• Keine Ergebnisse gefunden

Literaturverzeichnis

Altmann, C. F., Bülthoff, H. H. & Kourtzi, Z. (2003). Perceptual organization of local ele-ments into global shapes in the human visual cortex. Curr.Biol., 13, 342-349.

Altmann, C. F., Deubelius, A. & Kourtzi, Z. (2004). Shape saliency modulates contextual processing in the human lateral occipital complex. J.Cogn.Neurosci., 16, 794-804.

American Electroencephalographic Society (1994). Guideline thirteen: guidelines for stan-dard electrode position nomenclature. American Electroencephalographic Society.

J.Clin.Neurophysiol., 11, 111-113.

Angelucci, A., Levitt, J. B., Walton, E. J., Hupe, J. M., Bullier, J. & Lund, J. S. (2002). Cir-cuits for local and global signal integration in primary visual cortex. J.Neurosci., 22, 8633-8646.

Anllo-Vento, L. & Hillyard, S. A. (1996). Selective attention to the color and direction of moving stimuli: electrophysiological correlates of hierarchical feature selection.

Percept.Psychophys., 58, 191-206.

Antes, J. R. & Penland, J. G. (1981). Picture context effects on eye movement patterns. In D.

F. Fisher, R. A. Monty & J. W. Senders (Eds) Eye movements: cognition and visual percep-tion (pp. 157-170). New Jersey: Lawrence Erlbaum Associates.

Baas, J. M., Kenemans, J. L. & Mangun, G. R. (2002). Selective attention to spatial fre-quency: an ERP and source localization analysis. Clin.Neurophysiol., 113, 1840-1854.

Bach, M. (1996b). The "Freiburg Visual Acuity test"-automatic measurement of visual acu-ity. Optom.Vis.Sci., 73, 49-53.

Bach, M. (1996a). The "Freiburg Visual Acuity Test"- automatic measurement of visual acu-ity. Optom.Vis.Sci., 73, 49-53.

Bach, M. & Meigen, T. (1997). Similar electrophysiological correlates of texture segregation induced by luminance, orientation, motion and stereo. Vision Res., 37, 1409-1414.

Bach, M., Schmitt, C., Quenzer, T., Meigen, T. & Fahle, M. (2000). Summation of texture segregation across orientation and spatial frequency: electrophysiological and psychophysical findings. Vision Res., 40, 3559-3566.

Barber, C. B., Dobkin, D. P. & Huhdanpaa, H. (1996). The quickhull algorithm for convex hulls. ACM Transactions on Mathematical Software, 22, 469-483.

Barbur, J. L., Harlow, A. J. & Plant, G. T. (1994). Insights into the different exploits of

col-Barch, D. M., Carter, C. S., Braver, T. S., Sabb, F. W., MacDonald, A., Noll, D. C. & Cohen, J. D. (2001). Selective deficits in prefrontal cortex function in medication-naive patients with schizophrenia. Arch.Gen.Psychiatry, 58, 280-288.

Barnes, J., Howard, R. J., Senior, C., Brammer, M., Bullmore, E. T., Simmons, A. & David, A. S. (1999). The functional anatomy of the McCollough contingent colour after-effect. Neu-roreport, 10, 195-199.

Basar, E., Basar-Eroglu, C., Karakas, S. & Schürmann, M. (1999). Are cognitive processes manifested in event-related gamma, alpha, theta and delta oscillations in the EEG? Neuros-ci.Lett., 259, 165-168.

Basar, E., Basar-Eroglu, C., Karakas, S. & Schürmann, M. (2001). Gamma, alpha, delta, and theta oscillations govern cognitive processes. Int.J.Psychophysiol., 39, 241-248.

Basar, E., Rosen, B., Basar-Eroglu, C. & Greitschus, F. (1987). The associations between 40 Hz-EEG and the middle latency response of the auditory evoked potential. Int.J.Neurosci., 33, 103-117.

Basar-Eroglu, C., Basar, E., Demiralp, T. & Schürmann, M. (1992). P300-response: possible psychophysiological correlates in delta and theta frequency channels. A review.

