| 1 | The individual training history shapes soccer players’ ability to predict teammates’ and opponents’ moves | 3.4 | 3 | Citations (PDF) |
| 2 | The importance of observing the master’s hand: Action Observation Training promotes the acquisition of new musical skills | 2.3 | 1 | Citations (PDF) |
| 3 | Two distinct networks for encoding goals and forms of action: An effective connectivity study | 7.5 | 8 | Citations (PDF) |
| 4 | Actions chains and intention understanding in 3- to 6-year-old children | 7.5 | 3 | Citations (PDF) |
| 5 | Investigating form and content of emotional and non-emotional laughing | 2.8 | 3 | Citations (PDF) |
| 6 | The value of corticospinal excitability and intracortical inhibition in predicting motor skill improvement driven by action observation | 4.4 | 19 | Citations (PDF) |
| 7 | Architectural experience influences the processing of others’ body expressions | 7.5 | 7 | Citations (PDF) |
| 8 | Communicative And Affective Components in Processing Auditory Vitality Forms: An fMRI Study | 2.8 | 8 | Citations (PDF) |
| 9 | Supporting preschoolers’ cognitive development: Short- and mid-term effects of fluid reasoning, visuospatial, and motor training | 3.5 | 19 | Citations (PDF) |
| 10 | The Proactive Synergy Between Action Observation and Execution in the Acquisition of New Motor Skills | 2.3 | 20 | Citations (PDF) |
| 11 | Action Observation and Motor Imagery administered the day before surgery enhance functional recovery in patients after total hip arthroplasty: A randomized controlled trial | 3.1 | 18 | Citations (PDF) |
| 12 | Measuring arousal and valence generated by the dynamic experience of architectural forms in virtual environments | 3.4 | 39 | Citations (PDF) |
| 13 | Specific tractography differences in autism compared to developmental coordination disorder | 3.4 | 25 | Citations (PDF) |
| 14 | Two Neural Networks for Laughter: A Tractography Study | 2.8 | 55 | Citations (PDF) |
| 15 | The neural bases of tactile vitality forms and their modulation by social context | 3.4 | 15 | Citations (PDF) |
| 16 | The role of mirror mechanism in the recovery, maintenance, and acquisition of motor abilities | 6.8 | 82 | Citations (PDF) |
| 17 | Telerehabilitation in response to constrained physical distance: an opportunity to rethink neurorehabilitative routines | 3.4 | 80 | Citations (PDF) |
| 18 | Tonic somatosensory responses and deficits of tactile awareness converge in the parietal operculumBrain, 2021, 144, 3779-3787 | 8.4 | 23 | Citations (PDF) |
| 19 | The middle cingulate cortex and dorso-central insula: A mirror circuit encoding observation and execution of vitality forms | 7.5 | 33 | Citations (PDF) |
| 20 | Observation of others’ actions during limb immobilization prevents the subsequent decay of motor performance | 7.5 | 20 | Citations (PDF) |
| 21 | Neurotypical individuals fail to understand action vitality form in children with autism spectrum disorder | 7.5 | 25 | Citations (PDF) |
| 22 | Action execution and action observation elicit mirror responses with the same temporal profile in human SII | 4.4 | 21 | Citations (PDF) |
| 23 | Mirroring other's laughter. Cingulate, opercular and temporal contributions to laughter expression and observation | 2.9 | 34 | Citations (PDF) |
| 24 | The neural bases of vitality forms | 9.8 | 31 | Citations (PDF) |
| 25 | Catching the imposter in the brain: The case of Capgras delusion | 2.9 | 10 | Citations (PDF) |
| 26 | Insula Connections With the Parieto-Frontal Circuit for Generating Arm Actions in Humans and Macaque Monkeys | 2.8 | 19 | Citations (PDF) |
| 27 | Understanding the attitude of others by hearing action sounds: the role of the insula | 3.4 | 11 | Citations (PDF) |
