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V Gallese, A Murata, M Kaseda, N Niki, H Sakata (1994)
Deficit of hand preshaping after muscimol injection in monkey parietal cortexNeuroReport, 5
C Prablanc, JF Echallier, E Komilis, M Jeannerod (1979)
Optimal response of eye and hand motor systems in pointing at a visual target. I. Spatio-temporal characteristics of eye and hand movements and their relationships when varying the amount of visual informationBiol Cybern, 35
Y Rossetti, M Desmurget, C Prablanc (1995)
Vectorial coding of movement: vision, proprioception, or both?J Neurophysiol, 74
L Pisella, H Gréa, C Tilikete, A Vighetto, M Desmurget, G Rode, D Boisson, Y Rossetti (2000)
An ‘automatic pilot’ for the hand in human posterior parietal cortex: toward reinterpreting optic ataxiaNat Neurosci, 3
A Blangero, MM Menz, A McNamara, F Binkofski (2009)
Parietal modules for reachingNeuropsychologia, 47
H Oyachi, K Ohtsuka (1995)
Transcranial magnetic stimulation of the posterior parietal cortex degrades accuracy of memory-guided saccades in humansInvest Ophthalmol Vis Sci, 36
CA Buneo, MR Jarvis, AP Batista, RA Andersen (2002)
Direct visuomotor transformations for reachingNature, 416
P Fattori, V Raos, R Breveglieri, A Bosco, N Marzocchi, C Galletti (2010)
The dorsomedial pathway is not just for reaching: grasping neurons in the medial parieto-occipital cortex of the macaque monkeyJ Neurosci, 30
P Trillenberg, A Sprenger, D Petersen, D Kömpf, W Heide, C Helmchen (2007)
Functional dissociation of saccade and hand reaching control with bilateral lesions of the medial wall of the intraparietal sulcus: implications for optic ataxiaNeuroImage, 36
JP Gallivan, C Cavina-Pratesi, JC Culham (2009)
Is that within reach? fMRI reveals that the human superior parieto-occipital cortex encodes objects reachable by the handJ Neurosci, 29
SW Chang, C Papadimitriou, LH Snyder (2009)
Using a compound gain field to compute a reach planNeuron, 64
RA Andersen, PR Brotchie, P Mazzoni (1992)
Evidence for the lateral intraparietal area as the parietal eye fieldCurr Opin Neurobiol, 2
M Vesia, JA Monteon, LE Sergio, JD Crawford (2006)
Hemispheric asymmetry in memory-guided pointing during single-pulse transcranial magnetic stimulation of human parietal cortexJ Neurophysiol, 96
F Binkofski (1998)
1253Neurology, 50
T Nyffeler, A Egli, T Pflugshaupt, R Wartburg, P Wurtz, U Mosimann, CW Hess, RM Müri (2005)
The role of the human posterior parietal cortex in memory-guided saccade execution: a double-pulse transcranial magnetic stimulation studyEur J Neurosci, 22
A Blangero (2010)
77Cortex, 46
D Schluppeck, P Glimcher, DJ Heeger (2005)
Topographic organization for delayed saccades in human posterior parietal cortexJ Neurophysiol, 94
G Koch, MF Olmo, B Cheeran, S Schippling, C Caltagirone, J Driver, JC Rothwell (2008)
Functional interplay between posterior parietal and ipsilateral motor cortex revealed by Twin-Coil transcranial magnetic stimulation during reach planning toward contralateral spaceJ Neurosci, 28
RS Johansson, G Westling, A Bäckström, JR Flanagan (2001)
Eye-hand coordination in object manipulationJ Neurosci, 21
R Caminiti, MV Chafee, A Battaglia-Mayer, BB Averbeck, DA Crowe, AP Georgopoulos (2010)
Understanding the parietal lobe syndrome from a neurophysiological and evolutionary perspectiveEur J Neurosci, 31
AP Batista, CA Buneo, LH Snyder, RA Andersen (1999)
Reach plans in eye-centered coordinatesScience, 285
JC Culham, SL Danckert, JFX DeSouza, JS Gati, RS Menon, MA Goodale (2003)
Visually guided grasping produces fMRI activation in dorsal but not ventral stream brain areasExp Brain Res, 153
MS Graziano, CG Gross (1998)
Spatial maps for the control of movementCurr Opin Neurobiol, 8
GJ Blatt, RA Andersen, GR Stoner (1990)
Visual receptive field organization and cortico-cortical connections of the lateral intraparietal area (area LIP) in the macaqueJ Comp Neurol, 299
C Galletti, DF Kutz, M Gamberini, R Breveglieri, P Fattori (2003)
Role of the medial parieto-occipital cortex in the control of reaching and grasping movementsExp Brain Res, 153
N Marzocchi, R Breveglieri, C Galletti, P Fattori (2008)
Reaching activity in parietal area V6A of macaque: eye influence on arm activity or retinocentric coding of reaching movements?Eur J Neurosci, 27