Int.J.Psychophysiol., 13, 161-179.

Basar-Eroglu, C., Strüber, D., Kruse, P., Basar, E. & Stadler, M. (1996a). Frontal gamma-band enhancement during multistable visual perception. Int.J.Psychophysiol., 24, 113-125.

Basar-Eroglu, C., Strüber, D., Schürmann, M., Stadler, M. & Basar, E. (1996b). Gamma-band responses in the brain: a short review of psychophysiological correlates and functional significance. Int.J.Psychophysiol., 24, 101-112.

Bauer, R. & Heinze, S. (2002). Contour integration in striate cortex. Classic cell responses or cooperative selection? Exp.Brain Res., 147, 145-152.

Beaudot, W. H. & Mullen, K. T. (2003). How long range is contour integration in human color vision? Vis.Neurosci., 20, 51-64.

Beaudot, W. H. & Mullen, K. T. (2001). Processing time of contour integration: the role of colour, contrast, and curvature. Perception, 30, 833-853.

Beaudot, W. H. & Mullen, K. T. (2005). Orientation selectivity in luminance and color vision assessed using 2-d band-pass filtered spatial noise. Vision Res., 45, 687-696.

Beck, J., Rosenfeld, A. & Ivry, R. (1989). Line segregation. Spat.Vis., 4, 75-101.

Berninger, T. A., Arden, G. B., Hogg, C. R. & Frumkes, T. (1989). Separable evoked retinal and cortical potentials from each major visual pathway: preliminary results. Br.J.Ophthalmol., 73, 502-511.

Literaturverzeichnis

Birbaumer, N. & Schmidt, R. F. (1996). Biologische Psychologie. Berlin Heidelberg New York: Springer-Verlag.

Boynton, G. M. & Finney, E. M. (2003). Orientation-specific adaptation in human visual cor-tex. J.Neurosci., 23, 8781-8787.

Braun, J. (1999). On the detection of salient contours. Spat.Vis., 12, 211-225.

Brigell, M., Strafella, A., Parmeggiani, L., DeMarco, P. J., Jr. & Celesia, G. G. (1996). The effects of luminance and chromatic background flicker on the human visual evoked potential.

Vis.Neurosci., 13, 265-275.

Caputo, G. & Casco, C. (1999). A visual evoked potential correlate of global figure-ground segmentation. Vision Res., 39, 1597-1610.

Caputo, G., Romani, A., Callieco, R., Gaspari, D. & Cosi, V. (1999). Amodal completion in texture visual evoked potentials. Vision Res., 39, 31-38.

Casco, C., Grieco, A., Campana, G., Corvino, M. P. & Caputo, G. (2005). Attention modu-lates psychophysical and electrophysiological response to visual texture segmentation in hu-mans. Vision Res., 45, 2384-2396.

Cavanagh, P., MacLeod, D. I. & Anstis, S. M. (1987). Equiluminance: spatial and temporal factors and the contribution of blue-sensitive cones. J.Opt.Soc.Am.A, 4, 1428-1438.

Chouinard, P. A. & Paus, T. (2006). The primary motor and premotor areas of the human cerebral cortex. Neuroscientist., 12, 143-152.

Clifford, C. W., Spehar, B., Solomon, S. G., Martin, P. R. & Zaidi, Q. (2003). Interactions between color and luminance in the perception of orientation. J.Vis., 3, 106-115.

Culham, J., He, S., Dukelow, S. & Verstraten, F. A. (2001). Visual motion and the human brain: what has neuroimaging told us? Acta Psychol.(Amst), 107, 69-94.

Dain, S. J. (2004). Clinical colour vision tests. Clin.Exp.Optom., 87, 276-293.

Dakin, S. C. & Hess, R. F. (1998). Spatial-frequency tuning of visual contour integration.

J.Opt.Soc.Am.A Opt.Image Sci.Vis., 15, 1486-1499.

Demiralp, T., Ademoglu, A., Schürmann, M., Basar-Eroglu, C. & Basar, E. (1999). Detection of P300 waves in single trials by the wavelet transform (WT). Brain Lang., 66, 108-128.

