Intention, Action Planning, and Decision Making in Parietal-Frontal Circuits

[1]  Richard A Andersen,et al.  Parietal reach region encodes reach depth using retinal disparity and vergence angle signals. , 2009, Journal of neurophysiology.

[2]  Stephanie Westendorff,et al.  Implementation of Spatial Transformation Rules for Goal-Directed Reaching via Gain Modulation in Monkey Parietal and Premotor Cortex , 2009, The Journal of Neuroscience.

[3]  Puiu F. Balan,et al.  Task specific computations in attentional maps , 2009, Vision Research.

[4]  Hansjörg Scherberger,et al.  Context-Specific Grasp Movement Representation in the Macaque Anterior Intraparietal Area , 2009, The Journal of Neuroscience.

[5]  M. Desmurget,et al.  Movement Intention After Parietal Cortex Stimulation in Humans , 2009, Science.

[6]  R. Desimone,et al.  High-Frequency, Long-Range Coupling Between Prefrontal and Visual Cortex During Attention , 2009, Science.

[7]  M. Carandini,et al.  Local Origin of Field Potentials in Visual Cortex , 2009, Neuron.

[8]  Timothy D. Hanks,et al.  Probabilistic Population Codes for Bayesian Decision Making , 2008, Neuron.

[9]  P. Haggard Human volition: towards a neuroscience of will , 2008, Nature Reviews Neuroscience.

[10]  R. Andersen,et al.  Decoding Trajectories from Posterior Parietal Cortex Ensembles , 2008, The Journal of Neuroscience.

[11]  E. Miller,et al.  All My Circuits: Using Multiple Electrodes to Understand Functioning Neural Networks , 2008, Neuron.

[12]  Xiao-Jing Wang Decision Making in Recurrent Neuronal Circuits , 2008, Neuron.

[13]  E. Fetz,et al.  Direct control of paralyzed muscles by cortical neurons , 2008, Nature.

[14]  Daniel Baldauf,et al.  The Posterior Parietal Cortex Encodes in Parallel Both Goals for Double-Reach Sequences , 2008, The Journal of Neuroscience.

[15]  Andrew S. Whitford,et al.  Cortical control of a prosthetic arm for self-feeding , 2008, Nature.

[16]  Richard A Andersen,et al.  Forward estimation of movement state in posterior parietal cortex , 2008, Proceedings of the National Academy of Sciences.

[17]  Bijan Pesaran,et al.  Free choice activates a decision circuit between frontal and parietal cortex , 2008, Nature.

[18]  P. Glimcher,et al.  Value Representations in the Primate Striatum during Matching Behavior , 2008, Neuron.

[19]  Ilya E. Monosov,et al.  Measurements of Simultaneously Recorded Spiking Activity and Local Field Potentials Suggest that Spatial Selection Emerges in the Frontal Eye Field , 2008, Neuron.

[20]  S.I. Ryu,et al.  Cortical Neural Prosthesis Performance Improves When Eye Position Is Monitored , 2008, IEEE Transactions on Neural Systems and Rehabilitation Engineering.

[21]  L. F. Abbott,et al.  Mechanism of gain modulation at single neuron and network levels , 2008, Journal of Computational Neuroscience.

[22]  R. Andersen,et al.  Posterior Parietal Cortex Encodes Autonomously Selected Motor Plans , 2007, Neuron.

[23]  Jeffrey D. Schall,et al.  Comment on "Top-Down Versus Bottom-Up Control of Attention in the Prefrontal and Posterior Parietal Cortices" , 2007, Science.

[24]  Paul Cisek,et al.  Cortical mechanisms of action selection: the affordance competition hypothesis , 2007, Philosophical Transactions of the Royal Society B: Biological Sciences.

[25]  Richard A Andersen,et al.  Gain Mechanisms for Contextually Guided Visuomotor Transformations , 2007, The Journal of Neuroscience.

[26]  J D Crawford,et al.  Frames of reference for gaze saccades evoked during stimulation of lateral intraparietal cortex. , 2007, Journal of neurophysiology.