| 28 | Agent-based representations of objects and actions in the monkey pre-supplementary motor area | 7.5 | 52 | Citations (PDF) |
| 29 | Efficacy of a home‐based platform for child‐to‐child interaction on hand motor function in unilateral cerebral palsy | 3.6 | 30 | Citations (PDF) |
| 30 | Electroencephalographic time-frequency patterns of braking and acceleration movement preparation in car driving simulation | 2.5 | 26 | Citations (PDF) |
| 31 | Pathways for smiling, disgust and fear recognition in blindsight patients | 1.7 | 34 | Citations (PDF) |
| 32 | Giocare, narrare, agire: il loro effetto sullo sviluppo cognitivo, linguistico e motorio nei bambini di età prescolare | 0.1 | 1 | Citations (PDF) |
| 33 | Mirroring the Social Aspects of Speech and Actions: The Role of the Insula | 2.8 | 30 | Citations (PDF) |
| 34 | Multiple time courses of somatosensory responses in human cortex | 4.4 | 47 | Citations (PDF) |
| 35 | Motor and emotional behaviours elicited by electrical stimulation of the human cingulate cortexBrain, 2018, 141, 3035-3051 | 8.4 | 245 | Citations (PDF) |
| 36 | Perspective-dependent reactivity of sensorimotor mu rhythm in alpha and beta ranges during action observation: an EEG study | 3.4 | 81 | Citations (PDF) |
| 37 | Ipsilateral somatosensory responses in humans: the tonic activity of SII and posterior insular cortex | 2.5 | 20 | Citations (PDF) |
| 38 | System neuroscience: Past, present, and future | 5.0 | 22 | Citations (PDF) |
| 39 | Decomposing Tool-Action Observation: A Stereo-EEG Study | 2.8 | 16 | Citations (PDF) |
| 40 | The extended object-grasping network | 1.3 | 55 | Citations (PDF) |
| 41 | Some considerations on de Waal and Preston review | 20.8 | 34 | Citations (PDF) |
| 42 | A mirror mechanism for smiling in the anterior cingulate cortex. | 1.9 | 36 | Citations (PDF) |
| 43 | Vitality Forms Processing in the Insula during Action Observation: A Multivoxel Pattern Analysis | 2.3 | 25 | Citations (PDF) |
| 44 | Stereoscopically Observing Manipulative Actions | 2.8 | 22 | Citations (PDF) |
| 45 | Understanding the internal states of others by listening to action verbs | 1.7 | 24 | Citations (PDF) |
| 46 | Extending the Cortical Grasping Network: Pre-supplementary Motor Neuron Activity During Vision and Grasping of Objects | 2.8 | 47 | Citations (PDF) |
| 47 | The mirror mechanism: a basic principle of brain function | 20.8 | 456 | Citations (PDF) |
| 48 | Four-dimensional maps of the human somatosensory system | 7.5 | 113 | Citations (PDF) |
| 49 | The organization of the posterior parietal cortex devoted to upper limb actions: An fMRI study | 3.5 | 53 | Citations (PDF) |
| 50 | Failure in Pantomime Action Execution Correlates with the Severity of Social Behavior Deficits in Children with Autism: A Praxis Study | 2.1 | 35 | Citations (PDF) |
| 51 | Curious Book on Mirror Neurons and Their Myth | 0.3 | 28 | Citations (PDF) |
| 52 | Reply to Hickok | 0.3 | 0 | Citations (PDF) |
| 53 | Expressing our internal states and understanding those of others | 7.5 | 79 | Citations (PDF) |
| 54 | Mirth and laughter elicited by electrical stimulation of the human anterior cingulate cortex | 2.9 | 118 | Citations (PDF) |
| 55 | A human homologue of monkey F5c | 4.4 | 33 | Citations (PDF) |
| 56 | Space-Dependent Representation of Objects and Other's Action in Monkey Ventral Premotor Grasping Neurons | 3.7 | 118 | Citations (PDF) |
| 57 | The neural correlates of ‘vitality form’ recognition: an fMRI study | 2.7 | 58 | Citations (PDF) |
| 58 | What and Why Understanding in Autism Spectrum Disorders and Williams Syndrome: Similarities and Differences | 4.7 | 28 | Citations (PDF) |
| 59 | The mirror mechanism: recent findings and perspectives | 3.7 | 257 | Citations (PDF) |