DeYoe, E. A., Carman, G. J., Bandettini, P., Glickman, S., Wieser, J., Cox, R., Miller, D. &

Neitz, J. (1996). Mapping striate and extrastriate visual areas in human cerebral cortex.

Proc.Natl.Acad.Sci.U.S.A, 93, 2382-2386.

Doniger, G. M., Foxe, J. J., Murray, M. M., Higgins, B. A., Snodgrass, J. G., Schroeder, C. E.

& Javitt, D. C. (2000). Activation timecourse of ventral visual stream object-recognition ar-eas: high density electrical mapping of perceptual closure processes. J.Cogn Neurosci., 12, 615-621.

Donner, T., Kettermann, A., Diesch, E., Ostendorf, F., Villringer, A. & Brandt, S. A. (2000).

Involvement of the human frontal eye field and multiple parietal areas in covert visual selec-tion during conjuncselec-tion search. Eur.J.Neurosci., 12, 3407-3414.

Donner, T. H., Kettermann, A., Diesch, E., Ostendorf, F., Villringer, A. & Brandt, S. A.

(2002). Visual feature and conjunction searches of equal difficulty engage only partially over-lapping frontoparietal networks. Neuroimage, 15, 16-25.

Downing, P. E., Chan, A. W., Peelen, M. V., Dodds, C. M. & Kanwisher, N. (2005). Domain Specificity in Visual Cortex. Cereb.Cortex.

Dragoi, V., Sharma, J. & Sur, M. (2000). Adaptation-induced plasticity of orientation tuning in adult visual cortex. Neuron, 28, 287-298.

Dumoulin, S. O. & Hess, R. F. (2006). Modulation of V1 activity by shape: image-statistics or shape-based perception? J.Neurophysiol., 95, 3654-3664.

Ehrenstein, W. H. & Ehrenstein, A. (1999). Psychophysical methods. In U. Windhorst & H.

Johansson (Eds) Modern techniques in neuroscience (pp. 1211-1241). Berlin Heidelberg:

Springer.

Elder, J. & Zucker, S. (1994). A measure of closure. Vision Res., 34, 3361-3369.

Elder, J. & Zucker, S. (1993). The effect of contour closure on the rapid discrimination of two-dimensional shapes. Vision Res., 33, 981-991.

Ernst, U. A., Mandon, S., Pawelzik, K. R. & Kreiter, A. K. (2004). How ideal do macaque monkeys integrate contours? Neurocomputing, 58-60, 971-977.

Ernst, U. A., Pawelzik, K. R., Sahar-Pikielny, C. & Tsodyks, M. V. (2001). Intracortical ori-gin of visual maps. Nat.Neurosci., 4, 431-436.

Fahle, M., Quenzer, T., Braun, C. & Spang, K. (2003). Feature-specific electrophysiological correlates of texture segregation. Vision Res., 43, 7-19.

Field, D. J., Hayes, A. & Hess, R. F. (1993). Contour integration by the human visual system:

evidence for a local "association field". Vision Res., 33, 173-193.

Flanagan, P., Cavanagh, P. & Favreau, O. E. (1990). Independent orientation-selective mechanisms for the cardinal directions of colour space. Vision Res., 30, 769-778.

Frahm, J., Fransson, P. & Krüger, G. (1999). Magnetic resonance imaging of human brain function. In U. Windhorst & H. Johansson (Eds) Modern techniques in neuroscience (pp.

Literaturverzeichnis

Geisler, W. S., Perry, J. S., Super, B. J. & Gallogly, D. P. (2001). Edge co-occurrence in natural images predicts contour grouping performance. Vision Res., 41, 711-724.

Gerhardstein, P., Kovacs, I., Ditre, J. & Feher, A. (2004). Detection of contour continuity and closure in three-month-olds. Vision Res., 44, 2981-2988.

Gerth, C., Delahunt, P. B., Crognale, M. A. & Werner, J. S. (2003). Topography of the chro-matic pattern-onset VEP. J.Vis., 3, 171-182.