[27]  Vincent P Ferrera,et al.  Computing vector differences using a gain field‐like mechanism in monkey frontal eye field , 2007, The Journal of physiology.

[28]  J. Gold,et al.  The neural basis of decision making. , 2007, Annual review of neuroscience.

[29]  Michael N. Shadlen,et al.  Probabilistic reasoning by neurons , 2007, Nature.

[30]  Lars Riecke,et al.  Parietal and superior frontal visuospatial maps activated by pointing and saccades , 2007, NeuroImage.

[31]  D. Heeger,et al.  Specificity of Human Cortical Areas for Reaches and Saccades , 2007, The Journal of Neuroscience.

[32]  E. Miller,et al.  Top-Down Versus Bottom-Up Control of Attention in the Prefrontal and Posterior Parietal Cortices , 2007, Science.

[33]  Bijan Pesaran,et al.  Translation Speed Compensation in the Dorsal Aspect of the Medial Superior Temporal Area , 2007, The Journal of Neuroscience.

[34]  R. Andersen,et al.  Target Selection Signals for Arm Reaching in the Posterior Parietal Cortex , 2007, The Journal of Neuroscience.

[35]  J. Tanji,et al.  Categorization of behavioural sequences in the prefrontal cortex , 2007, Nature.

[36]  R. Andersen,et al.  The posterior parietal cortex: Sensorimotor interface for the planning and online control of visually guided movements , 2006, Neuropsychologia.

[37]  Heiner Deubel,et al.  Deployment of visual attention before sequences of goal-directed hand movements , 2006, Vision Research.

[38]  Elizabeth Torres,et al.  Space-time separation during obstacle-avoidance learning in monkeys. , 2006, Journal of neurophysiology.

[39]  T. Sejnowski,et al.  Selective attention through phase relationship of excitatory and inhibitory input synchrony in a model cortical neuron , 2006, Neural Networks.

[40]  Emery N. Brown,et al.  A State-Space Analysis for Reconstruction of Goal-Directed Movements Using Neural Signals , 2006, Neural Computation.

[41]  P. Cisek Integrated Neural Processes for Defining Potential Actions and Deciding between Them: A Computational Model , 2006, The Journal of Neuroscience.

[42]  R. Andersen,et al.  Neural Dynamics in Monkey Parietal Reach Region Reflect Context-Specific Sensorimotor Transformations , 2006, The Journal of Neuroscience.

[43]  David J. Freedman,et al.  Experience-dependent representation of visual categories in parietal cortex , 2006, Nature.

[44]  Lawrence H Snyder,et al.  Comparison of effector-specific signals in frontal and parietal cortices. , 2006, Journal of neurophysiology.

[45]  J. Kalaska Faculty Opinions recommendation of Dorsal premotor neurons encode the relative position of the hand, eye, and goal during reach planning. , 2006 .

[46]  Byron M. Yu,et al.  A high-performance brain–computer interface , 2006, Nature.

[47]  R. Andersen,et al.  Dorsal Premotor Neurons Encode the Relative Position of the Hand, Eye, and Goal during Reach Planning , 2006, Neuron.

[48]  Jacqueline Gottlieb,et al.  LIP responses to a popout stimulus are reduced if it is overtly ignored , 2006, Nature Neuroscience.

[49]  J. Assad,et al.  A cognitive signal for the proactive timing of action in macaque LIP , 2006, Nature Neuroscience.

[50]  Jon A. Mukand,et al.  Neuronal ensemble control of prosthetic devices by a human with tetraplegia , 2006, Nature.

[51]  J. Tanji,et al.  Activity in the Lateral Prefrontal Cortex Reflects Multiple Steps of Future Events in Action Plans , 2006, Neuron.

[52]  C. Padoa-Schioppa,et al.  Neurons in the orbitofrontal cortex encode economic value , 2006, Nature.

[53]  E. Miller,et al.  Microstimulation of Frontal Cortex Can Reorder a Remembered Spatial Sequence , 2006, PLoS biology.

[54]  R. Shadmehr,et al.  Why Does the Brain Predict Sensory Consequences of Oculomotor Commands? Optimal Integration of the Predicted and the Actual Sensory Feedback , 2006, The Journal of Neuroscience.