| 60 | Mirror neuron research: the past and the future | 3.7 | 58 | Citations (PDF) |
| 61 | Linking psychoanalysis with neuroscience: The concept of ego | 1.7 | 19 | Citations (PDF) |
| 62 | Imitation: mechanisms and importance for human culture | 2.4 | 2 | Citations (PDF) |
| 63 | Cognitive abilities in siblings of children with autism spectrum disorders | 1.3 | 19 | Citations (PDF) |
| 64 | Cortical Mechanisms Underlying the Organization of Goal-Directed Actions and Mirror Neuron-Based Action Understanding | 25.4 | 472 | Citations (PDF) |
| 65 | A developmental study on children’s capacity to ascribe goals and intentions to others. | 1.5 | 8 | Citations (PDF) |
| 66 | Impaired vitality form recognition in autism | 1.7 | 75 | Citations (PDF) |
| 67 | Brain function overlaps when people observe emblems, speech, and grasping | 1.7 | 66 | Citations (PDF) |
| 68 | Functional properties of the left parietal tool use region | 4.4 | 107 | Citations (PDF) |
| 69 | The neural correlates of velocity processing during the observation of a biological effector in the parietal and premotor cortex | 4.4 | 45 | Citations (PDF) |
| 70 | The motor system resonates to the distal goal of observed actions: testing the inverse pliers paradigm in an ecological setting | 1.3 | 25 | Citations (PDF) |
| 71 | Spatiotemporal dynamics in understanding hand—object interactions | 7.5 | 14 | Citations (PDF) |
| 72 | Mirror neurons encode the subjective value of an observed action | 7.5 | 124 | Citations (PDF) |
| 73 | Functional organization of the insula and inner perisylvian regions | 7.5 | 137 | Citations (PDF) |
| 74 | Understanding motor acts and motor intentions in Williams syndrome | 1.7 | 23 | Citations (PDF) |
| 75 | The Dynamics of Sensorimotor Cortical Oscillations during the Observation of Hand Movements: An EEG Study | 2.3 | 201 | Citations (PDF) |
| 76 | Specificity of Esthetic Experience for Artworks: An fMRI Study | 2.3 | 52 | Citations (PDF) |
| 77 | Through the looking glass: Self and others | 1.9 | 63 | Citations (PDF) |
| 78 | Action Observation Circuits in the Macaque Monkey Cortex | 3.7 | 250 | Citations (PDF) |
| 79 | Responses of mirror neurons in area F5 to hand and tool grasping observation | 1.3 | 140 | Citations (PDF) |
| 80 | Giacomo Rizzolatti | 3.6 | 2 | Citations (PDF) |
| 81 | The functional role of the parieto-frontal mirror circuit: interpretations and misinterpretations | 20.8 | 1,617 | Citations (PDF) |
| 82 | Seven years of recording from monkey cortex with a chronically implanted multiple microelectrode | 1.3 | 63 | Citations (PDF) |
| 83 | Brain Response to a Humanoid Robot in Areas Implicated in the Perception of Human Emotional Gestures | 2.3 | 114 | Citations (PDF) |
| 84 | Coding Observed Motor Acts: Different Organizational Principles in the Parietal and Premotor Cortex of Humans | 2.1 | 207 | Citations (PDF) |
| 85 | Understanding Actions of Others: The Electrodynamics of the Left and Right Hemispheres. A High-Density EEG Neuroimaging Study | 2.3 | 101 | Citations (PDF) |
| 86 | Premotor theory of attention | 2.7 | 25 | Citations (PDF) |
| 87 | Representation of observed hand actions in macaque Superior Temporal Sulcus | 0.2 | 0 | Citations (PDF) |
| 88 | Understanding Others' Regret: A fMRI Study | 2.3 | 42 | Citations (PDF) |
| 89 | The Representation of Tool Use in Humans and Monkeys: Common and Uniquely Human Features | 3.7 | 382 | Citations (PDF) |
| 90 | The Mirror Neuron System | 6.8 | 881 | Citations (PDF) |
| 91 | Mirror neurons and their clinical relevance | 6.0 | 346 | Citations (PDF) |
| 92 | Mirror neurons: from discovery to autism | 1.3 | 251 | Citations (PDF) |