Goldstein, E. B. (2002). Wahrnehmungspsychologie. Heidelberg: Spektrum Akademischer Verlag.

Grill-Spector, K. (2003). The neural basis of object perception. Curr.Opin.Neurobiol., 13, 159-166.

Grill-Spector, K., Kushnir, T., Edelman, S., Itzchak, Y. & Malach, R. (1998). Cue-invariant activation in object-related areas of the human occipital lobe. Neuron, 21, 191-202.

Grill-Spector, K. & Malach, R. (2004). The human visual cortex. Annu.Rev.Neurosci., 27, 649-677.

Han, S., Song, Y., Ding, Y., Yund, E. W. & Woods, D. L. (2001). Neural substrates for vis-ual perceptvis-ual grouping in humans. Psychophysiology, 38, 926-935.

Harding, G. F., Odom, J. V., Spileers, W. & Spekreijse, H. (1996). Standard for visual evoked potentials 1995. The International Society for Clinical Electrophysiology of Vision.

Vision Res., 36, 3567-3572.

Harter, M. R. & Aine, C. J. (1984). Brain mechanisms of visual selective attention. In R.

Parasuraman & D. R. Davies (Eds) Varieties of attention (pp. 293-321). Orlando: Academic Press, Inc.

Hasnain, M. K., Fox, P. T. & Woldorff, M. G. (1998). Intersubject variability of functional areas in the human visual cortex. Hum.Brain Mapp., 6, 301-315.

Heckers, S., Rauch, S. L., Goff, D., Savage, C. R., Schacter, D. L., Fischman, A. J. & Alpert, N. M. (1998). Impaired recruitment of the hippocampus during conscious recollection in schizophrenia. Nat.Neurosci., 1, 318-323.

Heeger, D. J., Huk, A. C., Geisler, W. S. & Albrecht, D. G. (2000). Spikes versus BOLD:

what does neuroimaging tell us about neuronal activity? Nat.Neurosci., 3, 631-633.

Herrmann, C. S. & Bosch, V. (2001). Gestalt perception modulates early visual processing.

Neuroreport, 12, 901-904.

Herrmann, C. S. & Knight, R. T. (2001). Mechanisms of human attention: event-related

po-Herrmann, C. S., Munk, M. H. & Engel, A. K. (2004). Cognitive functions of gamma-band activity: memory match and utilization. Trends Cogn Sci., 8, 347-355.

Hess, R. & Field, D. (1999). Integration of contours: new insights. Trends Cogn.Sci., 3, 480-486.

Hess, R. F., Beaudot, W. H. & Mullen, K. T. (2001). Dynamics of contour integration. Vision Res., 41, 1023-1037.

Hess, R. F. & Dakin, S. C. (1999). Contour integration in the peripheral field. Vision Res., 39, 947-959.

Hess, R. F. & Dakin, S. C. (1997). Absence of contour linking in peripheral vision. Nature, 390, 602-604.

Hess, R. F., Hayes, A. & Field, D. J. (2003). Contour integration and cortical processing.

J.Physiol Paris, 97, 105-119.

Hillyard, S. A. & Anllo-Vento, L. (1998). Event-related brain potentials in the study of visual selective attention. Proc.Natl.Acad.Sci.USA, 95, 781-787.

Hopf, J. M., Boelmans, K., Schoenfeld, M. A., Luck, S. J. & Heinze, H. J. (2004). Attention to features precedes attention to locations in visual search: evidence from electromagnetic brain responses in humans. J.Neurosci., 24, 1822-1832.

Hoshiyama, M. & Kakigi, R. (2001). Effects of attention on pattern-reversal visual evoked potentials: foveal field stimulation versus peripheral field stimulation. Brain Topogr., 13, 293-298.

Huang, P. C., Hess, R. F. & Dakin, S. C. (2006). Flank facilitation and contour integration:

Different sites. Vision Res., 46, 3699-3706.