JD Meier, TN Aflalo, S Kastner, MS Graziano (2008)
Complex organization of human primary motor cortex: a high-resolution fMRI studyJ Neurophysiol, 100
BB Averbeck (2009)
1911J Neurophysiol, 102
JL Calton, AR Dickinson, LH Snyder (2002)
Non-spatial, motor-specific activation in posterior parietal cortexNat Neurosci, 5
M Pare, RH Wurtz (2001)
Progression in neuronal processing for saccadic eye movements from parietal cortex area lip to superior colliculusJ Neurophysiol, 85
SM Beurze, FP Lange, I Toni, WP Medendorp (2007)
Integration of target and effector information in the human brain during reach planningJ Neurophysiol, 97
J Fernandez-Ruiz, HC Goltz, JFX DeSouza, T Vilis, JD Crawford (2007)
Human parietal “reach region” primarily encodes intrinsic visual direction, not extrinsic movement direction, in a visual motor dissociation taskCereb Cortex, 17
M Iacoboni (2006)
Visuo-motor integration and control in the human posterior parietal cortex: evidence from TMS and fMRINeuropsychologia, 44
C Grefkes, A Ritzl, K Zilles, GR Fink (2004)
Human medial intraparietal cortex subserves visuomotor coordinate transformationNeuroImage, 23
RM Müri, AI Vermersch, S Rivaud, B Gaymard, C Pierrot-Deseilligny (1996)
Effects of single-pulse transcranial magnetic stimulation over the prefrontal and posterior parietal cortices during memory-guided saccades in humansJ Neurophysiol, 76
K Nelissen, W Vanduffel (2011)
Grasping-related functional magnetic resonance imaging brain responses in the macaque monkeyJ Neurosci, 31
G Rizzolatti, L Fogassi, V Gallese (1997)
Parietal cortex: from sight to actionCurr Opin Neurobiol, 7
J Prado, S Clavagnier, H Otzenberger, C Scheiber, H Kennedy, M-T Perenin (2005)
Two cortical systems for reaching in central and peripheral visionNeuron, 48
DM Wolpert (1997)
Computational approaches to motor controlTrends Cogn Sci, 1
SW Chang, LH Snyder (2010)
Idiosyncratic and systematic aspects of spatial representations in the macaque parietal cortexProc Natl Acad Sci USA, 107
MA Goodale, AD Milner (1992)
Separate visual pathways for perception and actionTrends Neurosci, 15
D Thura, D Boussaoud, M Meunier (2008)
Hand position affects saccadic reaction times in monkeys and humansJ Neurophysiol, 99
N Smyrnis, C Theleritis, I Evdokimidis, RM Müri, N Karandreas (2003)
Single-pulse transcranial magnetic stimulation of parietal and prefrontal areas in a memory delay arm pointing taskJ Neurophysiol, 89
SV Astafiev, GL Shulman, CM Stanley, AZ Snyder, DC Essen, M Corbetta (2003)
Functional organization of human intraparietal and frontal cortex for attending, looking, and pointingJ Neurosci, 23
GJ Blatt (1990)
421J Comp Neurol, 299
D Schluppeck, CE Curtis, PW Glimcher, DJ Heeger (2006)
Sustained activity in topographic areas of human posterior parietal cortex during memory-guided saccadesJ Neurosci, 26
DM Wolpert, Z Ghahramani (2000)
Computational principles of movement neuroscienceNat Neurosci, 3
MA Baumann (2009)
6436J Neurosci, 29
M Taira, S Mine, AP Georgopoulos, A Murata, H Sakata (1990)
Parietal cortex neurons of the monkey related to the visual guidance of hand movementExp Brain Res, 83
Y Rossetti, L Pisella, A Vighetto (2003)
Optic ataxia revisited: visually guided action versus immediate visuomotor controlExp Brain Res, 153
LH Snyder, AP Batista, RA Andersen (2000)
Saccade-related activity in the parietal reach regionJ Neurophysiol, 83
M Desmurget, S Grafton (2000)
Forward modeling allows feedback control for fast reaching movementsTrends Cogn Sci, 4
E Coulthard, A Parton, M Husain (2006)
Action control in visual neglectNeuropsychologia, 44
M Jeannerod, MA Arbib, G Rizzolatti, H Sakata (1995)
Grasping objects: the cortical mechanisms of visuomotor transformationTrends Neurosci, 18
B Pesaran, S Musallam, RA Andersen (2006)
Cognitive neural prostheticsCurr Biol CB, 16
V Della-Maggiore, N Malfait, DJ Ostry, T Paus (2004)
Stimulation of the posterior parietal cortex interferes with arm trajectory adjustments during the learning of new dynamicsJ Neurosci, 24
JR Lackner (1988)
Some proprioceptive influences on the perceptual representation of body shape and orientationBrain, 111
DY Henriques, EM Klier, MA Smith, D Lowy, JD Crawford (1998)
Gaze-centered remapping of remembered visual space in an open-loop pointing taskJ Neurosci, 18