| 93 | Intention Understanding in Autism | 2.3 | 113 | Citations (PDF) |
| 94 | Further reflections on how we interpret the actions of others | 37.9 | 37 | Citations (PDF) |
| 95 | Functional organization of inferior parietal lobule convexity in the macaque monkey: electrophysiological characterization of motor, sensory and mirror responses and their correlation with cytoarchitectonic areas | 3.5 | 337 | Citations (PDF) |
| 96 | The mirror system and its role in social cognition | 4.7 | 310 | Citations (PDF) |
| 97 | Neural substrates for observing and imagining non-object-directed actions | 1.3 | 114 | Citations (PDF) |
| 98 | When pliers become fingers in the monkey motor system | 7.5 | 376 | Citations (PDF) |
| 99 | Mirror Neurons and Mirror Systems in Monkeys and Humans | 5.0 | 362 | Citations (PDF) |
| 100 | Planning actions in autism | 1.3 | 172 | Citations (PDF) |
| 101 | Mirror neurons | 2.7 | 12 | Citations (PDF) |
| 102 | Numbers within Our Hands: Modulation of Corticospinal Excitability of Hand Muscles during Numerical Judgment | 2.2 | 155 | Citations (PDF) |
| 103 | Impairment of actions chains in autism and its possible role in intention understanding | 7.5 | 411 | Citations (PDF) |
| 104 | The anthropomorphic brain: The mirror neuron system responds to human and robotic actions | 4.4 | 679 | Citations (PDF) |
| 105 | The neural basis for understanding non-intended actions | 4.4 | 70 | Citations (PDF) |
| 106 | Prefrontal involvement in imitation learning of hand actions: Effects of practice and expertise | 4.4 | 318 | Citations (PDF) |
| 107 | The Golden Beauty: Brain Response to Classical and Renaissance Sculptures | 2.3 | 246 | Citations (PDF) |
| 108 | Mirrors In The Mind | 0.1 | 243 | Citations (PDF) |
| 109 | Listening to action-related sentences modulates the activity of the motor system: A combined TMS and behavioral study | 4.0 | 600 | Citations (PDF) |
| 110 | The mirror neuron system and its function in humans | 0.0 | 424 | Citations (PDF) |
| 111 | Covert Speech Arrest Induced by rTMS over Both Motor and Nonmotor Left Hemisphere Frontal Sites | 2.2 | 83 | Citations (PDF) |
| 112 | Listening to Action-related Sentences Activates Fronto-parietal Motor Circuits | 2.2 | 1,022 | Citations (PDF) |
| 113 | Grasping the Intentions of Others with One's Own Mirror Neuron System | 5.0 | 1,588 | Citations (PDF) |
| 114 | Neural Circuits Involved in the Recognition of Actions Performed by Nonconspecifics: An fMRI Study | 2.2 | 686 | Citations (PDF) |
| 115 | THE MIRROR-NEURON SYSTEM | 11.4 | 7,391 | Citations (PDF) |
| 116 | A unifying view of the basis of social cognition | 6.8 | 1,898 | Citations (PDF) |
| 117 | Neural Circuits Underlying Imitation Learning of Hand Actions | 11.0 | 878 | Citations (PDF) |
| 118 | Two different streams form the dorsal visual system: anatomy and functions | 1.3 | 1,061 | Citations (PDF) |
| 119 | Mirror neurons responding to the observation of ingestive and communicative mouth actions in the monkey ventral premotor cortex | 3.5 | 614 | Citations (PDF) |
| 120 | Both of Us Disgusted in My Insula | 11.0 | 2,133 | Citations (PDF) |
| 121 | Hand action preparation influences the responses to hand pictures | 1.7 | 271 | Citations (PDF) |
| 122 | Motor and cognitive functions of the ventral premotor cortex | 4.7 | 584 | Citations (PDF) |
| 123 | Speech listening specifically modulates the excitability of tongue muscles: a TMS study | 3.5 | 758 | Citations (PDF) |
| 124 | I Know What You Are Doing | 11.0 | 1,139 | Citations (PDF) |
| 125 | The Cortical Motor System | 11.0 | 1,413 | Citations (PDF) |
| 126 | Cortical mechanism for the visual guidance of hand grasping movements in the monkey: A reversible inactivation studyBrain, 2001, 124, 571-586 | 8.4 | 377 | Citations (PDF) |