Humphrey, G. K., Goodale, M. A., Corbetta, M. & Aglioti, S. (1995). The McCollough effect reveals orientation discrimination in a case of cortical blindness. Curr.Biol., 5, 545-551.

Hutton, S. B., Puri, B. K., Duncan, L. J., Robbins, T. W., Barnes, T. R. & Joyce, E. M.

(1998). Executive function in first-episode schizophrenia. Psychol.Med., 28, 463-473.

Ito, M. & Komatsu, H. (2004). Representation of angles embedded within contour stimuli in area V2 of macaque monkeys. J.Neurosci., 24, 3313-3324.

Ivanitsky, A. M., Nikolaev, A. R. & Ivanitsky, G. A. (1999). Electroencephalography. In U.

Windhorst & H. Johansson (Eds) Modern techniques in neuroscience (pp. 971-995). Berlin Heidelberg: Springer.

Jaskowski, P. & Verleger, R. (2000). An evaluation of methods for single-trial estimation of P3 latency. Psychophysiology, 37, 153-162.

Literaturverzeichnis

Jezzard, P. & Clare, S. (2001). Principles of nuclear magnetic resonance and MRI. In P. Jez-zard, P. M. Matthews & S. M. Smith (Eds) Functional MRI an introduction to methods (pp.

67-92). Oxford: Oxford University Press.

Johnson, E. N., Hawken, M. J. & Shapley, R. (2001). The spatial transformation of color in the primary visual cortex of the macaque monkey. Nat.Neurosci., 4, 409-416.

Kandel, E. R. & Wurtz, R. H. (2000). Constructing the visual image. In E. R. Kandel, J. H.

Schwartz & T. M. Jessell (Eds) Principles of neural science (pp. 492-506). New York:

McGraw-Hill.

Kandil, F. I. & Fahle, M. (2003). Electrophysiological correlates of purely temporal figure-ground segregation. Vision Res., 43, 2583-2589.

Kapadia, M. K., Ito, M., Gilbert, C. D. & Westheimer, G. (1995). Improvement in visual sen-sitivity by changes in local context: parallel studies in human observers and in V1 of alert monkeys. Neuron, 15, 843-856.

Karakas, S., Erzengin, Ö. U. & Basar, E. (2000). The genesis of human event-related re-sponses explained through the theory of oscillatory neural assemblies. Neurosci.Lett., 285, 45-48.

Kenemans, J. L., Kok, A. & Smulders, F. T. (1993). Event-related potentials to conjunctions of spatial frequency and orientation as a function of stimulus parameters and response re-quirements. Electroencephalogr.Clin.Neurophysiol., 88, 51-63.

Kiper, D. C., Fenstemaker, S. B. & Gegenfurtner, K. R. (1997). Chromatic properties of neu-rons in macaque area V2. Vis.Neurosci., 14, 1061-1072.

Köhler, W. (1940). Dynamics in Psychology. New York: Liveright.

Kok, A. (1997). Event-related-potential (ERP) reflections of mental resources: a review and synthesis. Biol.Psychol., 45, 19-56.

Kourtzi, Z., Betts, L. R., Sarkheil, P. & Welchman, A. E. (2005). Distributed neural plasticity for shape learning in the human visual cortex. PLoS.Biol., 3, e204.

Kourtzi, Z. & Huberle, E. (2005). Spatiotemporal characteristics of form analysis in the hu-man visual cortex revealed by rapid event-related fMRI adaptation. Neuroimage, 28, 440-452.

Kourtzi, Z. & Kanwisher, N. (2001). Representation of perceived object shape by the human lateral occipital complex. Science, 293, 1506-1509.

Kourtzi, Z., Tolias, A. S., Altmann, C. F., Augath, M. & Logothetis, N. K. (2003). Integra-tion of local features into global shapes: monkey and human FMRI studies. Neuron, 37, 333-346.

Kovacs, I. & Julesz, B. (1993). A closed curve is much more than an incomplete one: effect of closure in figure-ground segmentation. Proc.Natl.Acad.Sci.USA, 90, 7495-7497.

