Ординатура / Офтальмология / Английские материалы / The Neurology of Eye Movements_Leigh, Zee_2006
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149.Glimcher PW, Sparks DL. Movement selection in advance of action in the superior colliculus. Nature 1992;355:542-5.
150.Cochin PM, McElligottJG. Saccades to visual targets are uncompensated after cerebellar stimulation. Exp Neurol 1987;97:219-24.
151.Goday J, Liiders H, Dinner DS, Morris HH, Wylie E. Versive eye movements elicited by cortical stimulation of the human brain. Neurology 1990;40:296-9.
152.Goldberg ME, Bruce CJ. Primate frontal eye fields. III. Maintenance of a spatially accurate saccade signal. J Neurophysiol 1990;64: 489-508.
153.Goossens HHLM, Van Opstal AJ. Local feedback signals are not distorted by prior eye movements: evidence from visually evoked double saccades.J Neurophysiol 1997;78: 533-8.
154.GrohJM, Sparks DL. Saccades to somatosensory targets. 2. Motor convergence in primate superior colliculus. J Neurophysiol 1996;75: 428-38.
155.Groner R, Groner MT. Attention and eye movement control: an overview. Eur Arch Psychiatr Neurol Sci 1989;239:9-16.
156.Grossberg SG, Roberts K, Aguilar M, Bullock D. A neural model of multimodal adaptive saccadic eye movement control by superior colliculus. J Neurosci 1997; 15:9706-25.
157.Grossman GE, Robinson DA. Ambivalence in modelling oblique saccades. Biol Cybern 1988; 58:13-8.
158.Guitton D, Buchtel HA, Douglas RM. Frontal lobe lesions in man cause difficulties in suppressing reflexive glances and in generating goal-directed saccades. Exp Brain Res 1985; 58:455-72.
159.Guitton D, Simard R, Codere F. Upper eyelid
movements measured with a search coil during blinks and vertical saccades. Invest Ophthalmol Vis Sci 1991;32:3298-305.
160.Guthrie BL, Porter JD, Sparks DL. Corollary discharge provides accurate eye position information to the oculomotor system. Science 1983;221:1193-5.
161.Hain TC, Zee DS, Mordes M. Blink-induced saccadic oscillations. Ann Neurol 1986;19: 299-301.
162.Hallet PE. Primary and secondary saccades to goals defined by instructions. Vision Res 1997; 18:1279-96.
163.Handel A, Glimcher PW. Response properties of saccade-related burst neurons in the central mesencephalic reticular formation. J Neurophysiol 1997;78:2164-75.
164.Hanes DP, Patterson WF, Schall JD. Role of frontal eye fields in countermanding saccades: visual, movement, and fixation activity. J Neurophysiol 1998;79:817-34.
165.Hanson MR, Hamid MA, Tomsak RL, Chou SS, Leigh RJ. Selective saccadic palsy caused by pontine lesions: clinical, physiological, and pathological correlations. Ann Neurol 1986; 20:209-17.
166.Hartje W. Reading disturbances in the presence of oculomotor disorders. Eur Neurol 1972;7:249-64.
167.Hartwich-Young R, Nelson JS, Sparks DL. The perihypoglossal projections to the superior colliculus in the rhesus monkey. Vis Neurosci
1990;4:29-42.
168.Hasegawa R, Sawaguchi T, Kubota K. Monkey prefrontal neuronal activity coding the forthcoming saccade in an oculomotor delayed matching-to-sample task. J Neurophysiol 1998;79:322-33.
169.Heide W, Blankenburg M, Zimmerman E. Cortical control of double-step saccades: implications for spatial orientation. Ann Neurol 1995;38:739-48.
170.Helmchen C, Biittner U. Saccade-related Purkinje cell activity in the oculomotor vermis during spontaneous eye movements in the light and darkness. Exp Brain Res 1995; 103:198-208.
171.Helmchen C, Straube A, Biittner U. Saccaderelated activity in the fastigial oculomotor region of the macaque monkey during spontaneous eye movements in light and darkness. Exp Brain Res 1994;98:474-82.
172.Helmholtz H. Treatise on PhysiologicalOptics. New York: Dover Press; 1962.
173.Henn V, Hepp K, Vilis T. Rapid eye movement generation in the primate. Physiology, pathophysiology, and clinical implications. Rev Neurol (Paris) 1989;145:540-5.
174.Henn V, Lang W, Hepp K, Reisine H. Experimental gaze palsies in monkeys and their relation to human pathology. Brain 1984; 107: 619-36.
175.Hepp K, Henn V. Spatio-temporal recording of rapid eye movement signals in the monkey paramedian pontine reticular formation (PPRF). Exp Brain Res 1983;52:105-20.
176.Hepp K, Henn V, Vilis T, Cohen B. Brainstem regions related to saccade generation. In: Wurtz RH, Goldberg ME, editors. The Neurobiology of Saccadic Eye Movements. Amsterdam: Elsevier; 1989; p. 105-212.
177.Herishanu Y, Abarbanel JM, Frisher S. Blink induced ocular flutter. Neuro-ophthalmology
1987;7:175-7.
178.Hermann HT, Sonnabend NL, Zeevi YY. Interhemispheric coordination is compromised in subjects with developmental dyslexia. Cortex 1986;22:337-58.
179.Heywood S, Ratcliff G. Long-term oculomotor consequences of unilateral colliculectomy in man. In: Lennerstrand G, Bach-y-Rita P, editors. Basic Mechanisms of Ocular Motility and Their Clinical Implications. 1975; p. 561-4.
180.Hikosaka O, Sakamoto M, Miyashita N. Effects of caudate nucleus stimulation on substantia nigra cell activity in monkey. Exp Brain Res 1993;95:457-72.
181.Hikosaka O, Sakamoto M, Usui S. Functional properties of monkey caudate neurons. I. Activities related to saccadic eye movements. J Neurophysiol 1989;61:780-98.
182.Hikosaka O, Sakamoto M, Usui S. Functional properties of monkey caudate neurons. II. Visual and auditory responses. J Neurophysiol 1989;61:799-813.
183.Hikosaka O, Sakamoto M, Usui S. Functional properties of monkey caudate neurons. III. Activities related to expectation of target and reward. J Neurophysiol 1989;61:814-32.
184.Hikosaka O, Wurtz RH. Visual and oculomotor functions of monkey substantia nigra pars reticulata. I. Relation of visual and auditory responses to saccades. J Neurophysiol 1983; 49:1230-53.
185.Hikosaka O, Wurtz RH. Visual and oculomotor functions of monkey substantia nigra pars reticulata. II. Visual responses related to fixation of gaze. J Neurophysiol 1983;49:1254-67.
186.Hikosaka O, Wurtz RH. Visual and oculomotor functions of monkey substantia nigra pars reticulata. III. Memory-contingent visual and saccade responses. J Neurophysiol 1983;49: 1268-84.
187.Hikosaka O, Wurtz RH. Visual and oculomotor functions of monkey substantia nigra pars reticulata. IV. Relation of substantia nigra to superior colliculus. J Neurophysiol 1983;49: 1285-301.
188.Hikosaka O, Wurtz RH. Modification of saccadic eye movements by GABA-related substances. I. Effect of muscimol and bicuculline in monkey superior colliculus. J Neurophysiol 1985;53:266-91.
189.Hikosaka O, Wurtz RH. Modification of saccadic eye movements by GABA-related substances. II. Effects of muscimol in monkey substantia nigra pars reticulata. J Neurophysiol 1985;53:292-308.