| 127 | Neurophysiological mechanisms underlying the understanding and imitation of action | 20.8 | 3,063 | Citations (PDF) |
| 128 | Action observation activates premotor and parietal areas in a somatotopic manner: an fMRI study | 3.5 | 1,463 | Citations (PDF) |
| 129 | Reafferent copies of imitated actions in the right superior temporal cortex | 7.5 | 475 | Citations (PDF) |
| 130 | The Organization of the Frontal Motor Cortex | 5.0 | 110 | Citations (PDF) |
| 131 | Visuomotor neurons: ambiguity of the discharge or ‘motor’ perception? | 1.1 | 347 | Citations (PDF) |
| 132 | Action for perception: A motor-visual attentional effect. | 0.9 | 293 | Citations (PDF) |
| 133 | A fronto-parietal circuit for object manipulation in man: evidence from an fMRI-study | 3.5 | 665 | Citations (PDF) |
| 134 | A parieto-premotor network for object manipulation: evidence from neuroimaging | 1.3 | 260 | Citations (PDF) |
| 135 | From grasping to speech: imitation might provide a missing link: Reply | 9.8 | 42 | Citations (PDF) |
| 136 | Action for perception: A motor-visual attentional effect. | 0.9 | 185 | Citations (PDF) |
| 137 | The organization of the cortical motor system: new concepts | 2.4 | 1,181 | Citations (PDF) |
| 138 | Parcellation of human mesial area 6: cytoarchitectonic evidence for three separate areas | 3.5 | 94 | Citations (PDF) |
| 139 | Language within our grasp | 9.8 | 2,789 | Citations (PDF) |
| 140 | 6 Recognizing and understanding motor events | 1.1 | 0 | Citations (PDF) |
| 141 | Activation of human primary motor cortex during action observation: A neuromagnetic study | 7.5 | 919 | Citations (PDF) |
| 142 | Premotor Cortex Activation during Observation and Naming of Familiar Tools | 4.4 | 695 | Citations (PDF) |
| 143 | Parietal cortex: from sight to action | 4.7 | 447 | Citations (PDF) |
| 144 | Object Representation in the Ventral Premotor Cortex (Area F5) of the Monkey | 2.1 | 676 | Citations (PDF) |
| 145 | Effects of spatial attention on directional manual and ocular responses | 1.3 | 107 | Citations (PDF) |
| 146 | Premotor cortex and the recognition of motor actions | 4.0 | 4,457 | Citations (PDF) |
| 147 | Action recognition in the premotor cortexBrain, 1996, 119, 593-609 | 8.4 | 4,820 | Citations (PDF) |
| 148 | Coding of peripersonal space in inferior premotor cortex (area F4) | 2.1 | 625 | Citations (PDF) |
| 149 | Evidence for visuomotor priming effect | 1.5 | 154 | Citations (PDF) |
| 150 | Localization of grasp representations in humans by positron emission tomography | 1.3 | 926 | Citations (PDF) |
| 151 | Localization of grasp representations in humans by PET: 1. Observation versus execution | 1.3 | 870 | Citations (PDF) |
| 152 | Spatial attention-determined modifications in saccade trajectories | 1.5 | 127 | Citations (PDF) |
| 153 | Spatial attention and eye movements | 1.3 | 204 | Citations (PDF) |
| 154 | Motor facilitation during action observation: a magnetic stimulation study | 2.1 | 2,316 | Citations (PDF) |
| 155 | Grasping objects: the cortical mechanisms of visuomotor transformation | 9.8 | 1,450 | Citations (PDF) |
| 156 | Is neglect a theoretically coherent unit? | 2.1 | 4 | Citations (PDF) |
| 157 | Orienting of attention and eye movements | 1.3 | 405 | Citations (PDF) |
| 158 | The fronto-parietal cortex of the prosimian Galago: Patterns of cytochrome oxidase activity and motor maps | 2.2 | 26 | Citations (PDF) |
| 159 | Programming shifts of spatial attention | 1.3 | 14 | Citations (PDF) |
| 160 | Corticospinal projections from mesial frontal and cingulate areas in the monkey | 1.5 | 101 | Citations (PDF) |