Kraft, A., Schira, M. M., Hagendorf, H., Schmidt, S., Olma, M. & Brandt, S. A. (2005).

fMRI localizer technique: efficient acquisition and functional properties of single retinotopic positions in the human visual cortex. Neuroimage, 28, 453-463.

Kreiter, A. K. & Singer, W. (1996). Stimulus-dependent synchronization of neuronal re-sponses in the visual cortex of the awake macaque monkey. J.Neurosci., 16, 2381-2396.

Kubovy, M., Cohen, D. J. & Hollier, J. (1999). Feature integration that routinely occurs without focal attention. Psychon.Bull.Rev., 6, 183-203.

Kulikowski, J. J., McKeefry, D. J. & Robson, A. G. (1997). Selective stimulation of colour mechanisms: an empirical perspective. Spat.Vis., 10, 379-402.

Kurita-Tashima, S., Tobimatsu, S., Nakayama-Hiromatsu, M. & Kato, M. (1991). Effect of check size on the pattern reversal visual evoked potential. Electroencepha-logr.Clin.Neurophysiol., 80, 161-166.

Lamme, V. A., Van Dijk, B. W. & Spekreijse, H. (1992). Texture segregation is processed by primary visual cortex in man and monkey. Evidence from VEP experiments. Vision Res., 32, 797-807.

Ledgeway, T. & Hess, R. F. (2002). Rules for combining the outputs of local motion detec-tors to define simple contours. Vision Res., 42, 653-659.

Leek, M. R. (2001). Adaptive procedures in psychophysical research. Percept.Psychophys., 63, 1279-1292.

Leonards, U. & Singer, W. (2000). Conjunctions of colour, luminance and orientation: the role of colour and luminance contrast on saliency and proximity grouping in texture segrega-tion. Spat.Vis., 13, 87-105.

Leonards, U., Sunaert, S., Van Hecke, P. & Orban, G. A. (2000). Attention mechanisms in visual search - an fMRI study. J.Cogn.Neurosci., 12 Suppl. 2, 61-75.

Lewine, J. D. & Orrison, W. W. (1995). Functional magnetic resonance imaging. In W. W.

Orrison, J. D. Lewine, J. A. Sanders & M. F. Hartshorne (Eds) Functional brain imaging (pp.

239-326). St. Loius: Mosby-Year Book.

Li, W. & Gilbert, C. D. (2002). Global contour saliency and local colinear interactions.

J.Neurophysiol., 88, 2846-2856.

Li, W., Piech, V. & Gilbert, C. D. (2006). Contour saliency in primary visual cortex. Neuron, 50, 951-962.

Livingstone, M. S. & Hubel, D. H. (1987). Psychophysical evidence for separate channels for

Literaturverzeichnis

Logothetis, N. K., Pauls, J., Augath, M., Trinath, T. & Oeltermann, A. (2001). Neurophysi-ological investigation of the basis of the fMRI signal. Nature, 412, 150-157.

Löwel, S. & Singer, W. (1992). Selection of intrinsic horizontal connections in the visual cortex by correlated neuronal activity. Science, 255, 209-212.

Luck, S. J., Heinze, H. J., Mangun, G. R. & Hillyard, S. A. (1990). Visual event-related po-tentials index focused attention within bilateral stimulus arrays. II. Functional dissociation of P1 and N1 components. Electroencephalogr.Clin.Neurophysiol., 75, 528-542.

Luck, S. J. & Hillyard, S. A. (1994). Spatial filtering during visual search: evidence from human electrophysiology. J.Exp.Psychol.Hum.Percept.Perform., 20, 1000-1014.

Lutzenberger, W., Elbert, T., Rockstroh, B. & Birbaumer, N. (1985). Das EEG. Psychophy-siologie und Methodik von Spontan-EEG und ereigniskorrelierten Potentialen. Berlin Heidel-berg New York: Springer-Verlag.

Macknik, S. L. & Livingstone, M. S. (1998). Neuronal correlates of visibility and invisibility in the primate visual system. Nat.Neurosci., 1, 144-149.

Mandon, S. & Kreiter, A. K. (2005). Rapid contour integration in macaque monkeys. Vision Res., 45, 291-300.

