Motor and cognitive functions of the ventral premotor cortex
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[1] Scott T. Grafton,et al. Localization of grasp representations in humans by positron emission tomography , 1996, Experimental Brain Research.
[2] G. Rizzolatti,et al. Functional organization of inferior area 6 in the macaque monkey , 1988, Experimental Brain Research.
[3] G. Rizzolatti,et al. Functional organization of inferior area 6 in the macaque monkey , 2004, Experimental Brain Research.
[4] Jon Driver,et al. Reaching with a tool extends visual–tactile interactions into far space: evidence from cross-modal extinction , 2001, Neuropsychologia.
[5] P. Strick,et al. Imaging the premotor areas , 2001, Current Opinion in Neurobiology.
[6] D. Hoffman,et al. Direction of action is represented in the ventral premotor cortex , 2001, Nature Neuroscience.
[7] G. Rizzolatti,et al. The Cortical Motor System , 2001, Neuron.
[8] G. Rizzolatti,et al. Neurophysiological mechanisms underlying the understanding and imitation of action , 2001, Nature Reviews Neuroscience.
[9] J. Sanes,et al. Spatial coding of visual and somatic sensory information in body‐centred coordinates , 2001, The European journal of neuroscience.
[10] G. Rizzolatti,et al. I Know What You Are Doing A Neurophysiological Study , 2001, Neuron.
[11] Atsushi Iriki,et al. Self-images in the video monitor coded by monkey intraparietal neurons , 2001, Neuroscience Research.
[12] H. Forssberg,et al. Differential fronto-parietal activation depending on force used in a precision grip task: an fMRI study. , 2001, Journal of neurophysiology.
[13] Scott T. Grafton,et al. Functional Anatomy of Nonvisual Feedback Loops during Reaching: A Positron Emission Tomography Study , 2001, The Journal of Neuroscience.
[14] Alex Martin,et al. Semantic memory and the brain: structure and processes , 2001, Current Opinion in Neurobiology.
[15] D. V. von Cramon,et al. Functional organization of the lateral premotor cortex: fMRI reveals different regions activated by anticipation of object properties, location and speed. , 2001, Brain research. Cognitive brain research.
[16] G. Rizzolatti,et al. Cortical mechanism for the visual guidance of hand grasping movements in the monkey: A reversible inactivation study. , 2001, Brain : a journal of neurology.
[17] K. Zilles,et al. Polymodal Motion Processing in Posterior Parietal and Premotor Cortex A Human fMRI Study Strongly Implies Equivalencies between Humans and Monkeys , 2001, Neuron.
[18] G. Rizzolatti,et al. Action observation activates premotor and parietal areas in a somatotopic manner: an fMRI study , 2001, The European journal of neuroscience.
[19] A Maravita,et al. Vision and touch through the looking glass in a case of crossmodal extinction , 2000, Neuroreport.
[20] J B Poline,et al. Partially overlapping neural networks for real and imagined hand movements. , 2000, Cerebral cortex.
[21] Alex Martin,et al. Representation of Manipulable Man-Made Objects in the Dorsal Stream , 2000, NeuroImage.
[22] A Farnè,et al. Dynamic size‐change of hand peripersonal space following tool use , 2000, Neuroreport.
[23] A. Berti,et al. When Far Becomes Near: Remapping of Space by Tool Use , 2000, Journal of Cognitive Neuroscience.
[24] R. Hari,et al. Temporal dynamics of cortical representation for action. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[25] R. Johansson,et al. Cortical activity in precision- versus power-grip tasks: an fMRI study. , 2000, Journal of neurophysiology.
[26] J. Mazziotta,et al. Cortical mechanisms of human imitation. , 1999, Science.
[27] D. Hoffman,et al. Muscle and movement representations in the primary motor cortex. , 1999, Science.
[28] R. J. Seitz,et al. A fronto‐parietal circuit for object manipulation in man: evidence from an fMRI‐study , 1999, The European journal of neuroscience.
[29] K Friston,et al. Signal-, set- and movement-related activity in the human brain: an event-related fMRI study. , 1999, Cerebral cortex.
[30] C. Gross,et al. A neuronal representation of the location of nearby sounds , 1999, Nature.
[31] Giuseppe di Pellegrino,et al. Neuropsychological Evidence of an Integrated Visuotactile Representation of Peripersonal Space in Humans , 1998, Journal of Cognitive Neuroscience.
[32] J. Decety,et al. Top down effect of strategy on the perception of human biological motion: a pet investigation. , 1998, Cognitive neuropsychology.
[33] R. Passingham,et al. The Preparation, Execution and Suppression of Copied Movements in the Human Brain , 1996 .
[34] Elisabetta Làdavas,et al. Seeing where your hands are , 1997, Nature.
[35] G. Rizzolatti,et al. Coding of peripersonal space in inferior premotor cortex (area F4). , 1996, Journal of neurophysiology.
[36] T. Paus. Location and function of the human frontal eye-field: A selective review , 1996, Neuropsychologia.
[37] G. Rizzolatti,et al. Action recognition in the premotor cortex. , 1996, Brain : a journal of neurology.
[38] G. Rizzolatti,et al. Premotor cortex and the recognition of motor actions. , 1996, Brain research. Cognitive brain research.
[39] L. Parsons,et al. Use of implicit motor imagery for visual shape discrimination as revealed by PET , 1995, Nature.
[40] J. Mazziotta,et al. Mapping motor representations with positron emission tomography , 1994, Nature.
[41] M. Petrides. Comparative architectonic analysis of the human and the macaque frontal cortex , 1994 .
[42] G. Rizzolatti,et al. Activation of precentral and mesial motor areas during the execution of elementary proximal and distal arm movements: a PET study. , 1993, Neuroreport.
[43] A. Berti. Handbook of neuropsychology Edited by F. Boller, J. Grafman, G. Rizzolatti and H. Goodglass. Elsevier, New York, 1988, 441 pp , 1992, Neuropsychologia.
[44] Karl J. Friston,et al. Regional cerebral blood flow during voluntary arm and hand movements in human subjects. , 1991, Journal of neurophysiology.
[45] J. Marshall,et al. Left neglect for near but not far space in man , 1991, Nature.
[46] M. Torrens. Co-Planar Stereotaxic Atlas of the Human Brain—3-Dimensional Proportional System: An Approach to Cerebral Imaging, J. Talairach, P. Tournoux. Georg Thieme Verlag, New York (1988), 122 pp., 130 figs. DM 268 , 1990 .
[47] G. Rizzolatti,et al. Deficits in attention and movement following the removal of postarcuate (area 6) and prearcuate (area 8) cortex in macaque monkeys. , 1983, Brain : a journal of neurology.
[48] G. Rizzolatti,et al. Afferent properties of periarcuate neurons in macaque monkeys. II. Visual responses , 1981, Behavioural Brain Research.
[49] G. Bonin,et al. The neocortex of Macaca mulatta , 1947 .
[50] O. Foerster,et al. THE MOTOR CORTEX IN MAN IN THE LIGHT OF HUGHLINGS JACKSON'S DOCTRINES , 1936 .