[55]  M. Goldberg,et al.  Activity in the Lateral Intraparietal Area Predicts the Goal and Latency of Saccades in a Free-Viewing Visual Search Task , 2006, The Journal of Neuroscience.

[56]  R. Andersen,et al.  Movement Intention Is Better Predicted than Attention in the Posterior Parietal Cortex , 2006, The Journal of Neuroscience.

[57]  T. Sejnowski,et al.  Network Oscillations: Emerging Computational Principles , 2006, The Journal of Neuroscience.

[58]  Daeyeol Lee,et al.  Activity in prefrontal cortex during dynamic selection of action sequences , 2006, Nature Neuroscience.

[59]  K. Doya,et al.  Representation of Action-Specific Reward Values in the Striatum , 2005, Science.

[60]  Y. Cohen,et al.  Eye-centered, head-centered, and complex coding of visual and auditory targets in the intraparietal sulcus. , 2005, Journal of neurophysiology.

[61]  G. Rizzolatti,et al.  Parietal Lobe: From Action Organization to Intention Understanding , 2005, Science.

[62]  R. Andersen,et al.  Cortical Local Field Potential Encodes Movement Intentions in the Posterior Parietal Cortex , 2005, Neuron.

[63]  J. Ashe,et al.  Anticipatory Activity in Primary Motor Cortex Codes Memorized Movement Sequences , 2005, Neuron.

[64]  J. Kalaska,et al.  Neural Correlates of Reaching Decisions in Dorsal Premotor Cortex: Specification of Multiple Direction Choices and Final Selection of Action , 2005, Neuron.

[65]  M. Shadlen,et al.  A representation of the hazard rate of elapsed time in macaque area LIP , 2005, Nature Neuroscience.

[66]  D. Ostry,et al.  Stimulation of the Posterior Parietal Cortex Interferes with Arm Trajectory Adjustments during the Learning of New Dynamics , 2004, The Journal of Neuroscience.

[67]  R. Andersen,et al.  Cognitive Control Signals for Neural Prosthetics , 2004, Science.

[68]  Andrew B Schwartz,et al.  Cortical neural prosthetics. , 2004, Annual review of neuroscience.

[69]  Lawrence H Snyder,et al.  Single Neurons in Posterior Parietal Cortex of Monkeys Encode Cognitive Set , 2004, Neuron.

[70]  W. Newsome,et al.  Matching Behavior and the Representation of Value in the Parietal Cortex , 2004, Science.

[71]  D. Barraclough,et al.  Prefrontal cortex and decision making in a mixed-strategy game , 2004, Nature Neuroscience.

[72]  Mingsha Zhang,et al.  Persistent LIP activity in memory antisaccades: working memory for a sensorimotor transformation. , 2004, Journal of neurophysiology.

[73]  Nikos K Logothetis,et al.  Interpreting the BOLD signal. , 2004, Annual review of physiology.

[74]  J. Schall On building a bridge between brain and behavior. , 2004, Annual review of psychology.

[75]  C. Mehring,et al.  Inference of hand movements from local field potentials in monkey motor cortex , 2003, Nature Neuroscience.

[76]  G. Schöner,et al.  Preshaping and continuous evolution of motor cortical representations during movement preparation , 2003, The European journal of neuroscience.

[77]  Richard A. Andersen,et al.  FMRI evidence for a 'parietal reach region' in the human brain , 2003, Experimental Brain Research.

[78]  A. Graybiel,et al.  Representation of Action Sequence Boundaries by Macaque Prefrontal Cortical Neurons , 2003, Science.

[79]  Kenichi Ohki,et al.  Conversion of Working Memory to Motor Sequence in the Monkey Premotor Cortex , 2003, Science.

[80]  M. Corbetta,et al.  Functional Organization of Human Intraparietal and Frontal Cortex for Attending, Looking, and Pointing , 2003, The Journal of Neuroscience.

[81]  J. Tanji,et al.  Representation of the temporal order of visual objects in the primate lateral prefrontal cortex. , 2003, Journal of neurophysiology.