190.Hikosaka O, Wurtz RH. Saccadic eye movements following injection of lidocaine into the superior colliculus. Exp Brain Res 1986;61: 531-9.
191.Hitzig E. Physiologische und klinische Untersuchungen iiber das Gehirn. Gesammelte Abbandlungen. Part I. Berlin: Hirschwald;
1874.
192.Holmes G. Clinical symptoms of cerebellar disease and their interpretation (Croonian lectures III.). Lancet 1922^:59-65.
193.Honda H. The time courses of visual mislocalization and of extraretinal eye position signals at the time of vertical saccades. Vision Res 1991;31:1915-21.
194.Hormigo A, Rosenblum MK, River ME, Posner JB. Immunological and pathological study of anti-Ri-associated encephalopathy. Ann Neurol 1994;36:896-902.
195.Horn AKE, Biittner-Ennever JA, Buttner U. Saccadic premotor neurons in the brainstem: functional neuroanatomy and clinical implications. Neuro-ophthalmology 1996; 16:229-40.
196.Horn AKE, Biittner-Ennever JA, Wahle P, Reichenberger I. Neurotransmitter profile of saccadic omnipause neurons in nucleus
raphe interpositus. J Neurosci 1994;14: 2032-46.
196a. Horn AKE, Biittner-Ennever JA. Premotor control of the upper eyelid: afferent projections to the M-group in macaque monkey. Soc Neurosci Abstr 1998;24:1889.
The Vestibular-Optokinetic System |
141 |
197.Hotson JR, Steinke GW.Vertical and horizontal saccades in aging and dementia. Failure to inhibit anticipatory saccades. Neuro-ophthal- mology 1988;8:267-73.
198.Huaman AG, Sharpe JA. Vertical saccades in senescence. Invest Ophthalmol Vis Sci 1993; 34:2588-95.
199.Hutton JT, Palet J. Lateral saccadic latencies and handedness. Neuropsychologia 1986;24: 449-51.
200.Inchingolo P, Optican LM, FitzGibbon EJ, Goldberg ME. Adaptive mechanisms in the monkey saccadic system. In: Schmid R, Zambarbieri D, editors. Oculomotor Control and Cognitive Processes. Amsterdam: Elsevier;
1991; p. 147-62.
201.Inhoff AW, Pollatsek A, Posner MI, Rayner K. Covert attention and eye movements during reading. Q J Exp Psychol 1989;41A: 63-89.
202.Israel I, Rivaud S, Gaymard B, Berthoz A, Pier- rot-Deseilligny C. Cortical control of vestibu- lar-guided saccades. Brain 1995;! 18: 1169-84.
203.Javal E. Essai sur la physiologic de la lecture. AnnOculometr 1879;82:242-53.
204.Jay MF, Sparks DL. Sensorimotor integration in the primate superior colliculus. I. Motor convergence. J Neurophysiol 1987;57:22-34.
205.Jay MF, Sparks DL. Sensorimotor integration in the primate superior colliculus. II. Coordinates of auditory signals. J Neurophysiol
1987;57:35-55.
206.Jiirgens R, Becker W, Kornhuber HH. Natural and drug-induced variations of velocity and duration of human saccadic eye movements: evidence for a control of the neural pulse generator by local feedback. Biol Cybern 1981;39: 87-96.
207.Kalesnykas RP, Hallett PE. The differentiation of visually guided and anticipatory saccades in gap and overlap paradigms. Exp Brain Res 1987;68:115-21.
208.Kaneko CRS. Effect of ibotenic acid lesions of the omnipause neurons on saccadic eye movements in rhesus macaques. J Neurophysiol 1996;75:2229-42.
209.Kapoula Z. Evidence for a range effect in the saccadic system. Vision Res 1985;25:1155-7.
210.Kapoula Z, Optican LM, Robinson DA. Visually induced plasticity of postsaccadic ocular drift in normal humans. J Neurophysiol 1989; 61:879-91.
211.Kapoula Z, Robinson DA. Saccadic undershoot is not inevitable: saccades can be accurate. Vision Res 1986;26:735-43.
212.Kapoula Z, Robinson DA, Hain TC. Motion of the eye immediately after a saccade. Exp Brain Res 1986;61:386-94.
213.Karn KS, Miller P, Hayhoe MM. Reference frames in saccadic targeting. Exp Brain Res
1997;! 15:267-82.
214.Kato M, Miyashita N, Hikosaka O, Matsumura M, Usui S, Kori A. Eye movements in monkeys with local dopamine depletion in the caudate nucleus. 1. Deficits in spontaneous saccades. J Neurosci 1995;15:912-27.
142 The Properties and Neural Substrate of EyeMovements
214a. Kawagoe R, Takikawa Y,Hikosaka O. Expectation of reward modulates cognitive signals in the basal ganglia. Nature Neuroscience 1998: 1:411-416.
215.Keller EL. Participation of medial pontine reticular formation in eye movement generation in monkey. J Neurophysiol 1974;37: 316-32.
216.Keller EL, Edelman JA. Use of interrupted saccade paradigm to study spatial and temporal dynamics of saccadic burst cells in superior colliculus in monkey. J Neurophysiol 1994;72: 2754-70.
217.Keller EL, Slakey DP, Crandall WE Microstimulation of the primate cerebellar vermis during saccadic eye movements. Brain Res 1983; 288:131-43.
218.Kennard C, Lueck CJ. Oculomotor abnormalities in diseases of the basal ganglia. Rev Neurol (Paris) 1989;145:587-95.
219.King WM, Fuchs AF. Reticular control of vertical saccadic eye movements by mesencephalic burst neurons. J Neurophysiol 1979; 42:861-76.
220.Kinsler V, Carpenter RHS. Saccadic eye movements while reading music. Vision Res 1997; 35:1447-58.
221.Kommerell G, Olivier D, Theopold H. Adaptive programing of phasic and tonic components in saccadic eye movements. Investigations in patients with abducens palsy. Invest Ophthalmol 1976; 15:657-60.
222.Kori A, Miyashita N, Kato M, Hikosaka O, Usui S, Matsumura M. Eye movements in monkeys with local dopamine depletion in the caudate nucleus. 2. Deficits in voluntary saccades. J Neurosci 1995;15:928-41.
223.Kowler E, Blaser E. The accuracy and precision of saccades to small and large targets. Vision Res 1995;35:1741-54.
223a. Krappmann P.Accuracy of visually and mem- ory-guided antisaccades in man. Vision Res 1998;38:2979-85.
224.Krauzlis RJ, Miles FA. Decreases in the latency of smooth pursuit and saccadic eye movements produced by the "gap paradigm" in the monkey. Vision Res 1996;36:1973-85.
225.Krauzlis RJ, Miles FA. Initiation of saccade during fixation or pursuit: evidence in humans for a single mechanism. J Neurophysiol 1996;76:4l75-9.
226.Kustov AA, Robinson DL. Modified saccades evoked by stimulation of the macaque superior colliculus account for properties of the resettable integrator. J Neurophysiol 1995;73: 1724-8.
227.LaBerge D, Buchsbaum MS. Positron emission tomographic measurements of pulvinar activ-
ity during an attention task. J Neurosci 1990;
10:613-9.
228.Landolt E. Nouvelles recherches sur la physiologic des mouvements des yeux. Arch Ophtalmol (Paris) 1891; 11:385-95.
229.Langer TP, Kaneko CRS. Brainstem afferents to the oculomotor omnipause neurons in monkey. J Comp Neurol 1990;295:413-27.