| 161 | Corticocortical connections of area F3 (SMA-proper) and area F6 (pre-SMA) in the macaque monkey | 2.0 | 780 | Citations (PDF) |
| 162 | Study of selective reaching and grasping in a patient with unilateral parietal lesionBrain, 1993, 116, 1119-1137 | 8.4 | 96 | Citations (PDF) |
| 163 | Activation of precentral and mesial motor areas during the execution of elementary proximal and distal arm movements | 1.5 | 79 | Citations (PDF) |
| 164 | Visual Processing without Awareness: Evidence from Unilateral Neglect | 2.2 | 309 | Citations (PDF) |
| 165 | Space coding by premotor cortex | 1.3 | 217 | Citations (PDF) |
| 166 | Understanding motor events: a neurophysiological study | 1.3 | 3,283 | Citations (PDF) |
| 167 | Motor control of voluntary arm movements | 1.4 | 20 | Citations (PDF) |
| 168 | Differential hemispheric asymmetries in depression and anxiety: A reaction-time study | 5.4 | 55 | Citations (PDF) |
| 169 | Influence of different types of grasping on the transport component of prehension movements | 1.7 | 260 | Citations (PDF) |
| 170 | Architecture of superior and mesial area 6 and the adjacent cingulate cortex in the macaque monkey | 2.0 | 583 | Citations (PDF) |
| 171 | Multiple representations of body movements in mesial area 6 and the adjacent cingulate cortex: An intracortical microstimulation study in the macaque monkey | 2.0 | 547 | Citations (PDF) |
| 172 | Differential effects of central and peripheral cues on the reorienting of spatial attention | 1.3 | 104 | Citations (PDF) |
| 173 | Cortico-cortical connections of two electrophysiologically identified arm representations in the mesial agranular frontal cortex | 1.3 | 108 | Citations (PDF) |
| 174 | Neurons related to reaching-grasping arm movements in the rostral part of area 6 (area 6a?) | 1.3 | 255 | Citations (PDF) |
| 175 | Thalamic input to inferior area 6 and area 4 in the macaque monkey | 2.0 | 226 | Citations (PDF) |
| 176 | Functional organization of inferior area 6 in the macaque monkey | 1.3 | 583 | Citations (PDF) |
| 177 | Functional organization of inferior area 6 in the macaque monkey | 1.3 | 1,509 | Citations (PDF) |
| 178 | Right hemisphere superiority for programming oculomotion: Evidence from simple reaction time experiments | 1.7 | 21 | Citations (PDF) |
| 179 | The sensory-motor cortex of galago crassicaudatus: Anatomical and microstimulation data | 2.2 | 0 | Citations (PDF) |
| 180 | Somatotopic organization of motor thalamus in the macaque monkey | 2.2 | 0 | Citations (PDF) |
| 181 | Neurons related to goal-directed motor acts in inferior area 6 of the macaque monkey | 1.3 | 125 | Citations (PDF) |
| 182 | Movements of attention in the three spatial dimensions and the meaning of “neutral” cues | 1.7 | 170 | Citations (PDF) |
| 183 | Reorienting attention across the horizontal and vertical meridians: Evidence in favor of a premotor theory of attention | 1.7 | 1,748 | Citations (PDF) |
| 184 | Functional properties of neurons in the lateral part of area 6 in the macaque monkey | 2.2 | 0 | Citations (PDF) |
| 185 | Afferent and efferent projections of the inferior area 6 in the macaque monkey | 2.0 | 572 | Citations (PDF) |
| 186 | Evidence of interhemispheric transmission in laterality effects | 1.7 | 47 | Citations (PDF) |
| 187 | Patterns of cytochrome oxidase activity in the frontal agranular cortex of the macaque monkey | 2.2 | 522 | Citations (PDF) |
| 188 | Right hemisphere interference during negative affect: a reaction time study | 1.7 | 65 | Citations (PDF) |
| 189 | Francesco Gennari and the structure of the cerebral cortex | 9.8 | 17 | Citations (PDF) |
| 190 | Interconnections within the postarcuate cortex (area 6) of the macaque monkey | 2.5 | 36 | Citations (PDF) |