[82]  Miguel A. L. Nicolelis,et al.  Brain–machine interfaces to restore motor function and probe neural circuits , 2003, Nature Reviews Neuroscience.

[83]  Katherine M. Armstrong,et al.  Selective gating of visual signals by microstimulation of frontal cortex , 2003, Nature.

[84]  John P. Donoghue,et al.  Connecting cortex to machines: recent advances in brain interfaces , 2002, Nature Neuroscience.

[85]  J. Schall The neural selection and control of saccades by the frontal eye field. , 2002, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[86]  O. Hikosaka,et al.  Visual and Anticipatory Bias in Three Cortical Eye Fields of the Monkey during an Adaptive Decision-Making Task , 2002, The Journal of Neuroscience.

[87]  D. Boussaoud,et al.  Parietal inputs to dorsal versus ventral premotor areas in the macaque monkey: evidence for largely segregated visuomotor pathways , 2002, Experimental Brain Research.

[88]  Christopher A. Buneo,et al.  Direct visuomotor transformations for reaching , 2002, Nature.

[89]  M. Goldberg,et al.  The Role of the Lateral Intraparietal Area of the Monkey in the Generation of Saccades and Visuospatial Attention , 2002, Annals of the New York Academy of Sciences.

[90]  J. Assad,et al.  Dynamic coding of behaviourally relevant stimuli in parietal cortex , 2002, Nature.

[91]  Peter Thier,et al.  Optimizing Visual Motion Perception during Eye Movements , 2001, Neuron.

[92]  W. Newsome,et al.  Neural basis of a perceptual decision in the parietal cortex (area LIP) of the rhesus monkey. , 2001, Journal of neurophysiology.

[93]  A. Pouget,et al.  Efficient computation and cue integration with noisy population codes , 2001, Nature Neuroscience.

[94]  A. Parker,et al.  Perceptually Bistable Three-Dimensional Figures Evoke High Choice Probabilities in Cortical Area MT , 2001, The Journal of Neuroscience.

[95]  Hugh F. Durrant-Whyte,et al.  A solution to the simultaneous localization and map building (SLAM) problem , 2001, IEEE Trans. Robotics Autom..

[96]  M. Rushworth,et al.  Complementary localization and lateralization of orienting and motor attention , 2001, Nature Neuroscience.

[97]  R. Desimone,et al.  Modulation of Oscillatory Neuronal Synchronization by Selective Visual Attention , 2001, Science.

[98]  R. Andersen,et al.  The parietal reach region codes the next planned movement in a sequential reach task. , 2001, Journal of neurophysiology.

[99]  Mingsha Zhang,et al.  Neuronal switching of sensorimotor transformations for antisaccades , 2000, Nature.

[100]  Jun Zhang,et al.  Flexible filaments in a flowing soap film as a model for one-dimensional flags in a two-dimensional wind , 2000, Nature.

[101]  R. Andersen,et al.  Reaches to Sounds Encoded in an Eye-Centered Reference Frame , 2000, Neuron.

[102]  T. Sejnowski,et al.  Impact of Correlated Synaptic Input on Output Firing Rate and Variability in Simple Neuronal Models , 2000, The Journal of Neuroscience.

[103]  R A Andersen,et al.  Memory activity of LIP neurons for sequential eye movements simulated with neural networks. , 2000, Journal of neurophysiology.

[104]  M. Goldberg,et al.  Response of neurons in the lateral intraparietal area to a distractor flashed during the delay period of a memory-guided saccade. , 2000, Journal of neurophysiology.

[105]  M. Desmurget,et al.  An ‘automatic pilot’ for the hand in human posterior parietal cortex: toward reinterpreting optic ataxia , 2000, Nature Neuroscience.

[106]  R. Andersen,et al.  Models of the Posterior Parietal Cortex Which Perform Multimodal Integration and Represent Space in Several Coordinate Frames , 2000, Journal of Cognitive Neuroscience.

[107]  Bijan Pesaran,et al.  Temporal structure in neuronal activity during working memory in macaque parietal cortex , 2000, Nature Neuroscience.