LH Snyder, JL Calton, AR Dickinson, BM Lawrence (2002)
Eye-hand coordination: saccades are faster when accompanied by a coordinated arm movementJ Neurophysiol, 87
M Davare, A Kraskov, JC Rothwell, RN Lemon (2011)
Interactions between areas of the cortical grasping networkCurr Opin Neurobiol, 21
VB Mountcastle, JC Lynch, A Georgopoulos, H Sakata, C Acuna (1975)
Posterior parietal association cortex of the monkey: command functions for operations within extrapersonal spaceJ Neurophysiol, 38
A Blangero (2007)
T61NeuroImage, 36
R Caminiti, S Ferraina, AB Mayer (1998)
Visuomotor transformations: early cortical mechanisms of reachingCurr Opin Neurobiol, 8
H Gomi (2008)
Implicit online corrections of reaching movementsCurr Opin Neurobiol, 18
EP Merriam, CR Genovese, CL Colby (2003)
Spatial updating in human parietal cortexNeuron, 39
G Blohm, GP Keith, JD Crawford (2009)
Decoding the cortical transformations for visually guided reaching in 3D spaceCereb Cortex, 19
P Donkelaar (1998)
Saccade amplitude influences pointing movement kinematicsNeuroReport, 9
F Filimon (2010)
Human cortical control of hand movements: parietofrontal networks for reaching, grasping, and pointingNeuroscientist, 16
M Himmelbach, M Nau, I Zündorf, M Erb, M Perenin, H Karnath (2009)
Brain activation during immediate and delayed reaching in optic ataxiaNeuropsychologia, 47
C Pierrot-Deseilligny, S Rivaud, B Gaymard, Y Agid (1991)
Cortical control of memory-guided saccades in manExp Brain Res, 83
JF DeSouza, SP Dukelow, JS Gati, RS Menon, RA Andersen, T Vilis (2000)
Eye position signal modulates a human parietal pointing region during memory-guided movementsJ Neurosci, 20
M Corbetta, E Akbudak, TE Conturo, AZ Snyder, JM Ollinger, HA Drury, MR Linenweber, SE Petersen, ME Raichle, DC Essen, GL Shulman (1998)
A common network of functional areas for attention and eye movementsNeuron, 21
E Tunik, SH Frey, ST Grafton (2005)
Virtual lesions of the anterior intraparietal area disrupt goal-dependent on-line adjustments of graspNat Neurosci, 8
M Gamberini, L Passarelli, P Fattori, M Zucchelli, S Bakola, G Luppino, C Galletti (2009)
Cortical connections of the visuomotor parietooccipital area V6Ad of the macaque monkeyJ Comp Neurol, 513
ST Grafton (2010)
The cognitive neuroscience of prehension: recent developmentsExp Brain Res, 204
A Blangero (2008)
560Cortex, 44
JW Bisley, ME Goldberg (2010)
Attention, intention, and priority in the parietal lobeAnnu Rev Neurosci, 33
A Blangero, H Ota, Y Rossetti, T Fujii, H Ohtake, M Tabuchi, A Vighetto, A Yamadori, P Vindras, L Pisella (2010)
Systematic retinotopic reaching error vectors in unilateral optic ataxiaCortex, 46
RA Andersen, H Cui (2009)
Intention, action planning, and decision making in parietal-frontal circuitsNeuron, 63
PT Elkington, GK Kerr, JS Stein (1992)
The effect of electromagnetic stimulation of the posterior parietal cortex on eye movementsEye, 6
CL Colby, JR Duhamel, ME Goldberg (1996)
Visual, presaccadic, and cognitive activation of single neurons in monkey lateral intraparietal areaJ Neurophysiol, 76
SV Astafiev (2003)
4689J Neurosci, 23
WP Medendorp, HC Goltz, T Vilis, JD Crawford (2003)
Gaze-centered updating of visual space in human parietal cortexJ Neurosci, 23
AP Morris, CD Chambers, JB Mattingley (2007)
Parietal stimulation destabilizes spatial updating across saccadic eye movementsProc Nat Acad Sci USA, 104
M Desmurget, CM Epstein, RS Turner, C Prablanc, GE Alexander, ST Grafton (1999)
Role of the posterior parietal cortex in updating reaching movements to a visual targetNat Neurosci, 2
Q Yang, Z Kapoula (2004)
TMS over the left posterior parietal cortex prolongs latency of contralateral saccades and convergenceIOVS, 45
M Desmurget, A Sirigu (2009)
A parietal-premotor network for movement intention and motor awarenessTrends Cogn Sci, 13
CL Striemer, PA Chouinard, MA Goodale (2011)
Programs for action in superior parietal cortex: a triple-pulse TMS investigationNeuropsychologia, 49
SWC Chang, AR Dickinson, LH Snyder (2008)
Limb-specific representation for reaching in the posterior parietal cortexJ Neurosci, 28
JP Gallivan, DA McLean, KF Valyear, CE Pettypiece, JC Culham (2011)
Decoding action intentions from preparatory brain activity in human parieto-frontal networksJ Neurosci, 31