230.Lasker AG, Zee DS, Hain TC, Folstein SE, Singer HS. Saccades in Huntington's disease: initiation defects and distractibility.Neurology 1987;37:364-70.
231.Lebedev S, Van Gelder P, Tsui WH. Squareroot relation between main saccade parameters. Invest Ophthalmol Vis Sci 1996;37: 2750-8.
232.Lee C, Rohrer WH, Sparks DL. Population coding of saccadic eye movements by neurons in the superior colliculus. Nature 1988;332:
357-60.
232a. Lefevre P, Quaia C, Optican LM. Distributed model of control of saccades by superior colliculus and cerebellum. Neural Networks 1998;11:1175-90.
233.Leigh RJ. The cortical control of ocular pursuit movements. Rev Neurol (Paris) 1989; 145: 605-12.
234.Leigh RJ, Newman SA, Folstein SE, Lasker AG, Jensen BA. Abnormal ocular motor control in Huntington's chorea. Neurology 1983; 33:1268-75.
235.Lemij HG, Collewijn H. Differences in accuracy of human saccades between stationary and jumping targets. Vision Res 1989;29: 1737-48.
236.Lewis RF, Zee DS, Gaymard B, Guthrie B. Extraocular muscle proprioception functions in the control of ocular alignment and eye movement conjugacy. J Neurophysiol 1994;72: 1028-31.
237.Lueck CJ, Crawford TJ, Hansen HC, Kennard C. Increase in saccadic peak velocity with in-
creased frequency of saccades in man. Vision Res 1991;31:1439-43.
238.Lueck CJ, Crawford TJ, Savage CJ, Kennard C. Auditory and visual stimulus interaction in
the generation of human saccadic eye movements. Soc Neurosci Abstr 1989; 15:806.
239.Luria AR, Karpov BA, Yarbus AL. Disturbances of active visual perception with lesions of the frontal lobes. Cortex 1966;2: 202-12.
240.Luria AR, Pravdine-Vinarskaya EN, Yarbus AL. Disorders of ocular movement in a case of simultanagnosia. Brain 1963;86:219-28.
241.Lynch JC. Saccade initiation and latency deficits after combined lesions of the frontal and posterior eye fields in monkeys.J Neurophysiol 1992;68:1913-6.
242.Lynch JC, McLaren JW. Deficits of visual attention and saccadic eye movements after lesions of parietooccipital cortex in monkeys. J Neurophysiol 1989;61:74-90.
243.Ma TP, Graybiel AM, Wurtz RH. Location of sac- cade-related neurons in the macaque superior colliculus. Exp Brain Res 1991;85: 21-35.
244.Matin L. Visual localization and eye movements. In: Boff KR, Kaufman L, Thomas JP, editors. Handbook of Human Perception and Performance. New York: Wiley; 1986; p. 20. 2-20.45.
245.Matsumura M, Kojima J, Gardiner TW, Hikosaka O. Visual and oculomotor functions of monkey subthalamic nucleus. J Neurophysiol 1992;67:1615-32.
246.May PJ, Hartwich-Young R, Nelson J, Sparks DL, Porter JD. Cerebellotectal pathways in the macaque: implications for collicular generation of saccades. Neuroscience 1990;36: 305-24.
247.Mayfrank L, Mobashery M, Kimmig H, Fis-
cher B. The role of fixation and visual attention in the occurrence of express saccades in man. Eur Arch Psychiatr Neurol Sci 1986;235: 269-75.
247a. Mays L. Has Hering been hooked? Nature Medicine 1998;4:889-90.
248.Mays LE, Sparks DL. Dissociation of visual and saccade-related responses in superior colliculus neurons. J Neurophysiol 1980;43: 207-32.
249.Mazzoni P, Bracewell RM, Barash S, Andersen RA. Motor intention activity in the macaque's lateral intraparietal area. I. Dissociation of motor plan from sensory memory.J Neurophysiol 1997;76:1439-56.
250.Meienberg O. Clinical examination of saccadic eye movements in hemianopia. Neurology 1983;33:1311-5.
251.Meienberg O, Harrer M, Wethren C. Oculographic diagnosis of hemineglect in patients with homonymous hemianopia. J Neurol 1986;233:97-101.
252.Meienberg O, Zangemeister WH, Rosenberg M, Hoyt WF, Stark L. Saccadic eye movement strategies in patients with homonymous hemianopia. Ann Neurol 1981;9:537-44.
253.Melis BJ, van Gisbergen JAM. Analysis of saccadic short-term plasticity in three dimensions. Vision Res 1995;35:3423-37.
254.Melis BJ, van Gisbergen JAM. Short-term adaptation of electrically induced saccades in monkey superior colliculus. J Neurophysiol 1996;76:1744-58.
255.Melvill Jones G. Predominance of anti-com- pensatory oculomotor response during rapid head rotation. Aerospace Med 1964;35:965-8.
256.MillerJM. Egocentric localization of a perisaccadic flash by manual pointing. Vision Res 1996;36:837-51.
257.Miller JM, Robins D. Extraocular muscle forces in alert monkey. Vision Res 1992;32: 1099-113.
258.Miyashita N, Hikosaka O. Minimal synaptic latency delay in the saccadic output pathway of the superior colliculus studied in awake monkey. Exp Brain Res 1996; 112:187-96.
258a. Moore T, Tolias AS, Schiller PH. Visual representations during saccadic eye movements. Proc Natl Acad Sci 1998;95:8981-4.
259.Morrone MC, RossJ, Burr DC.Apparent position of visual targets during real and simulated saccadic eye movements. J Neurosci 1997;17: 7941-53.
260.Morrow MJ. Craniotopic defects of smooth pursuit and saccadic eye movement. Neurology 1996;46:514-21.
261.MoschovakisAK, Highstein SM. The anatomy and physiology of primate neurons that control rapid eye movements. Annu Rev Neurosci 1994;17:465-88.
The Vestibular-Optokinetic System |
143 |
262.Moschovakis AK, Karabelas AB, Highstein SM. Structure-function relationships in the primate superior colliculus. I. Morphological classification of efferent neurons. J Neurophysiol 1988; 60:232-62.
263.Moschovakis AK, Karabelas AB, Highstein SM. Structure-function relationships in the primate superior colliculus. II. Morphological identity of presaccadic neurons. J Neurophysiol 1988; 60:263-302.
264.MoschovakisAK, Scudder CA, Highstein SM. Structure of the primate oculomotor burst generator. I. Medium-lead burst neurons with upward on-directions. J Neurophysiol 1991; 65:203-17.
265.Moschovakis AK, Scudder CA, Highstein SM, Warren JD. Structure of the primate oculomotor burst generator. II. Medium-lead burst neurons with downward on-directions. J Neu-
rophysiol 1991;65:218-29.
265a. Motter BC, Belky EJ. The guidance of eye movements during active visual search. Vision Res 1998;38:1805-15.
265b. Munoz DP, Broughton JR, Goldring JE, Armstrong IT. Age-related performance of human subjects on saccadic eye movement tasks. Exp Brain Res 1998;12:391-400.
266.Munoz DP, Corneil BD. Evidence for interactions between target selection and visual fixation for saccade generation in humans. Exp
Brain Res 1995;103:168-73.
266a. Munoz DP, Istvan PJ. Lateral inhibitory interactions in the intermediate layers of the monkey superior colliculus. J Neurophysiol 1998; 79:1193-1209.