[108]  L H Snyder,et al.  Saccade-related activity in the parietal reach region. , 2000, Journal of neurophysiology.

[109]  F. Lacquaniti,et al.  Parieto-frontal coding of reaching: an integrated framework , 1999, Experimental Brain Research.

[110]  M. Goldberg,et al.  Activity of neurons in the lateral intraparietal area of the monkey during an antisaccade task , 1999, Nature Neuroscience.

[111]  Michael L. Platt,et al.  Neural correlates of decision variables in parietal cortex , 1999, Nature.

[112]  A P Batista,et al.  Reach plans in eye-centered coordinates. , 1999, Science.

[113]  R A Andersen,et al.  Influence of gaze rotation on the visual response of primate MSTd neurons. , 1999, Journal of neurophysiology.

[114]  Scott T. Grafton,et al.  Role of the posterior parietal cortex in updating reaching movements to a visual target , 1999, Nature Neuroscience.

[115]  J. Tanji,et al.  Both supplementary and presupplementary motor areas are crucial for the temporal organization of multiple movements. , 1998, Journal of neurophysiology.

[116]  Michael A. Arbib,et al.  Modeling parietal-premotor interactions in primate control of grasping , 1998, Neural Networks.

[117]  John H. R. Maunsell,et al.  Shape selectivity in primate lateral intraparietal cortex , 1998, Nature.

[118]  R. Andersen,et al.  Electrical microstimulation distinguishes distinct saccade-related areas in the posterior parietal cortex. , 1998, Journal of neurophysiology.

[119]  M. A. Basso,et al.  Modulation of Neuronal Activity in Superior Colliculus by Changes in Target Probability , 1998, The Journal of Neuroscience.

[120]  P. Kennedy,et al.  Restoration of neural output from a paralyzed patient by a direct brain connection , 1998, Neuroreport.

[121]  R. Andersen,et al.  Encoding of three-dimensional structure-from-motion by primate area MT neurons , 1998, Nature.

[122]  C. Gross,et al.  Spatial maps for the control of movement , 1998, Current Opinion in Neurobiology.

[123]  H. Deubel,et al.  Selective Dorsal and Ventral Processing: Evidence for a Common Attentional Mechanism in Reaching and Perception , 1998 .

[124]  S. Scott,et al.  Cortical control of reaching movements , 1997, Current Opinion in Neurobiology.

[125]  Peter Thier,et al.  False perception of motion in a patient who cannot compensate for eye movements , 1997, Nature.

[126]  P. Glimcher,et al.  Responses of intraparietal neurons to saccadic targets and visual distractors. , 1997, Journal of neurophysiology.

[127]  G. Rizzolatti,et al.  Parietal cortex: from sight to action , 1997, Current Opinion in Neurobiology.

[128]  H. Sakata,et al.  The TINS Lecture The parietal association cortex in depth perception and visual control of hand action , 1997, Trends in Neurosciences.

[129]  Hugh F. Durrant-Whyte,et al.  New approach to map building using relative position estimates , 1997, Defense, Security, and Sensing.

[130]  R. Andersen,et al.  Coding of intention in the posterior parietal cortex , 1997, Nature.

[131]  E. Fetz,et al.  Synchronization of neurons during local field potential oscillations in sensorimotor cortex of awake monkeys. , 1996, Journal of neurophysiology.

[132]  R. Andersen,et al.  Mechanisms of Heading Perception in Primate Visual Cortex , 1996, Science.

[133]  R. Andersen,et al.  Eye-centered, head-centered, and intermediate coding of remembered sound locations in area LIP. , 1996, Journal of neurophysiology.

[134]  H. Deubel,et al.  Saccade target selection and object recognition: Evidence for a common attentional mechanism , 1996, Vision Research.

[135]  J. Hopfield,et al.  Electrical microstimulation suggests two different forms of representation of head-centered space in the intraparietal sulcus of rhesus monkeys. , 1996, Proceedings of the National Academy of Sciences of the United States of America.

[136]  J. Kalaska Parietal cortex area 5 and visuomotor behavior. , 1996, Canadian journal of physiology and pharmacology.