DP Carey, RJ Coleman, S della Sala (1997)
Magnetic misreachingCortex, 33
P Busan, C Barbera, M Semenic, F Monti, G Pizzolato, G Pelamatti, PP Battaglini (2009)
Effect of transcranial magnetic stimulation (TMS) on parietal and premotor cortex during planning of reaching movementsPLoS One, 4
DJ Gorbet, LE Sergio (2009)
The behavioural consequences of dissociating the spatial directions of eye and arm movementsBrain Res, 1284
H-O Karnath, M-T Perenin (2005)
Cortical control of visually guided reaching: evidence from patients with optic ataxiaCereb Cortex, 15
L Pisella, L Sergio, A Blangero, H Torchin, A Vighetto, Y Rossetti (2009)
Optic ataxia and the function of the dorsal stream: contributions to perception and actionNeuropsychologia, 47
S Pitzalis, C Galletti, R-S Huang, F Patria, G Committeri, G Galati, P Fattori, MI Sereno (2006)
Wide-field retinotopy defines human cortical visual area v6J Neurosci, 26
MJ Grol, J Majdandzić, KE Stephan, L Verhagen, HC Dijkerman, H Bekkering, FAJ Verstraten, I Toni (2007)
Parieto-frontal connectivity during visually guided graspingJ Neurosci, 27
S Ryan, L Bonilha, SR Jackson (2006)
Individual variation in the location of the parietal eye fields: a TMS studyExp Brain Res, 173
B Pesaran, MJ Nelson, RA Andersen (2010)
A relative position code for saccades in dorsal premotor cortexJ Neurosci, 30
P Donkelaar, JH Lee, AS Drew (2000)
Transcranial magnetic stimulation disrupts eye-hand interactions in the posterior parietal cortexJ Neurophysiol, 84
MF Land, M Hayhoe (2001)
In what ways do eye movements contribute to everyday activities?Vision Res, 41
SP Wise, D Boussaoud, PB Johnson, R Caminiti (1997)
Premotor and parietal cortex: corticocortical connectivity and combinatorial computationsAnnu Rev Neurosci, 20
JF Kalaska, SH Scott, P Cisek, LE Sergio (1997)
Cortical control of reaching movementsCurr Opin Neurobiol, 7
O Bock (1986)
Contribution of retinal versus extraretinal signals towards visual localization in goal-directed movementsExp Brain Res, 64
J Werf, O Jensen, P Fries, WP Medendorp (2010)
Neuronal synchronization in human posterior parietal cortex during reach planningJ Neurosci, 30
M Davare, M Andres, G Cosnard, J-L Thonnard, E Olivier (2006)
Dissociating the role of ventral and dorsal premotor cortex in precision graspingJ Neurosci, 26
I Stepniewska, PC Fang, JH Kaas (2005)
Microstimulation reveals specialized subregions for different complex movements in posterior parietal cortex of prosimian galagosProc Natl Acad Sci USA, 102
CA Buneo, RA Andersen (2006)
The posterior parietal cortex: sensorimotor interface for the planning and online control of visually guided movementsNeuropsychologia, 44
JC Rothwell (2011)
Using transcranial magnetic stimulation methods to probe connectivity between motor areas of the brainHuman Mov Sci, 30
SJ Sober, PN Sabes (2005)
Flexible strategies for sensory integration during motor planningNat Neurosci, 8
JD Schall, KG Thompson (1999)
Neural selection and control of visually guided eye movementsAnnu Rev Neurosci, 22
PA Chouinard, T Paus (2010)
What have we learned from perturbing the human cortical motor system with transcranial magnetic stimulation?Front Hum Neurosci, 4
A Bartels, NK Logothetis, K Moutoussis (2008)
fMRI and its interpretations: an illustration on directional selectivity in area V5/MTTrends Neurosci, 31
SR Jackson, R Newport, D Mort, M Husain (2005)
Where the eye looks, the hand followslimb-dependent magnetic misreaching in optic ataxiaCurr Biol, 15
NK Logothetis (2008)
What we can do and what we cannot do with fMRINature, 453
JC Culham, C Cavina-Pratesi, A Singhal (2006)
The role of parietal cortex in visuomotor control: what have we learned from neuroimaging?Neuropsychologia, 44
RA Andersen (1997)
1421Philos Trans R Soc Lond B, Biol Sci, 352
RM Müri, B Gaymard, S Rivaud, A Vermersch, CW Hess, C Pierrot-Deseilligny (2000)
Hemispheric asymmetry in cortical control of memory-guided saccades. A transcranial magnetic stimulation studyNeuropsychologia, 38
E Todorov, MI Jordan (2002)
Optimal feedback control as a theory of motor coordinationNat Neurosci, 5
NR Cohen, ES Cross, E Tunik, ST Grafton, JC Culham (2009)
Ventral and dorsal stream contributions to the online control of immediate and delayed grasping: a TMS approachNeuropsychologia, 47