267.Munoz DP, Waitzman DM, Wurtz RH. Activity of neurons in monkey superior colliculus during interrupted saccades. J Neurophysiol 1996;75:2562-80.
268.Munoz DP, Wurtz RH. Fixation cells in monkey superior colliculus. I. Characteristics of cell discharge. J Neurophysiol 1993;70: 559-75.
269.Munoz DP, Wurtz RH. Fixation cells in monkey superior colliculus. II. Reversible activation and deactivation. J Neurophysiol 1993; 70:576-89.
270.Munoz DP, Wurtz RH. Saccade-related activity in monkey superior colliculus. I. Characteristics of burst and buildup cells. J Neurophysiol 1995;73:2313-33.
271.Munoz DP,Wurtz RH. Saccade-related activity in monkey superior colliculus. II. Spread of activity during saccades. J Neurophysiol 1995; 73:2334-48.
272.Miiri RM, Iba-Zizen MT, Derosier C, Cabanis EA, Pierrot-Deseilligny C. Location of the human posterior eye field with functional magnetic resonance imaging. J Neurol Neurosurg Psychiatry 1996;60:445-8.
273.Miiri RM, Vermersch AI, Rivaud S, Gaymard B, Pierrot-Deseilligny C. Effects of single pulse transcranial magnetic stimulation over the prefrontal and posterior parietal cortices during memory-guided saccades in humans. J Neurophysiol 1997;76:2102-6.
144 The Properties and Neural Substrate of EyeMovements
274.Mushiake H, Fujii N, Tanji J. Visually guided saccade versus eye-hand reach: contrasting neuronal activityin the cortical supplementary and frontal eye fields. J Neurophysiol 1996; 75:2187-91.
275.Nagel-Leiby S, Buchtel HA, Welch KMA. Cerebral control of directed visual attention and orienting saccades. Brain 1990;113: 237-76.
276.Nakao S, Shiraishi Y, Oda H, Inagaki M. Direct inhibitory projection of pontine omnipause neurons to burst neurons in the Forel's field H controlling vertical eye movement-re- lated motoneurons in the cat. Exp Brain Res 1988;70:632-6.
277.Newsome WT, Wurtz RH, Dursteler MR, Mikami A. Punctate chemical lesions of striate cortex in the macaque monkey: effect on visually guided saccades. Exp Brain Res 1985;58: 392-9.
278.Nichols MJ, Sparks DL. Nonstationary properties of the saccadic system: new Constraints on models of saccadic control. J Neurophysiol 1995;73:582-600.
279.Nichols MJ, Sparks DL. Component stretching during oblique stimulation-evoked saccades: the role of the superior colliculus. J Neurophysiol 1996;76:582-600.
280.Noda H, Fujikado T. Topography of the oculo-
motor area of the cerebellar vermis in macaques as determined by microstimulation.
JNeurophysiol 1987;58:359-78.
281.Noda H, Murakami S, Yamada J, Tamaki Y, Aso T. Saccadic eye movements evoked by microstimulation of the fastigial nucleus of macaque monkeys. J Neurophysiol 1988;60:
1036-52.
282.Noda H, Sugita S, Ikeda Y.Afferent and efferent connections of the oculomotor region of the fastigial nucleus in the macaque monkey. J Comp Neurol 1990;302:330-48.
283.Noton D, Stark L. Scanpaths in saccadic eye movements while viewing and recognizing patterns. Vision Res 1971;! 1:929-42.
284.O'Driscoll GA, Alpert NM, Matthysse SW, Levy DL, Rauch SL, Holzman PS. Functional neuroanatomy of antisaccade eye movements investigated with positron emission tomography. Proc Nad Acad Sci USA 1995;92: 925-9.
285.Ogren MP, Mateer CA, Wyler AR. Alterations in visually related eye movements following left pulvinar damage in man. Neuropsycholo- gia!984;22:187-96.
286.Ohgaki T, Markham CH, Schneider JS,
Curthoys IS. Anatomical evidence of the projection of pontine omnipause neurons to midbrain regions controlling vertical eye movements. J Comp Neurol 1989;289:610-25.
287.Ohtsuka K. Properties of memory-guided saccades towards targets flashed during smooth pursuit in human subjects. Invest Ophthalmol Vis Sci 1994;35:509-14.
288.Ohtsuka K, Noda H. Saccadic burst neurons in the oculomotor region of the fastigial neurons in macaque monkeys.J Neurophysiol 1992;65: 1422-34.
289.Ohtsuka K, Noda H. Discharge properties of Purkinje cells in the oculomotor vermis during visually guided saccades in the macaque monkey. J Neurophysiol 1995;74:1828-40.
290.Ohtsuka K, Sawa M, Takeda M. Accuracy of memory-guided saccades. Ophthalmologica 1989; 198:53-6.
291.Olincy A, Ross RG, Young DA, Freedman R.
Age diminishes performance on an antisaccade eye movement task. Neurobiol Aging 1997;18:483-9.
292. Olshausen BA, Anderson CH, Van Essen DC. A neurobiological model of visual attention and invariant pattern recognition based on dynamic routing of information. J Neurosci 1993;13:4700-19.
293.Oohira A, Goto K, Ozawa T. Hypermetric saccades and adaptive response. Neuro-ophthal- mology 1986;3:353-6.
294.Optican LM, Miles FA. Visually induced adaptive changes in primate saccadic oculomotor control signals. J Neurophysiol 1985; 54:940-58.
295.Optican LM, Quaia C. Effects of orbital pulleys on the control of eye rotations. In: Harris LR, Jenkins M, editors. Vision and Action. New York: Cambridge University Press; 1998; p.120-138.
296.Optican LM, Robinson DA. Cerebellar-depen- dent adaptive control of primate saccadic system. J Neurophysiol 1980;44:1058-76.
297.Optican LM, Zee DS, Chu FC. Adaptive response to ocular muscle weakness in human pursuit and saccadic eye movements.J Neurophysiol 1985;54:110-22.
298.Optican LM, Zee DS, Miles FA.Floccular lesions abolish adaptive control of post-saccadic drift in primates. Exp Brain Res 1986;64: 596-8.
299.O'Sullivan EP, Jenkins IH, Henderson L, Kennard C, Brooks DJ. The functional anatomy of remembered saccades: a PET study. Neuroreport 1995;6:2141-4.
300.Ottes FP, van Gisbergen JAM, Eggermont JJ. Metrics of saccade responses to visual double stimuli: two different modes. Vision Res 1984; 24:1169-79.
301.Oyachi H, Ohtsuka K. Transcranial magnetic stimulation of the posterior parietal cortex degrades accuracy of memory-guided saccades in humans. Invest Ophthalmol Vis Sci 1995;36: 1441-9.
302.Pare M, Munoz DP. Saccadic reaction time in the monkey: advanced preparation of oculomotor programs is primarily responsible for express saccade occurrence. J Neurophysiol 1996;76:3666-81.
303.Pare M, Wurtz RH. Monkey posterior parietal cortex neurons antidromically activated from superior colliculus. J Neurophysiol 1997;78: 3493-7.
304.Patterson WF, Schall JD. Supplementary eye fields studied with the countermanding paradigm. Soc Neurosci Abstr 1997;23:474.
305.Paus T. Location and function of the human frontal eye-field: a selective review. Neuropsychologia 1996;34:475-83.
306.Paus T, Marrett S, Worsley KJ, Evans AC. Extraretinal modulation of cerebral blood flow in the human visual cortex: implications for saccadic suppression. J Neurophysiol 1995;74: 2179-83.