[137]  Paul B. Johnson,et al.  Cortical networks for visual reaching: physiological and anatomical organization of frontal and parietal lobe arm regions. , 1996, Cerebral cortex.

[138]  M N Shadlen,et al.  Motion perception: seeing and deciding. , 1996, Proceedings of the National Academy of Sciences of the United States of America.

[139]  K. H. Britten,et al.  A relationship between behavioral choice and the visual responses of neurons in macaque MT , 1996, Visual Neuroscience.

[140]  Michael I. Jordan,et al.  An internal model for sensorimotor integration. , 1995, Science.

[141]  F. Lacquaniti,et al.  Representing spatial information for limb movement: role of area 5 in the monkey. , 1995, Cerebral cortex.

[142]  B. Dosher,et al.  The role of attention in the programming of saccades , 1995, Vision Research.

[143]  Dhanistha Panyasak,et al.  Circuits , 1995, Annals of the New York Academy of Sciences.

[144]  R. Andersen,et al.  Head position signals used by parietal neurons to encode locations of visual stimuli , 1995, Nature.

[145]  C. Gross,et al.  Coding of visual space by premotor neurons. , 1994, Science.

[146]  Jun Tanji,et al.  Role for supplementary motor area cells in planning several movements ahead , 1994, Nature.

[147]  J. Donoghue,et al.  Oscillations in local field potentials of the primate motor cortex during voluntary movement. , 1993, Proceedings of the National Academy of Sciences of the United States of America.

[148]  Michael I. Jordan,et al.  Forward Models: Supervised Learning with a Distal Teacher , 1992, Cogn. Sci..

[149]  J R Duhamel,et al.  The updating of the representation of visual space in parietal cortex by intended eye movements. , 1992, Science.

[150]  R. Andersen,et al.  Visual receptive field organization and cortico‐cortical connections of the lateral intraparietal area (area LIP) in the macaque , 1990, The Journal of comparative neurology.

[151]  R. M. Siegel,et al.  Corticocortical connections of anatomically and physiologically defined subdivisions within the inferior parietal lobule , 1990, The Journal of comparative neurology.

[152]  L. Fogassi,et al.  Eye position effects on visual, memory, and saccade-related activity in areas LIP and 7a of macaque , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.

[153]  K. H. Britten,et al.  Neuronal correlates of a perceptual decision , 1989, Nature.

[154]  G. Rizzolatti,et al.  Functional organization of inferior area 6 in the macaque monkey , 1988, Experimental Brain Research.

[155]  R. Andersen,et al.  Memory related motor planning activity in posterior parietal cortex of macaque , 1988, Experimental Brain Research.

[156]  Richard A. Andersen,et al.  A back-propagation programmed network that simulates response properties of a subset of posterior parietal neurons , 1988, Nature.

[157]  M. Goldberg,et al.  Visuospatial and motor attention in the monkey , 1987, Neuropsychologia.

[158]  G. Rizzolatti,et al.  Reorienting attention across the horizontal and vertical meridians: Evidence in favor of a premotor theory of attention , 1987, Neuropsychologia.

[159]  U. Mitzdorf Properties of the evoked potential generators: current source-density analysis of visually evoked potentials in the cat cortex. , 1987, The International journal of neuroscience.

[160]  R. M. Siegel,et al.  Encoding of spatial location by posterior parietal neurons. , 1985, Science.

[161]  R. Andersen,et al.  Callosal and prefrontal associational projecting cell populations in area 7A of the macaque monkey: A study using retrogradely transported fluorescent dyes , 1985, The Journal of comparative neurology.

[162]  L. Kempe Handbook of Physiology. Section I. The Nervous System , 1982 .

[163]  A. Tversky,et al.  The framing of decisions and the psychology of choice. , 1981, Science.

[164]  V. Mountcastle,et al.  Parietal lobe mechanisms for directed visual attention. , 1977, Journal of neurophysiology.

[165]  V. Mountcastle,et al.  Posterior parietal association cortex of the monkey: command functions for operations within extrapersonal space. , 1975, Journal of neurophysiology.

[166]  T Tokimitsu,et al.  [The function of the brain]. , 1967, [Hokenfu zasshi] The Japanese journal for public health nurse.