A Tosoni, G Galati, GL Romani, M Corbetta (2008)
Sensory-motor mechanisms in human parietal cortex underlie arbitrary visual decisionsNat Neurosci, 11
J Tanne-Gariepy, EM Rouiller, D Boussaoud (2002)
Parietal inputs to dorsal versus ventral premotor areas in the macaque monkey: evidence for largely segregated visuomotor pathwaysExp Brain Res, 145
A Blangero, V Gaveau, J Luauté, G Rode, R Salemme, M Guinard, D Boisson, Y Rossetti, L Pisella (2008)
A hand and a field effect in on-line motor control in unilateral optic ataxiaCortex, 44
MI Sereno, S Pitzalis, A Martinez (2001)
Mapping of contralateral space in retinotopic coordinates by a parietal cortical area in humansScience, 294
DY Henriques, JD Crawford (2000)
Direction-dependent distortions of retinocentric space in the visuomotor transformation for pointingExp Brain Res, 132
JL Vercher, G Magenes, C Prablanc, GM Gauthier (1994)
Eye-head-hand coordination in pointing at visual targets: spatial and temporal analysisExp Brain Res, 99
M Corbetta, GL Shulman (2010)
Spatial neglect and attention networksAnnu Rev Neurosci, 34
A Battaglia-Mayer, S Ferraina, A Genovesio, B Marconi, S Squatrito, M Molinari, F Lacquaniti, R Caminiti (2001)
Eye-hand coordination during reaching. II. An analysis of the relationships between visuomanual signals in parietal cortex and parieto-frontal association projectionsCereb Cortex, 11
AD Milner, MA Goodale (1995)
The visual brain in action
M Vesia, X Yan, DY Henriques, LE Sergio, JD Crawford (2008)
Transcranial magnetic stimulation over human dorsal-lateral posterior parietal cortex disrupts integration of hand position signals into the reach planJ Neurophysiol, 100
E Tunik, NJ Rice, A Hamilton, ST Grafton (2007)
Beyond grasping: representation of action in human anterior intraparietal sulcusNeuroImage, 36
DYP Henriques, WP Medendorp, CCAM Gielen, JD Crawford (2003)
Geometric computations underlying eye-hand coordination: orientations of the two eyes and the headExp Brain Res, 152
P-M Bernier (2010)
776Neuron, 68
F Binkofski, C Dohle, S Posse, KM Stephan, H Hefter, RJ Seitz, HJ Freund (1998)
Human anterior intraparietal area subserves prehension: a combined lesion and functional MRI activation studyNeurology, 50
S Glover, RC Miall, MFS Rushworth (2005)
Parietal rTMS disrupts the initiation but not the execution of on-line adjustments to a perturbation of object sizeJ Cogn Neurosci, 17
SM Beurze, FP Lange, I Toni, WP Medendorp (2009)
Spatial and effector processing in the human parietofrontal network for reaches and saccadesJ Neurophysiol, 101
DJ Hagler, L Riecke, MI Sereno (2007)
Parietal and superior frontal visuospatial maps activated by pointing and saccadesNeuroImage, 35
MS Graziano, DF Cooke, CS Taylor (2000)
Coding the location of the arm by sightScience, 290
JP Gallivan, DA McLean, FW Smith, JC Culham (2011)
Decoding effector-dependent and effector-independent movement intentions from human parieto-frontal brain activityJ Neurosci, 31
MS Graziano, TN Aflalo (2007)
Mapping behavioral repertoire onto the cortexNeuron, 56
G Blohm, JD Crawford (2007)
Computations for geometrically accurate visually guided reaching in 3-D spaceJ Vis, 7
P Busan, F Monti, M Semenic, G Pizzolato, PP Battaglini (2009)
Parieto-occipital cortex and planning of reaching movements: a transcranial magnetic stimulation studyBehav Brain Res, 201
RA Andersen (1997)
Multimodal integration for the representation of space in the posterior parietal cortexPhilos Trans R Soc Lond B, Biol Sci, 352
P Fattori, M Gamberini, DF Kutz, C Galletti (2001)
‘Arm-reaching’ neurons in the parietal area V6A of the macaque monkeyEur J Neurosci, 13
C Grefkes, GR Fink (2005)
The functional organization of the intraparietal sulcus in humans and monkeysJ Anat, 207
LM McGuire, PN Sabes (2009)
Sensory transformations and the use of multiple reference frames for reach planningNat Neurosci, 12
P Fattori, S Pitzalis, C Galletti (2009)
The cortical visual area V6 in macaque and human brainsJ Physiol, 103
G Koch, JC Rothwell (2009)
TMS investigations into the task-dependent functional interplay between human posterior parietal and motor cortexBehav Brain Res, 202
JC Culham, KF Valyear (2006)
Human parietal cortex in actionCurr Opin Neurobiol, 16
