Neurosci, Vol. 17, No. 1. (January 2005), pp. 97-112.
    by FP de Lange, P Hagoort, I Toni
  • Uncoupling of contingent negative variation and alpha band event-related desynchronization in a go/no-go task.
    Clin Neurophysiol, Vol. 112, No. 7. (July 2001), pp. 1307-15.
  • Inhibition, response mode, and stimulus probability: a comparative event-related potential study.
    Clin Neurophysiol, Vol. 113, No. 7. (July 2002), pp. 1172-82.
    by KJ Bruin, AA Wijers
  • Source analysis of the N2 in a cued Go/NoGo task.
    Brain Res Cogn Brain Res, Vol. 22, No. 2. (February 2005), pp. 221-31.
    by EM Bekker, JL Kenemans, MN Verbaten
  • Slow cortical potential shifts preceding sensorimotor interactions.
    Brain Res Bull, Vol. 65, No. 4. (Apr March0 2005), pp. 309-16.
    by C Babiloni, A Brancucci, P Capotosto, GL Romani, Arendt L Nielsen, AC Chen, PM Rossini
  • Functional connectivity during real vs imagined visuomotor tasks: an EEG study.
    Neuroreport, Vol. 15, No. 4. (Mar FebruaryFebruary 2004), pp. 637-42.
  • Prediction of response speed by anticipatory high-frequency (gamma band) oscillations in the human brain.
    Hum Brain Mapp, Vol. 24, No. 1. (January 2005), pp. 50-8.
    by Gonzalez SL Andino, CM Michel, G Thut, T Landis, Grave R de Peralta
  • Bayesian integration in sensorimotor learning.
    Nature, Vol. 427, No. 6971. (Jan JanuaryMay 2004), pp. 244-7.
    by KP Kording, DM Wolpert
  • Use of the evoked potential P3 component for control in a virtual apartment.
    IEEE Trans Neural Syst Rehabil Eng, Vol. 11, No. 2. (June 2003), pp. 113-6.
    by JD Bayliss
  • Relationship between CNV and timing of an upcoming event.
    Neurosci Lett, Vol. 382, No. 1-2. (Jul January-August 2005), pp. 106-11.
    by M Pfeuty, R Ragot, V Pouthas
  • Linear spatial integration for single-trial detection in encephalography.
    Neuroimage, Vol. 17, No. 1. (September 2002), pp. 223-30.
    by L Parra, C Alvino, A Tang, B Pearlmutter, N Yeung, A Osman, P Sajda
  • Brain activity relating to the contingent negative variation: an fMRI investigation.
    Neuroimage, Vol. 21, No. 4. (April 2004), pp. 1232-41.
  • Human error monitoring during implicit and explicit learning of a sensorimotor sequence.
    Neurosci Res, Vol. 47, No. 2. (October 2003), pp. 233-40.
    by J Russeler, D Kuhlicke, TF Munte
  • Electrophysiological correlates of error correction.
    Psychophysiology, Vol. 42, No. 1. (January 2005), pp. 72-82.
  • Increases in cortical acetylcholine release during sustained attention performance in rats.
    Brain Res Cogn Brain Res, Vol. 9, No. 3. (June 2000), pp. 313-25.
    by AM Himmelheber, M Sarter, JP Bruno
  • Partial reinforcement across trials impairs escape performance but spares place learning in the water maze.
    Behav Brain Res, Vol. 141, No. 2. (May JanuaryMay 2003), pp. 91-104.
    by BD Devan, EM Stouffer, HL Petri, RJ Mcdonald, JL Olds
  • Inactivation of the infralimbic prefrontal cortex reinstates goal-directed responding in overtrained rats.
    Behav Brain Res, Vol. 146, No. 1-2. (Nov March0 2003), pp. 167-74.
  • Movement intention is better predicted than attention in the posterior parietal cortex.
    J Neurosci, Vol. 26, No. 13. (Mar FebruarySeptember 2006), pp. 3615-20.
    by Quian R Quiroga, LH Snyder, AP Batista, H Cui, RA Andersen
  • Different neural correlates of reward expectation and reward expectation error in the putamen and caudate nucleus during stimulus-action-reward association learning.
    J Neurophysiol, Vol. 95, No. 2. (February 2006), pp. 948-59.
    by M Haruno, M Kawato
  • Inactivation of dorsolateral striatum enhances sensitivity to changes in the action-outcome contingency in instrumental conditioning.
    Behav Brain Res, Vol. 166, No. 2. (Jan March0 2006), pp. 189-96.
    by HH Yin, BJ Knowlton, BW Balleine
  • Mental state inference using visual control parameters.
    Brain Res Cogn Brain Res, Vol. 22, No. 2. (February 2005), pp. 129-51.
    by E Oztop, D Wolpert, M Kawato
  • Changes in sensory responsivity in deep layer neurons of the superior colliculus of behaving rats.
    Behav Brain Res, Vol. 47, No. 1. (Mar JanuaryMay 1992), pp. 97-101.
    by DA Weldon, PJ Best
  • Hippocampal lesioned rats are able to learn a spatial position using non-spatial strategies.
    Behav Brain Res, Vol. 133, No. 2. (Jul JanuaryAugust 2002), pp. 279-91.
    by B Pouzet, WN Zhang, J Feldon, JN Rawlins
  • Increased attention to spatial context increases both place field stability and spatial memory.
    Neuron, Vol. 42, No. 2. (Apr FebruaryFebruary 2004), pp. 283-95.
    by CG Kentros, NT Agnihotri, S Streater, RD Hawkins, ER Kandel
  • The acquisition of skilled motor performance: fast and slow experience-driven changes in primary motor cortex.
    Proc Natl Acad Sci U S A, Vol. 95, No. 3. (Feb March 1998), pp. 861-8.
    by A Karni, G Meyer, Rey C Hipolito, P Jezzard, MM Adams, R Turner, LG Ungerleider
  • A proposed function for hippocampal theta rhythm: separate phases of encoding and retrieval enhance reversal of prior learning.
    Neural Comput, Vol. 14, No. 4. (April 2002), pp. 793-817.
    by ME Hasselmo, C Bodelon, BP Wyble
  • Dynamics of neuronal sensitivity in visual cortex and local feature discrimination.
    Nat Neurosci, Vol. 5, No. 9. (September 2002), pp. 883-91.
    by V Dragoi, J Sharma, EK Miller, M Sur
  • Efficient computation and cue integration with noisy population codes.
    Nat Neurosci, Vol. 4, No. 8. (August 2001), pp. 826-31.
    by S Deneve, PE Latham, A Pouget
  • Learning and selective attention.
    Nat Neurosci, Vol. 3 Suppl (November 2000), pp. 1218-23.
    by P Dayan, S Kakade, PR Montague
  • Superior colliculus encodes distance to target, not saccade amplitude, in multi-step gaze shifts.
    Nat Neurosci, Vol. 6, No. 4. (April 2003), pp. 404-13.
  • Encoding of spatial location by posterior parietal neurons.
    Science, Vol. 230, No. 4724. (Oct FebruaryMay 1985), pp. 456-8.
    by RA Andersen, GK Essick, RM Siegel
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