307.Pelisson D, Prablanc C. Kinematics of centrifugal and centripetal saccadic eye movements in man. Vision Res 1988;28:87-94.
308.Pelz JB, Hayhoe MM. The role of exocentric reference frames in the perception of visual direction. Vision Res 1995;35:2267-75.
309.Penfield W,Jasper H. Epilepsy and the Functional Anatomy of the Human Brain. Boston: Little, Brown; 1954.
310.Petit L, Orssaud C, Tzourio N, Crivello F, Berthoz A, Mazoyer B. Functional anatomy of a prelearned sequence of horizontal saccades in humans. J Neurosci 1996;16:37l4-26.
311.Petit L, Orssaud C, Tzourio N, Salamon G, Mazoyer B, Berthoz A. PET study of voluntary saccadic eye movements in humans: basal ganglia-thalamocortical system and cingulate cortex involvement. J Neurophysiol 1993;69: 1009-17.
312.Pierrot-Deseilligny C, Gray F, Brunei P. Infarcts of both inferior parietal lobules with impairment of visually guided eye movements, peripheral visual attention and optic ataxia.
Brain 1986;109:81-97.
313. Pierrot-Deseilligny C, Rivaud S, Gaymard B, Agid Y. Cortical control of memory-guided saccades in man. Exp Brain Res 1991;83: 607-17.
314.Pierrot-Deseilligny C, Rivaud S, Gaymard B, Agid Y. Cortical control of reflexive visually guided saccades in man. Brain 1991; 114: 1473-85.
315.Pierrot-Deseilligny C, Rivaud S, Gaymard B, Miiri RM, Vermersch AI. Cortical control of saccades. Ann Neurol 1995;37:557-67.
316.Pierrot-Deseilligny C, Rivaud S, Pillon B,
Fournier E, Agid Y. Lateral visually guided saccades in progressive supranuclear palsy. Brain 1989;! 12:471-87.
317.Pierrot-Deseilligny C, Rosa A, Masmoudi K, Rivaud S, Gaymard B. Saccade deficits after a unilateral lesion affecting the superior colliculus. J Neurol Neurosurg Psychiatry 1991;54: 1106-9.
318.Pitt MC, Rawles JM. The effect of age on saccadic latency and velocity. Neuro-ophthalmol- ogy 1988;8:123-9.
319.Platt ML, Glimcher PW. Responses of intraparietal neurons to saccadic targets and visual distractors. J Neurophysiol 1997;78: 1574-89.
320.Prablanc C, Masse D, Echallier JF. Errorcorrecting mechanisms in large saccades. Vision Res 1978;18:557-60.
321.Pratt J. Visual fixation offsets affect both the initiation and the kinematic features of saccades. Exp Brain Res 1998; 118:135-8.
322.Quaia C, Lefevre P,Optican LM. A new model of the saccadic system: III. Feedback control of duration by a spatial integrator in the cerebellum. Soc Neurosci Abstr 1996;22:1457.
The Vestibular-Optokinetic System |
145 |
323.Quaia C, Optican LM. Model with distributed vectorial premotor bursters accounts for the component stretching of oblique saccades. J Neurophysiol 1997;78:1120-34.
324.Quaia C, Optican LM. Commutative saccadic generator is sufficient to control a 3-D ocular plant with pulleys. J Neurophysiol 1998;79: 3197-215.
325.Rafal RD, Posner MI, Friedman JH, Inhoff AW, Bernstein E. Orienting of visual attention in progressive supranuclear palsy. Brain 1988; 111:267-80.
326.Raphan T. Modeling control of eye orientation in three dimensions. I. Role of muscle pulleys in determining saccadic trajectory. J Neurophysiol 1998;79:2653-67.
327.Rayner K, Pollatsek A. Reading unspaced text is not easy: comments on the implications of Epelboim et al.'s (1994) study for models of eye movement control in reading. Vision Res 1996;36:461-70.
328.Reulen JPH. Latency of visually evoked saccadic eye movements. I. Saccadic latency and the facilitation model. Biol Cybern 1984;50: 251-62.
329.Reulen JPH. Latency of visually evoked saccadic eye movements. II. Temporal properties of the facilitation mechanism. Biol Cybern 1984;50:263-71.
330.Ridley A, Kennard C, Scholtz CL, Biittner-En-
never JA, Summers B, Turnbull A. Omnipause neurons in two cases of opsoclonus associated with oat cell carcinoma of the lung. Brain 1987;! 10:1699-709.
331. Rizzo M, Hurtig R. Looking but not seeing: attention, perception, and eye movements in simultanagnosia. Neurology 1987;37: 1642-8.
332.Rizzo M, Hurtig R, Damasio AR. The role of scanpaths in facial recognition and learning. Ann Neurol 1987;22:41-5.
333.Robinson DA. Eye movements evoked by col-
licular stimulation in the alert monkey. Vision Res 1972;12:1795-808.
334.Robinson DA. Oculomotor control signals. In: Lennerstrand F, Bach-y-Rita P, editors. Basic Mechanisms of Ocular Motility and Their Clinical Implications. Oxford: Pergamon Press; 1975; p. 337-74.
335.Robinson DA, Kapoula Z, Goldstein HP. Holding the eye still after a saccade. In: Deecke L, Eccles JC, Mountcastle VB, editors. From Neuron to Action—An Appraisal of Fundamental and Clinical Research. New York: Springer-Verlag; 1990; p. 89-96.
336.Robinson DL. Functional contributions of the primate pulvinar. Prog Brain Res 1993;95: 371-80.
337.Robinson DL, Bowman EM, Kertzman C. Covert orienting of attention in macaque. II. Contributions of parietal cortex. J Neurophysiol 1995;74:698-712.
338.Robinson DL, McClurkinJW. The visual superior colliculus and pulvinar. In: Wurtz RH, Goldberg ME, editors. The Neurobiology of Saccadic Eye Movements. Amsterdam: Elsevier; 1989; p. 337-60.
146 The Properties and Neural Substrate of EyeMovements
339.Robinson DL, McClurkinJW, Kertzman C, Petersen SE. Visual responses of pulvinar and collicular neurons during eye movements of awake, trained macaques. J Neurophysiol 1991;66:485-96.
340.Robinson DL, Petersen SE. The pulvinar and
visual salience. Trends Neurosci 1992; 15: 127-32.
341.Robinson FR, Straube A, Fuchs AF. Role of the caudal fastigial nucleus in saccade generation. II. Effects of muscimol inactivation. J Neurophysiol 1993;70:1741-58.
342.Ron S, Robinson DA. Eye movements evoked by cerebellar stimulation in the alert monkey. J Neurophysiol 1973;36:1004-22.
343.Ron S, Vieville T, Droulez J. Target velocity based prediction in saccadic vector programing. Vision Res 1989;29:1103-14.
344.RossJ, Burr DC, Morrone MC. Suppression of the magnocellular pathway during saccades. Behav Brain Res 1996;80:l-8.
345.Ross J, Morrone MC, Burr DC. Compression of visual space before saccades. Nature 1997; 386:598-601.
346.Ross SM, Ross LE. Children's and adult's predictive saccades to square-wave targets. Vision Res 1987;27:2177-80.
347.Rottach KG, Das VE, Wohlgemuth W, Zivotofsky AZ, Leigh RJ. Properties of horizontal saccades accompanied by blinks. J Neurophysiol
1998;79:2895-2902.