SH Frey, D Vinton, R Norlund, ST Grafton (2005)
Cortical topography of human anterior intraparietal cortex active during visually guided graspingBrain Res Cogn Brain Res, 23
RA Andersen, CA Buneo (2002)
Intentional maps in posterior parietal cortexAnnu Rev Neurosci, 25
DM Wolpert, SJ Goodbody, M Husain (1998)
Maintaining internal representations: the role of the human superior parietal lobeNat Neurosci, 1
P Cisek, JF Kalaska (2010)
Neural mechanisms for interacting with a world full of action choicesAnnu Rev Neurosci, 33
R Muri, T Nyffeler (2008)
Neurophysiology and neuroanatomy of reflexive and volitional saccades as revealed by lesion studies with neurological patients and transcranial magnetic stimulation (TMS)Brain Cogn, 68
JD Connolly, MA Goodale, JS Cant, DP Munoz (2007)
Effector-specific fields for motor preparation in the human frontal cortexNeuroimage, 34
SM Beurze (2009)
3053J Neurophysiol, 101
ST Grafton, MA Arbib, L Fadiga, G Rizzolatti (1996)
Localization of grasp representations in humans by positron emission tomography. 2. Observation compared with imaginationExp Brain Res, 112
C Cavina-Pratesi, M Ietswaart, GW Humphreys, V Lestou, AD Milner (2010)
Impaired grasping in a patient with optic ataxia: primary visuomotor deficit or secondary consequence of misreaching?Neuropsychologia, 48
RA Andersen (2009)
568Neuron, 63
AP Batista (1999)
257Science, 285
U Castiello (2005)
The neuroscience of graspingNat Rev Neurosci, 6
T Heed, SM Beurze, I Toni, B Röder, WP Medendorp (2011)
Functional rather than effector-specific organization of human posterior parietal cortexJ Neurosci, 31
G Rizzolatti, G Luppino (2001)
The cortical motor systemNeuron, 31
SF Neggers, H Bekkering (2001)
Gaze anchoring to a pointing target is present during the entire pointing movement and is driven by a non-visual signalJ Neurophysiol, 86
M Critchley (1953)
The parietal lobes
EN Eskandar, JA Assad (1999)
Dissociation of visual, motor and predictive signals in parietal cortex during visual guidanceNat Neurosci, 2
A Blangero (2009)
1500Neuropsychologia, 47
RA Andersen (2002)
189Annu Rev Neurosci, 25
JD Connolly, RA Andersen, MA Goodale (2003)
FMRI evidence for a ‘parietal reach region’ in the human brainExp Brain Res, 153
WP Medendorp, SM Beurze, S Pelt, J Werf (2008)
Behavioral and cortical mechanisms for spatial coding and action planningCortex, 44
RA Andersen (1992)
840Curr Opin Neurobiol, 2
P Donkelaar, J Adams (2005)
Gaze-dependent deviation in pointing induced by transcranial magnetic stimulation over the human posterior parietal cortexJ Mot Behav, 37
E Chang, T Ro (2007)
Maintenance of visual stability in the human posterior parietal cortexJ Cogn Neurosci, 19
S Ferraina, A Battaglia-Mayer, A Genovesio, B Marconi, P Onorati, R Caminiti (2001)
Early coding of visuomanual coordination during reaching in parietal area PEcJ Neurophysiol, 85
E Shikata, F Hamzei, V Glauche, M Koch, C Weiller, F Binkofski, C Buchel (2003)
Functional properties and interaction of the anterior and posterior intraparietal areas in humansEur J Neurosci, 17
NJ Rice, E Tunik, ES Cross, ST Grafton (2007)
On-line grasp control is mediated by the contralateral hemisphereBrain Res, 1175
CL Colby, JR Duhamel (1991)
Heterogeneity of extrastriate visual areas and multiple parietal areas in the macaque monkeyNeuropsychologia, 29
JD Crawford, WP Medendorp, JJ Marotta (2004)
Spatial transformations for eye-hand coordinationJ Neurophysiol, 92
Z Kapoula, E Isotalo, RM Müri, MP Bucci, S Rivaud-Péchoux (2001)
Effects of transcranial magnetic stimulation of the posterior parietal cortex on saccades and vergenceNeuroReport, 12
M Mascaro, A Battaglia-Mayer, L Nasi, DJ Amit, R Caminiti (2003)
The eye and the hand: neural mechanisms and network models for oculomanual coordination in parietal cortexCereb Cortex, 13
SJ Sober, PN Sabes (2003)
Multisensory integration during motor planningJ Neurosci, 23
DYP Henriques, JD Crawford (2002)
Role of eye, head, and shoulder geometry in the planning of accurate arm movementsJ Neurophysiol, 87
C Pierrot-Deseilligny, D Milea, RM Müri (2004)
Eye movement control by the cerebral cortexCurr Opin Neurol, 17
A Pellijeff, L Bonilha, PS Morgan, K McKenzie, SR Jackson (2006)
Parietal updating of limb posture: an event-related fMRI studyNeuropsychologia, 44