[167]  V. Mountcastle Modality and topographic properties of single neurons of cat's somatic sensory cortex. , 1957, Journal of neurophysiology.

[168]  W. Penfield,et al.  SOMATIC MOTOR AND SENSORY REPRESENTATION IN THE CEREBRAL CORTEX OF MAN AS STUDIED BY ELECTRICAL STIMULATION , 1937 .

[169]  A. Rangel The Computation and Comparison of Value in Goal-directed Choice , 2009 .

[170]  R. Andersen,et al.  Separate representations of target and timing cue locations in the supplementary eye fields. , 2009, Journal of neurophysiology.

[171]  C. Padoa-Schioppa,et al.  The representation of economic value in the orbitofrontal cortex is invariant for changes of menu , 2008, Nature Neuroscience.

[172]  R. Andersen,et al.  SEPARATE REPRESENTATIONS OF TARGET AND TIMING CUE LOCATIONS IN SEF , 2008 .

[173]  Colin Camerer,et al.  Neuroeconomics: decision making and the brain , 2008 .

[174]  M. Goldberg,et al.  Saccades, salience and attention: the role of the lateral intraparietal area in visual behavior. , 2006, Progress in brain research.

[175]  R. M. Siegel,et al.  Neurons of area 7 activated by both visual stimuli and oculomotor behavior , 2004, Experimental Brain Research.

[176]  E. Holst,et al.  Das Reafferenzprinzip , 2004, Naturwissenschaften.

[177]  G. Rizzolatti,et al.  Functional organization of inferior area 6 in the macaque monkey , 2004, Experimental Brain Research.

[178]  R. Andersen,et al.  Intentional maps in posterior parietal cortex. , 2002, Annual review of neuroscience.

[179]  Richard M. Murray,et al.  DISTRIBUTED COOPERATIVE CONTROL OF MULTIPLE VEHICLE FORMATIONS USING STRUCTURAL POTENTIAL FUNCTIONS , 2002 .

[180]  E. Miller,et al.  An integrative theory of prefrontal cortex function. , 2001, Annual review of neuroscience.

[181]  J. Assad,et al.  Dissociation of visual, motor and predictive signals in parietal cortex during visual guidance , 1999, Nature Neuroscience.

[182]  M. Goldberg,et al.  Space and attention in parietal cortex. , 1999, Annual review of neuroscience.

[183]  V. Mountcastle Perceptual Neuroscience: The Cerebral Cortex , 1998 .

[184]  R. Andersen,et al.  Multimodal representation of space in the posterior parietal cortex and its use in planning movements. , 1997, Annual review of neuroscience.

[185]  R. Desimone,et al.  Neural mechanisms of selective visual attention. , 1995, Annual review of neuroscience.

[186]  P. Goldman-Rakic Topography of cognition: parallel distributed networks in primate association cortex. , 1988, Annual review of neuroscience.

[187]  S. Wise The primate premotor cortex: past, present, and preparatory. , 1985, Annual review of neuroscience.

[188]  K. Brodmann Vergleichende Lokalisationslehre der Großhirnrinde : in ihren Prinzipien dargestellt auf Grund des Zellenbaues , 1985 .

[189]  R. Mansfield,et al.  Analysis of visual behavior , 1982 .

[190]  Leslie G. Ungerleider Two cortical visual systems , 1982 .

[191]  D. Sparks,et al.  Dissociation of visual and saccade-related responses in superior colliculus neurons. , 1980, Journal of neurophysiology.

[192]  W. T. Thach,et al.  Motor mechanisms of the CNS: cerebrocerebellar interrelations. , 1969, Annual review of physiology.

[193]  M. Critchley The parietal lobes , 1966 .

[194]  H. W. Stenvers On the function of the brain. , 1955, Folia psychiatrica, neurologica et neurochirurgica Neerlandica.

[195]  M. Goldberg,et al.  References and Notes Materials and Methods Figs. S1 and S2 Table S1 Movies S1 and S2 Neuronal Activity in the Lateral Intraparietal Area and Spatial Attention , 2022 .