348.Rottach KG, von Maydell RD, Das VE, Zivotofsky AZ, DiScenna AO, Gordon JL, Landis DMD, Leigh RJ. Evidence for independent feedback control of horizontal and vertical saccades from Niemann-Pick type C disease. Vision Res 1997;37:3627-38.
349.Russo GS, Bruce CJ. Neurons in the supplementary eye fields of rhesus monkeys code visual targets and saccadic eye movements in an oculocentric coordinate system. J Neurophysiol 1996;76:825-48.
350.Sato H, Noda H. Saccadic dysmetria induced by transient functional decortication of the cerebellar vermis. Exp Brain Res 1992;88: 455-8.
351.Sawaguchi T, Goldman-Rakic PS. The role of Dl-dopamine receptor in working memory: local injections of dopamine antagonists into the prefrontal cortex of rhesus monkeys performing an oculomotor-delayed response task.
J Neurophysiol 1994;71:515-28.
352.Schall JD, Hanes DP,Thompson KG, King DJ. Saccade target selection in frontal eye field of macaque. 1. Visual and premovement activation. J Neurosci 1995;15:6905-18.
353.Schiller PH, Chou I. How frontal eye field and dorsomedial frontal cortex lesions affect visually guided eye movements. Soc Neurosci Abstr 1997;23:844.
353a. Schiller PH, Chou I-H. The effects of frontal eye field and dorsomedial frontal cortex lesions on visually guided eye movements. Nature Neuroscience 1998; 1:248-53.
354.Schiller PH, Sandell JH. Interactions between visually and electrically elicited saccades be-
fore and after superior colliculus and frontal eye field ablations in the rhesus monkey. Exp Brain Res 1983;49:381-92.
355.Schiller PH, Sandell JH, MaunsellJHR. The effect of frontal eye field and superior colliculus lesions on saccadic latencies in the rhesus monkey. J Neurophysiol 1987;57:1033-49.
356.Schiller PH, Stryker M. Single-unit recording and stimulation in superior colliculus of the alert rhesus monkey. J Neurophysiol 1972;35: 915-24.
357.Schiller PH, True SD, Conway JL. Deficits in eye movements following frontal eye-field and superior colliculus ablations. J Neurophysiol 1980;44:1175-89.
358.Schlag J, Dassonville P, Schlag-Rey M. Interaction of the two frontal eye fields before saccade onset. J Neurophysiol 1998;79:64-72.
359.Schlag J, Pouget A, Sadeghpour S, Schlag-Rey
M. Interactions between natural and electrically evoked saccades. III. Is the nonstationarity the result of an integrator not instantaneously reset? J Neurophysiol 1998;79: 903-10.
360.Schlag J, Schlag-Rey M. Visuomotor functions of central thalamus in monkey. II. Unit activity related to visual events, targeting, and fixation. J Neurophysiol 1984;51:ll75-95.
361.Schlag J, Schlag-Rey M. Does microstimulation evoke fixed-vector saccades by generating their vector or by specifying their goal? Exp Brain Res 1987;68:442-4.
362.Schlag J, Schlag-Rey M. Evidence for a supplementary eye field. J Neurophysiol 1987;57: 179-200.
363.Schlag J, Schlag-Rey M, Dassonville P. Saccades can be aimed at the spatial location of targets flashed during pursuit. J Neurophysiol 1990;64:575-81.
364.Schlag-Rey M, Amador N, Sanchez H, Schlag J. Antisaccade performance predicted by neu-
ronal activity in the supplementary eye field. Nature 1998;390:398-401.
365.Schlag-Rey M, Schlag J. Visuomotor functions of central thalamus in monkey. I. Unit activity related to spontaneous eye movements. J Neurophysiol 1984;51:1149-74.
366.Schlag-Rey M, Schlag J. The central thalamus. In: Wurtz RH, Goldberg ME, editors. The Neurobiology of Saccadic Eye Movements. Amsterdam: Elsevier; 1989; p. 361-90.
367.Schmid R, Ron S. A model of eye tracking of periodic square wave target motion. Biol Cybern 1986;54:179-87.
368.Schmidt D, Abel LA, Dell'Osso LF, Daroff RB. Saccadic velocity characteristics: intrinsic variability and fatigue. Aviat Space Environ Med 1979;50:393-5.
369.Schmidtke K, Biittner-Ennever JA. Nervous control of eyelid function. A review of clinical, experimental and pathological data. Brain 1992;!15:227-47.
370.Schnabolk C, Raphan T. Modeling three-di- mensional velocity-to-position transformation in oculomotor control. J Neurophysiol 1994; 71:623-37.
371.Scudder CA. A new local feedback model of the saccadic burst generator. J Neurophysiol 1988;59:1455-75.
372.Scudder CA. Reduction of excitatory burst neurons (EBN) discharges reduces saccade size: implications for models of saccade generation. Soc Neurosci Abstr 1997;23:2368.
373.Scudder CA, Batourina EY,Tunder GS. Comparison of two methods of producing adaptation of saccade size and implications for the site of plasticity. J Neurophysiol 1998;79: 704-15.
374.Scudder CA, Fuchs AF, Langer TP. Characteristics and functional identification of saccadic inhibitory burst neurons in the alert monkey. J Neurophysiol 1988;59:1430-54.
375.Scudder CA, Moschovakis AK, Karabelas AB, Highstein SM. Anatomy and physiology of saccadic long-lead burst neurons recorded in the alert squirrel monkey. 1. Descending projections from the mesencephalon. J Neurophysiol 1996;76:332-52.
376.Scudder CA, Moschovakis AK, Karabelas AB, Highstein SM. Anatomy and physiology of saccadic long-lead burst neurons recorded in the alert squirrel monkey. 2. Pontine neurons. J Neurophysiol 1996;76:353-70.
377.Segraves MA, Park K. The relationship of monkey frontal eye field activity to saccade dynamics. J Neurophysiol 1993;69:1880-9.
378.Selemon LD, Goldman-Rakic PS. Common cortical and subcortical targets of the dorsolateral prefrontal and posterior parietal cortices in the rhesus monkey: evidence for a distributed neural network subserving spatially guided behavior. J Neurosci 1988;8:4049-68.
379.Selhorst JB, Stark L, Ochs AL, Hoyt WF. Disorders in cerebellar ocular motor control. I. Saccadic overshoot dysmetria, an oculographic, control system and clinico-anatomic analysis. Brain 1976;99:497-508.
380.Selhorst JB, Stark L, Ochs AL, Hoyt WF.Disorders in cerebellar ocular motor control. II. Macrosaccadic oscillations, an oculographic, control system and clinico-anatomic analysis. Brain 1976;99:509-22.
381.Semmlow JL, Gauthier GM, Vercher J-L. Mechanisms of short-term saccadic adaptation. J Exp Psychol Hum Percept Perform 1989;15:249-58.
382.Shafiq R, Stuart GW, Sandbach J, Maruff P, Currie J. The gap effect and express saccades in the auditory modality. Exp Brain Res 1998; 118:221-9.
383.Sharpe JA, Troost BT, Dell'Osso LF, Daroff RB. Comparative velocities of different types of fast eye movements in man. Invest Ophthalmol Vis Sci 1975; 14:689-92-
384.Sharpe JA, Zackon DH. Senescent saccades. Effects of aging on their accuracy, latency and ve-
locity. Acta Otolaryngol (Stockh) 1987; 104: 422-8.
385.Shelhamer M. Correlation dimension of optokinetic nystagmus as evidence of chaos in the oculomotor system. IEEC Trans Biomed Eng BME 1992;39:1319-21.