MA Baumann, MC Fluet, H Scherberger (2009)
Context-specific grasp movement representation in the macaque anterior intraparietal areaJ Neurosci, 29
C Cavina-Pratesi, S Monaco, P Fattori, C Galletti, TD McAdam, DJ Quinlan, MA Goodale, JC Culham (2010)
Functional magnetic resonance imaging reveals the neural substrates of arm transport and grip formation in reach-to-grasp actions in humansJ Neurosci, 30
M Davare, A Zenon, G Pourtois, M Desmurget, E Olivier (2012)
Role of the medial part of the intraparietal sulcus in implementing movement directionCerebral Cortex, 22
DJ Gorbet, WR Staines, LE Sergio (2004)
Brain mechanisms for preparing increasingly complex sensory to motor transformationsNeuroImage, 23
A Battaglia-Mayer, S Ferraina, T Mitsuda, B Marconi, A Genovesio, P Onorati, F Lacquaniti, R Caminiti (2000)
Early coding of reaching in the parietooccipital cortexJ Neurophysiol, 83
AC Nobre, DR Gitelman, EC Dias, MM Mesulam (2000)
Covert visual spatial orienting and saccades: overlapping neural systemsNeuroImage, 11
L Sergio, DJ Gorbet, WJ Tippett, X Yan, B Neagu (2009)
Cortical mechanisms of vision
V Gaveau, D Pélisson, A Blangero, C Urquizar, C Prablanc, A Vighetto, L Pisella (2008)
Saccade control and eye-hand coordination in optic ataxiaNeuropsychologia, 46
SF Neggers, H Bekkering (2000)
Ocular gaze is anchored to the target of an ongoing pointing movementJ Neurophysiol, 83
I Levy, D Schluppeck, DJ Heeger, PW Glimcher (2007)
Specificity of human cortical areas for reaches and saccadesJ Neurosci, 27
WP Medendorp, VN Buchholz, J Werf, FTM Leoné (2011)
Parietofrontal circuits in goal-oriented behaviourEur J Neurosci, 33
PB Johnson, S Ferraina, L Bianchi, R Caminiti (1996)
Cortical networks for visual reaching: physiological and anatomical organization of frontal and parietal lobe arm regionsCereb Cortex, 6
E Todorov (2000)
Direct cortical control of muscle activation in voluntary arm movements: a modelNat Neurosci, 3
A Bartels (2008)
444Trends Neurosci, 31
JD Crawford, DYP Henriques, WP Medendorp (2011)
Three-dimensional transformations for goal-directed actionAnnu Rev Neurosci, 34
C Galletti, PP Battaglini (1989)
Gaze-dependent visual neurons in area V3A of monkey prestriate cortexJ Neurosci, 9
WP Medendorp, HC Goltz, JD Crawford, T Vilis (2005)
Integration of target and effector information in human posterior parietal cortex for the planning of actionJ Neurophysiol, 93
G Rizzolatti, M Matelli (2003)
Two different streams form the dorsal visual system: anatomy and functionsExp Brain Res, 153
S Ferraina, E Brunamonti, MA Giusti, S Costa, A Genovesio, R Caminiti (2009)
Reaching in depth: hand position dominates over binocular eye position in the rostral superior parietal lobuleJ Neurosci, 29
S Clavagnier, J Prado, H Kennedy, M-T Perenin (2007)
How humans reach: distinct cortical systems for central and peripheral visionNeuroscientist, 13
LH Snyder, AP Batista, RA Andersen (1997)
Coding of intention in the posterior parietal cortexNature, 386
A Battaglia-Mayer (2000)
2374J Neurophysiol, 83
E Borra, A Belmalih, R Calzavara, M Gerbella, A Murata, S Rozzi, G Luppino (2008)
Cortical connections of the macaque anterior intraparietal (AIP) areaCereb Cortex, 18
CL Colby, ME Goldberg (1999)
Space and attention in parietal cortexAnnu Rev Neurosci, 22
D Elliott, G Binsted, M Heath (1999)
The control of goal-directed limb movements: correcting errors in the trajectoryHuman Mov Sci, 18
LB Hinkley, LA Krubitzer, J Padberg, EA Disbrow (2009)
Visual-manual exploration and posterior parietal cortex in humansJ Neurophysiol, 102
BB Averbeck, A Battaglia-Mayer, C Guglielmo, R Caminiti (2009)
Statistical analysis of parieto-frontal cognitive-motor networksJ Neurophysiol, 102
M Husain, P Nachev (2007)
Space and the parietal cortexTrends Cogn Sci, 11
SL Prime, M Vesia, JD Crawford (2008)
Transcranial magnetic stimulation over posterior parietal cortex disrupts transsaccadic memory of multiple objectsJ Neurosci, 28
WA MacKay (1992)
Properties of reach-related neuronal activity in cortical area 7AJ Neurophysiol, 67
A Battaglia-Mayer (2001)
528Cereb Cortex, 11
A Blangero, H Ota, L Delporte, P Revol, P Vindras, G Rode, D Boisson, A Vighetto, Y Rossetti, L Pisella (2007)
