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kw.\*:("Champ oculaire frontal")

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How the frontal eye field can impose a saccade goal on superior colliculus neuronsSCHLAG-REY, M; SCHLAG, J; DASSONVILLE, P et al.Journal of neurophysiology. 1992, Vol 67, Num 4, pp 1003-1005, issn 0022-3077Article

Transcranial magnetic brain stimulation : lack of oculomotor responseWESSEL, K; KÖMPF, D.Experimental brain research. 1991, Vol 86, Num 1, pp 216-218, issn 0014-4819Article

Transcranial stimulation of the human frontal eye field by magnetic pulsesMÜRI, R. M; HESS, C. W; MEIENBERG, O et al.Experimental brain research. 1991, Vol 86, Num 1, pp 219-223, issn 0014-4819Article

Saccade initiation and latency deficits after combined lesions of the frontal and posterior eye fields in monkeysLYNCH, J. C.Journal of neurophysiology. 1992, Vol 68, Num 5, pp 1913-1916, issn 0022-3077Article

Frontal eye field lesions impair predictive and visually-guided pursuit eye movementsKEATING, E. G.Experimental brain research. 1991, Vol 86, Num 2, pp 311-323, issn 0014-4819Article

Prearcuate cortex in the cebus monkey has cortical and subcortical connections like the macaque frontal eye field and projects to fastigial-recipient oculomotor-releated brainstem nucleiLEICHNETZ, G. R; GONZALO-RUIZ, A.Brain research bulletin. 1996, Vol 41, Num 1, pp 1-29, issn 0361-9230Article

Stimulation-evoked saccades from the dorsomedial frontal cortex of the rhesus monkey following lesions of the frontal eye fields and superior colliculusTEHOVNIK, E. J; KYOUGMIN LEE; SCHILLER, P. H et al.Experimental brain research. 1994, Vol 98, Num 2, pp 179-190, issn 0014-4819Article

Eye movement disorders after frontal eye field lesions in humansRIVAUD, S; MÜRI, R. M; GAYMARD, B et al.Experimental brain research. 1994, Vol 102, Num 1, pp 110-120, issn 0014-4819Article

Effect of eye position within the orbit on electrically elicited saccadic eye movements A comparison of the macaque monkey's frontal and supplementary eye fieldsRUSSO, G. S; BRUCE, C. J.Journal of neurophysiology. 1993, Vol 69, Num 3, pp 800-818, issn 0022-3077Article

Projections from the medial agranular cortex to brain stem visuomotor centers in ratsSTUESSE, S. L; NEWMAN, D. B.Experimental brain research. 1990, Vol 80, Num 3, pp 532-544, issn 0014-4819, 13 p.Article

Rapid-rate transcranial magnetic stimulation of human frontal cortex can evoke saccades under facilitating conditionsLI, J; OLSON, J; ANAND, S et al.Electroencephalography and clinical neurophysiology. Electromyography and motor control. 1997, Vol 105, Num 3, pp 246-254, issn 0924-980XArticle

Unilateral ablation of the frontal eye field of the rat affects the beating field of ocular nystagmusBÄHRING, R; MEIER, R. K; DIERINGER, N et al.Experimental brain research. 1994, Vol 98, Num 3, pp 391-400, issn 0014-4819Article

Role of the different frontal lobe areas in the control of the horizontal component of memory-guided saccades in manPIERROT-DESEILLIGNY, C; ISRAËL, I; BERTHOZ, A et al.Experimental brain research. 1993, Vol 95, Num 1, pp 166-171, issn 0014-4819Article

Neural basis of saccade target selection in frontal eye field during visual searchSCHALL, J. D; HANES, D. P.Nature (London). 1993, Vol 366, Num 6454, pp 467-469, issn 0028-0836Article

Reversible inactivation of macaque dorsomedial frontal cortex : Effects on saccades and fixationsSOMMER, M. A; TEHOVNIK, E. J.Experimental brain research. 1999, Vol 124, Num 4, pp 429-446, issn 0014-4819Article

Corticostriatal and corticotectal neurons in area 6 of the cat during fixation and eye movementsWEYAND, T. G; GAFKA, A. C.Visual neuroscience (Print). 1998, Vol 15, Num 1, pp 141-151, issn 0952-5238Article

The effects of combined superior temporal polysensory area and frontal eye field lesions on eye movements in the macaque monkeySCALAIDHE, S. P. O; RODMAN, H. R; ALBRIGHT, T. D et al.Behavioural brain research. 1997, Vol 84, Num 1-2, pp 31-46, issn 0166-4328Article

Visual feature selectivity in frontal eye fields induced by experience in mature macaquesBICHOT, N. P; SCHALL, J. D; THOMPSON, K. G et al.Nature (London). 1996, Vol 381, Num 6584, pp 697-699, issn 0028-0836Article

Relationship of presaccadic activity in frontal eye field and supplementary eye field to saccade initiation in macaque : Poisson spike train analysisHANES, D. P; THOMPSON, K. G; SCHALL, J. D et al.Experimental brain research. 1995, Vol 103, Num 1, pp 85-96, issn 0014-4819Article

Testing quasi-visual neurons in the monkey's frontal eye field with the triple-step paradigmJUNRU TIAN; SCHLAG, J; SCHLAG-REY, M et al.Experimental brain research. 2000, Vol 130, Num 4, pp 433-440, issn 0014-4819Article

Input to the primate frontal eye field from the substantia nigra, superior colliculus, and dentate nucleus demonstrated by transneuronal transportLYNCH, J. C; HOOVER, J. E; STRICK, P. L et al.Experimental brain research. 1994, Vol 100, Num 1, pp 181-186, issn 0014-4819Article

The frontal eye field is involved in spatial short-term memory but not in reflexive saccade inhibitionGAYMARD, B; PLONER, C. J; RIVAUD-PECHOU, S et al.Experimental brain research. 1999, Vol 129, Num 2, pp 288-301, issn 0014-4819Article

A positron emission tomography study of oculomotor imageryLANG, W; PETIT, L; HÖLLINGER, P et al.Neuroreport (Oxford). 1994, Vol 5, Num 8, pp 921-924, issn 0959-4965Article

Smooth eye movements elicited by microstimulation in the primate frontal eye fieldGOTTLIEB, J. P; BRUCE, C. J; MACAVOY, M. G et al.Journal of neurophysiology. 1993, Vol 69, Num 3, pp 786-799, issn 0022-3077Article

The frontal eye fields target multisensory neurons in cat superior colliculusMEREDITH, M. A.Experimental brain research. 1999, Vol 128, Num 4, pp 460-470, issn 0014-4819Article

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