The Vestibular-Optokinetic System |
147 |
385a. Shelhamer M, Gross CD. Prediction of the sequence of optokinetic nystagmus eye movements reveals deterministic structure in reflexive oculomotor behavior. IEEE Trans Biomed
Eng 1998;45:668-70.
386. Shook BL, Schlag-Rey M, Schlag J. Direct projection from the supplementary eye field to the nucleus raphe interpositus. Exp Brain Res 1988;73:215-8.
387.Shook BL, Schlag-Rey M, Schlag J. Primate supplementary eye field: I. Comparative aspects of mesencephalic and pontine connections. J Comp Neurol 1990;301:618-42.
388.Shupert C, Fuchs AF. Development of conjugate human eye movements. Vision Res 1988; 28:585-96.
389.Siebold C, Glonti L, Kleine J, Biittner U. Sac- cade-related activity in the fastigial nucleus of the monkey during 3-D eye movements. Soc Neurosci Abstr 1997;23:1298.
390.Sindermann F, Geiselmann B, Fischler M. Single motor unit activity in extraocular muscles in man during fixation and saccades. Electroencephalogr Clin Neurophysiol 1978;45: 64-73.
391.Smit AE, van Gisbergen JAM. A short-latency transition in saccade dynamics during squarewave tracking and its significance for the differentiation of visually guided and predictive saccades. Exp Brain Res 1989;76:64-74.
392.Smit AE, van Gisbergen JAM, Cools AR. A parametric analysis of human saccades in different experimental paradigms. Vision Res 1987;27:1745-62.
393.Smith JL; David NJ. Internuclear ophthalmoplegia. Two new clinical signs. Neurology 1964; 14:307-9.
394.Sommer MA, Tehovnik EJ. Reversible inactivation of macaque frontal eye field. Exp Brain Res 1997; 116:229-49.
395.Sonderegger EN, Meienberg O, Ehrengruber
H. Normative data of saccadic eye movements for routine diagnosis of ophthalmoneurological disorders. Neuro-ophthalmology 1986;6: 257-69.
396.Sparks DL. The neural encoding of the location of targets for saccadic eye movements. J Exp Biol 1989;146:195-207.
397.Sparks DL, Hartwich-Young R. The deep layers of the superior colliculus. In The Neurobiology of Saccadic Eye Movements. Amsterdam: Elsevier; 1989; p. 213-55.
398.Sparks DL, Mays LE. Spatial localization of saccade targets. I. Compensation for stimula- tion-induced perturbations in eye position. J Neurophysiol 1983;49:45-63.
399.Sparks DL, Mays LE. Signal transformations required for the generation of saccadic eye movements. Annu Rev Neurosci 1990;13: 309-36.
400.Sparks DL, Mays LE, Porter JD. Eye movements induced by pontine stimulation: interaction with visually triggered saccades. J Neurophysiol 1987;58:300-18.
401.Sparks DL, Nelson JS. Reversible inactivation of neurons in the paramedian pontine reticu-
148 The Properties and Neural Substrate of EyeMovements
lar formation (PPRF): effects on latency, velocity, duration, and amplitude of horizontal, vertical, and oblique saccades. Soc Neurosci Abstr 1997;23:7.
402.Sparks DL, Porter JD. Spatial localization of saccade targets. II. Activity of superior colliculus neurons preceding compensatory saccades.
J Neurophysiol 1983;49:64-74.
403.Spiller WG. The importance in clinical diagnosis of paralysis of associated movements of the eyeballs (Blicklaehmung), especially of upward and downward associated movements. J Nerv Ment Dis 1919;32:417-48.
404.Stanton GB, Goldberg ME, Bruce CJ. Frontal eye field efferents in the macaque monkey: I. Subcortical pathways and topography of striatal and thalamic terminalfields.J Comp Neurol 1988;271:473-92.
405.Stanton GB, Goldberg ME, Bruce CJ. Frontal eye field efferents in the macaque monkey: II. Topography of terminal fields in midbrain and pons. J Comp Neurol 1988;271:
493-506.
406.Strassman A, Evinger LC, McCrea RA, Baker RG, Highstein SM. Anatomy and physiology of intracellularly labeled omnipause neurons in the cat and squirrel monkey. Exp Brain Res 1987;67:436-40.
407.Strassman A, Highstein SM, McCrea RA.Anatomy and physiology of saccadic burst neurons in the alert squirrel monkey. I. Excitatory burst neurons. J Comp Neurol 1986;249: 337-57.
408.Strassman A, Highstein SM, McCrea RA.Anatomy and physiology of saccadic burst neurons in the alert squirrel monkey. II. Inhibitory burst neurons. J Comp Neurol 1986; 249: 358-80.
409.Straube A, Deubel H. Rapid gain adaptation affects the dynamics of saccadic eye movements in humans. Vision Res 1995;35:3451-8.
410.Straube A, Deubel H, Spuler A, Biittner U. Differential effect of a bilateral deep cerebellar nuclei lesion on externally triggered saccades in humans. Neuro-ophthalmology 1995;15: 67-74.
411.Straube A, Fuchs AF, Usher S, Robinson FR.
Characteristics of saccadic gain adaptation in rhesus macaques. J Neurophysiol 1997;77: 874-95.
412.Straumann D, Zee DS, Solomon D, Lasker AG, Roberts DC. Transient torsion during and after saccades. Vision Res 1995;35:3321-34.
413.Suzuki Y, Biittner-Ennever JA, Straumann D, Hepp K, Hess BJM, Henn V. Deficits in torsional and vertical rapid eye movements and shift of Listing's plane after uniand bilateral lesions of the rostral interstitial nucleus of the medial longitudinal fasciculus. Exp Brain Res 1995;106:215-32.
414.Sweeney JA, Mintun MA, Kwee S, Wiseman MB, Brown DL, Rosenberg DR, Carl JR. Positron emission tomography study of voluntary saccadic eye movements and spatial working memory. J Neurophysiol 1996;75: 454-68.
415.Takagi M, Frohman EM, Zee DS. Gap-overlap effects on latencies of saccades, vergence and combined vergence-saccades in humans. Vision Res 1995;35:3373-88.
416.Takagi M, Zee DS, Tamargo R. Effect of dorsal cerebellar lesions on saccades and pursuit in monkeys. Soc Neurosci Abstr 1996;22:1458.
416a. Takagi M, Zee DS, Tamargo RJ. Effects of lesions of the oculomotor vermis on eye movements in primate: saccades. J Neurophysiol 1998;80:1911-30.
416b. Takikawa Y, Kawagoe R, Miyashita N, Hikosaka O. Presaccadic omnidirectional burst activity in the basal interstitial nucleus in the monkey cerebellum. Exp Brain Res 1998; 121: 442-50.
416c. Tanaka M, Yoshida T, Fukushima K. Latency of saccades during smooth-pursuit eye movement in man. Exp Brain Res 1998;121:92-8.
416d. Tehovnik EJ, Slocum WM, Tolias AS, Schiller PH. Saccades induced electrically from the dorsomedial frontal cortex: evidence for a head-centered representation. Brain Res 1998;795: 287-91.
416e. Terao Y, Fukuda H, Ugawa Y, Hikosaka O, Hanajima R, Furubayashi T, Sakai K,Miyauchi S, Sasaki Y, Kanazawa I. Visualization of the information flow through human oculomotor cortical regions by transcranial magnetic stimulation. J Neurophysiol 1998;80: 936-46.