Optic ataxia is not only ‘optic’: impaired spatial integration of proprioceptive informationNeuroImage, 36
M Vesia, SL Prime, X Yan, LE Sergio, JD Crawford (2010)
Specificity of human parietal saccade and reach regions during transcranial magnetic stimulationJ Neurosci, 30
AZ Khan, JD Crawford, G Blohm, C Urquizar, Y Rossetti, L Pisella (2007)
Influence of initial hand and target position on reach errors in optic ataxic and normal subjectsJ Vis, 7
AD Milner, MA Goodale (2008)
Two visual systems re-viewedNeuropsychologia, 46
P Fattori, R Breveglieri, N Marzocchi, D Filippini, A Bosco, C Galletti (2009)
Hand orientation during reach-to-grasp movements modulates neuronal activity in the medial posterior parietal area V6AJ Neurosci, 29
AD Milner (1996)
Parietal lobe contributions to orientation in 3D space
SM Beurze (2007)
188J Neurophysiol, 97
Y Terao, NE Andersson, JR Flanagan, RS Johansson (2002)
Engagement of gaze in capturing targets for future sequential manual actionsJ Neurophysiol, 88
F Filimon, R-S Huang, MI Sereno (2009)
Multiple parietal reach regions in humans: cortical representations for visual and proprioceptive feedback during on-line reachingJ Neurosci, 29
P-M Bernier, ST Grafton (2010)
Human posterior parietal cortex flexibly determines reference frames for reaching based on sensory contextNeuron, 68
NJ Rice, E Tunik, ST Grafton (2006)
The anterior intraparietal sulcus mediates grasp execution, independent of requirement to update: new insights from transcranial magnetic stimulationJ Neurosci, 26
JW Bisley (2010)
1Annu Rev Neurosci, 33
MT Perenin, A Vighetto (1988)
Optic ataxia: a specific disruption in visuomotor mechanisms. I. Different aspects of the deficit in reaching for objectsBrain J Neurol, 111
JD Fisk, MA Goodale (1985)
The organization of eye and limb movements during unrestricted reaching to targets in contralateral and ipsilateral visual spaceExp Brain Res, 60
U Castiello, C Begliomini (2008)
The cortical control of visually guided graspingNeuroscientist, 14
JF Kalaska (1996)
Parietal cortex area 5 and visuomotor behaviorCan J Physiol Pharmacol, 74
M Davare, M Andres, E Clerget, J-L Thonnard, E Olivier (2007)
Temporal dissociation between hand shaping and grip force scaling in the anterior intraparietal areaJ Neurosci, 27
RM Muri, MT Iba-Zizen, C Derosier, EA Cabanis, C Pierrot-Deseilligny (1996)
Location of the human posterior eye field with functional magnetic resonance imagingJ Neurol Neurosurg Psychiatry, 60
JC Culham, NG Kanwisher (2001)
Neuroimaging of cognitive functions in human parietal cortexCurr Opin Neurobiol, 11
Posterior parietal cortex (PPC) plays an important role in the planning and control of goal-directed action. Single-unit studies in monkeys have identified reach-specific areas in the PPC, but the degree of effector and computational specificity for reach in the corresponding human regions is still under debate. Here, we review converging evidence spanning functional neuroimaging, parietal patient and transcranial magnetic stimulation studies in humans that suggests a functional topography for reach within human PPC. We contrast reach to saccade and grasp regions to distinguish functional specificity and also to understand how these different goal-directed actions might be coordinated at the cortical level. First, we present the current evidence for reach specificity in distinct modules in PPC, namely superior parietal occipital cortex, midposterior intraparietal cortex and angular gyrus, compared to saccade and grasp. Second, we review the evidence for hemispheric lateralization (both for hand and visual hemifield) in these reach representations. Third, we review evidence for computational reach specificity in these regions and finally propose a functional framework for these human PPC reach modules that includes (1) a distinction between the encoding of reach goals in posterior–medial PPC as opposed to reach movement vectors in more anterior–lateral PPC regions, and (2) their integration within a broader cortical framework for reach, grasp and eye–hand coordination. These findings represent both a confirmation and extension of findings that were previously reported for the monkey.
Experimental Brain Research – Springer Journals
Published: Aug 1, 2012
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