| 191 | Visual responses in the postarcuate cortex (area 6) of the monkey that are independent of eye position | 1.3 | 167 | Citations (PDF) |
| 192 | Upper visual space neglect and motor deficits after section of the midbrain commissures in the cat | 2.2 | 40 | Citations (PDF) |
| 193 | DEFICITS IN ATTENTION AND MOVEMENT FOLLOWING THE REMOVAL OF POSTARCUATE (AREA 6) AND PREARCUATE (AREA 8) CORTEX IN MACAQUE MONKEYSBrain, 1983, 106, 655-673 | 8.4 | 587 | Citations (PDF) |
| 194 | Functional properties of neurons in the lateral part of the postarcuate cortex (“mouth area”) in the macaque monkey | 2.2 | 0 | Citations (PDF) |
| 195 | Interference of concomitant tasks on simple reaction time: Attentional and motor factors | 1.7 | 25 | Citations (PDF) |
| 196 | Spatial compatibility effects on the same side of the body midline. | 0.9 | 79 | Citations (PDF) |
| 197 | Response properties and behavioral modulation of ‘mouth’ neurons of the postarcuate cortex (area 6) in macaque monkeys | 2.5 | 101 | Citations (PDF) |
| 198 | Afferent properties of periarcuate neurons in macaque monkeys. I. Somatosensory responses | 2.2 | 380 | Citations (PDF) |
| 199 | Afferent properties of periarcuate neurons in macaque monkeys. II. Visual responses | 2.2 | 722 | Citations (PDF) |
| 200 | The role of stimulus discriminability and verbal codability in hemispheric specialization for visuospatial tasks | 1.7 | 35 | Citations (PDF) |
| 201 | Interference of concomitant motor and verbal tasks on simple reaction time: A hemispheric difference | 1.7 | 37 | Citations (PDF) |
| 202 | Neurons responding to visual stimuli in the frontal lobe of macaque monkeys | 1.9 | 97 | Citations (PDF) |
| 203 | Right hemispheric superiority in discrimination of brief acoustic duration | 1.7 | 29 | Citations (PDF) |
| 204 | Hemispheric differences in the discrimination of the velocity and duration of a simple visual stimulus | 1.7 | 23 | Citations (PDF) |
| 205 | Hemispheric Superiority in Reaction Time to Faces: A Sex Difference | 2.9 | 151 | Citations (PDF) |
| 206 | Spatial compatibility and anatomical factors in simple and choice reaction time | 1.7 | 245 | Citations (PDF) |
| 207 | Visual receptive fields in the lateral suprasylvian area (Clare-Bishop area) of the cat | 2.5 | 115 | Citations (PDF) |
| 208 | Inhibition of visual responses of single units in the cat visual area of the lateral suprasylvian gyrus (Clare-Bishop area) by the introduction of a second visual stimulus | 2.5 | 41 | Citations (PDF) |
| 209 | Hemispheric differences in the discrimination of line orientation | 1.7 | 91 | Citations (PDF) |
| 210 | Left hemisphere superiority for the recognition of well known faces | 2.5 | 37 | Citations (PDF) |
| 211 | Can Lateral Asymmetries in Attention Explain Interfield Differences in Visual Perception? | 2.9 | 33 | Citations (PDF) |
| 212 | Hemispheric differences in normal human subjects: further evidence from study of reaction time to lateralized visual stimuli | 2.5 | 9 | Citations (PDF) |
| 213 | Inhibition of visual responses of single units in the cat superior colliculus by the introduction of a second visual stimulus | 2.5 | 35 | Citations (PDF) |
| 214 | OPPOSITE SUPERIORITIES OF THE RIGHT AND LEFT CEREBRAL HEMISPHERES IN DISCRIMINATIVE REACTION TIME TO PHYSIOGNOMICAL AND ALPHABETICAL MATERIAL | 8.4 | 339 | Citations (PDF) |
| 215 | SIMPLE REACTION TIMES OF IPSILATERAL AND CONTRALATERAL HAND TO LATERALIZED VISUAL STIMULI | 8.4 | 196 | Citations (PDF) |
| 216 | Bridging feeling and motion: Insula–premotor dynamics in the processing of action vitality forms | 7.5 | 4 | Citations (PDF) |
| 217 | In vivo parcellation of the human superior colliculus from brain-wide probabilistic connectivity | 7.5 | 1 | Citations (PDF) |