417.Thier P, Andersen RA. Electrical microstimulation suggests two different forms of representation of head-centered space in the intraparietal sulcus of rhesus monkeys. Proc Natl Acad Sci USA 1996;93:4962-7.
418.Thurston SE, Leigh RJ, Abel LA, Dell'Osso LF. Slow saccades and hypometria in anticonvulsant toxicity. Neurology 1984;34:1593-6.
419.Troost BT, Weber RB, Daroff RB. Hypometric saccades. AmJ Ophthalmol 1974;78:1002-5.
420.Tusa RJ, Zee DS, Herdman SJ. Effect of unilateral cerebral cortical lesions on ocular motor behavior in monkeys: saccades and quick
phases. J Neurophysiol 1986;56:1590-625. 420a. Tweed D, Haslwanter T, Fetter M. Optimizing
gaze control in three dimensions. Science 1998;281:1363-6.
421.Tweed D, Misslisch H, Fetter M. Testing models of the oculomotor velocity-to-position transformation. J Neurophysiol 1994;72: 1425-9.
422.Umeno MM, Goldberg ME. Spatial properties in the monkey frontal eye field. 1. Predictive visual responses. J Neurophysiol 1997;78: 1373-83.
423.Ungerleider LG, Christensen CA. Pulvinar lesions in monkeys produce abnormal scanning of a complex visual array. Neuropsychologia 1979;17:493-501.
424.Van Gelder P, Lebedev S, Tsui WH. Peak velocities of visually and nonvisually guided saccades in smooth-pursuit and saccadic tasks. Exp Brain Res 1997;! 16:201-15.
425.van Gisbergen JAM, Robinson DA, Gielen S. A quantitative analysis of generation of saccadic
eye movements by burst neurons. J Neuro-
physiol 1981;45:4l7-42.
426. van Gisbergen JAM, Van Opstal AJ, Roebroek JGH. Stimulus-induced modification of saccade trajectories. In O'Regan JK, Levy-Schoen A, editors. Eye Movements: From Physiology to Cognition. Amsterdam: North Holland. 1987; p. 27-36.
427.van Gisbergen JAM, Van Opstal AJ, Schoenmakers JJM. Experimental test of two models for the generation of oblique saccades. Exp Brain Res 1985;57:321-36.
427a. Van Leeuwen AF, Collewijn H, Erkelens CJ. Dynamics of horizontal vergence movements: interaction with horizontal and vertical saccades and relation with monocular preferences. Vision Res 1998;38:3943-54.
428.Van Opstal AJ, Hepp K, Hess BJ, Straumann D, Henn V. Tworather than threedimensional representation of saccades in monkey superior colliculus. Science 1991;252: 1313-5.
429.Van Opstal AJ, Hepp K, Suzuki Y, Henn V. Influence of eye position on activity in monkey superior colliculus. J Neurophysiol 1995;74: 1593-610.
430.Van Opstal AJ, Hepp K, Suzuki Y, Henn V Role of monkey nucleus reticularis tegmenti ponds in the stabilization of Listing's plane. J Neurosci 1996; 16:7284-96.
431.Van Opstal AJ, van Gisbergen JAM. Skewness of saccadic velocity profiles: a unifying parameter for normal and slow saccades. Vision Res 1987;27:731-45.
432.Van Opstal AJ, van Gisbergen JAM. Scatter in the metrics of saccades and properties of the collicular motor map. Vision Res 1989;29: 1183-96.
433.Vermersch AI, Miiri RM, Rivaud S, Vidailhet M, Gaymard B, Pierrot-Deseilligny C. Saccade disturbances after bilateral lentiform nucleus
lesions in humans. J Neurol Neurosurg Psychiatry 1996;60:179-84.
434.Versino M, Hurko O, Zee DS. Disorders of binocular control of eye movements in patients with cerebellar dysfunction. Brain 1996; 119:1933-50.
435.Vilis T, Hepp K, Schwarz U, Henn V. On the generation of vertical and torsional rapid eye movements in the monkey. Exp Brain Res 1989;77:1-11.
436.Vilis T, Snow R, Hore J. Cerebellar saccadic dysmetria is not equal in the two eyes. Exp Brain Res 1983;51:343-50.
437.Vilkki J. Visual hemi-inattention after ventrolateral thalamotomy. Neuropsychologia 1984; 22:399-408.
438.Vitu F, O'Regan JK, Inhoff AW, Topolski R. Mindless reading: eye-movement characteristics are similar in scanning letter strings and reading texts. Percept Psychophys 1997;57: 352-64.
439.Waespe W, Wichmann W. Oculomotor disturbances during visual-vestibular interaction in Wallenberg's lateral medullary syndrome. Brain 1990;! 13:821-46.
The Vestibular-Optokinetic System |
149 |
440.Waitzman DM, Ma TP, Optican LM, Wurtz RH. Superior colliculus neurons provide the saccadic motor error signal. Exp Brain Res 1988;72:649-52.
441.Waitzman DM, Silakov VL. Effects of reversible lesions of the central mesencephalic reticular formation (cMRF) on primate saccadic eye movements. Soc Neurosci Abstr 1994;20:1399.
442.Waitzman DM, Silakov VL, Cohen B. Central mesencephalic reticular formation (cMRF) neurons discharging before and during eye movements. J Neurophysiol 1996;75:1546-72.
443.Waitzman DM, Silakov VL, DePalma SR. Paralysis of vertical gaze following unilateral inactivation of the mesencephalic reticular formation (MRF). Soc Neurosci Abstr 1997;23: 2368.
444.Walker MF, FitzGibbon EJ, Goldberg ME. Neurons in the monkey superior colliculus predict the visual result of impending saccadic eye movements. J Neurophysiol 1995;73: 1988-2003.
445.Walker R, Deubel H, Schneider WX, Findlay JM. Effect of remote distractors on saccade programing; evidence for an extended fixation zone. Vision Res 1997;78:1108-19.
446.Wallace MT, Wilkinson LK, Stein BE. Representation and integration of multiple sensory inputs in primate superior colliculus. J Neurophysiol 1997;76:1246-66.
447.Weber H, Biscaldi M, Fischer B. Intertrial effects of randomization on saccadic reaction times in human observers. Vision Res 1995;
35:2615-42.
447a. Weber H, Durr N, Fischer B. Effects of precues on voluntary and reflexive saccade generation. II. Pro-cues for anti-saccades. Exp Brain Res 1998;120:417-31.
448.Weber H, Fischer B. Gap duration and location of attention focus modulate the occur-
rence of left right asymmetries in the saccadic reaction times of human subjects. Vision Res 1995;35:987-98.
449.Weber RB, Daroff RB. Corrective movements following refixation saccades: type and control system analysis. Vision Res 1972;12:467-75.
450. Westheimer G. Eye movement responses to a horizontally moving visual stimulus. Arch Ophthalmol 1954;52:932-41.
451.Westheimer G, Blair SM. Saccadic inhibition induced by brain stem stimulation in the alert monkey. Invest Ophthalmol Vis Sci 1973;12: 77-8.
452.White JM, Sparks DL, Stanford TR. Saccades
to remembered |
target locations: an analysisof |
systematic and |
variable errors. Vision Res |
1994;34:79-92. |
|
453.Wurtz RH. Vision for the control of eye movement. Invest Ophthalmol Vis Sci 1997;37: 2131-45.
454.Wurtz RH, Albano JE. Visual-motor function of the primate superior colliculus. Annu Rev
Neurosci 1980;3:189-226.
454a. Wyatt HJ. Detecting saccades with jerk. Vision Res 1998;38:2147-53.