Manoach, D. S., Press, D. Z., Thangaraj, V., Searl, M. M., Goff, D. C., Halpern, E., Saper, C.

B. & Warach, S. (1999). Schizophrenic subjects activate dorsolateral prefrontal cortex during a working memory task, as measured by fMRI. Biol.Psychiatry, 45, 1128-1137.

Mathes, B. & Fahle, M. (2006). The electrophysiological correlate of contour integration is similar for colour and luminance mechanisms. Psychophysiology, submitted.

Mathes, B., Strüber, D., Stadler, M. A. & Basar-Eroglu, C. (2006a). Voluntary control of Necker cube reversals modulates the EEG delta- and gamma-band response. Neurosci.Lett., 402, 145-149.

Mathes, B., Trenner, D. & Fahle, M. (2006b). The electrophysiological correlate of contour integration is modulated by task demands. Brain Res., 1114, 98-112.

Mathes, B., Wood, S. J., Proffitt, T. M., Stuart, G. W., Buchanan, J. A., Velakoulis, D., Brewer, W. J., McGorry, P. D. & Pantelis, C. (2005). Early processing deficits in object working memory in first-episode schizophreniform psychosis and established schizophrenia.

Psychol.Med., 35, 1053-1062.

McCarthy, G. & Wood, C. C. (1985). Scalp distributions of event-related potentials: an am-biguity associated with analysis of variance models. Electroencephalogr.Clin.Neurophysiol., 62, 203-208.

McIlhagga, W. H. & Mullen, K. T. (1996). Contour integration with colour and luminance contrast. Vision Res., 36, 1265-1279.

McKeefry, D. J., Russell, M. H., Murray, I. J. & Kulikowski, J. J. (1996). Amplitude and phase variations of harmonic components in human achromatic and chromatic visual evoked potentials. Vis.Neurosci., 13, 639-653.

Meinhardt, G. & Periske, M. (2003). Strength of feature contrast mediates interaction among feature domains. Spat.Vis., 16, 459-478.

Meinhardt, G., Schmidt, M., Persike, M. & Röers, B. (2004). Feature synergy depends on feature contrast and objecthood. Vision Res., 44, 1843-1850.

Menon, R. S. (2001). Imaging function in the working brain with fMRI.

Curr.Opin.Neurobiol., 11, 630-636.

Menon, R. S. & Goodyear, B. G. (2001). Spatial and temporal resolution in fMRI. In P. Jez-zard, P. M. Matthews & S. M. Smith (Eds) Functional MRI an introduction to methods (pp.

145-158). Oxford: Oxford University Press.

Meyer-Lindenberg, A., Miletich, R. S., Kohn, P. D., Esposito, G., Carson, R. E., Quarantelli, M., Weinberger, D. R. & Berman, K. F. (2002). Reduced prefrontal activity predicts exag-gerated striatal dopaminergic function in schizophrenia. Nat.Neurosci., 5, 267-271.

Michie, P. T., Karayanidis, F., Smith, G. L., Barrett, N. A., Large, M. M., O'Sullivan, B. T. &

Kavanagh, D. J. (1999). An exploration of varieties of visual attention: ERP findings.

Cogn.Brain Res., 7, 419-450.

Mitchell, R. L. C., Elliot, R. & Woodruff, P. W. R. (2001). fMRI and cognitive dysfunction in schizophrenia. Trends Cognit.Sci., 5, 71-81.

Mori, S. (1997). Effect of absolute and relative gap sizes in visual search for closure.

Can.J.Exp.Psychol., 51, 112-125.

Mullen, K. T., Beaudot, W. H. & McIlhagga, W. H. (2000). Contour integration in color vi-sion: a common process for the blue-yellow, red-green and luminance mechanisms? Vision Res., 40, 639-655.

Mullen, K. T. & Sankeralli, M. J. (1999). Evidence for the stochastic independence of the blue-yellow, red-green and luminance detection mechanisms revealed by subthreshold sum-mation. Vision Res., 39, 733-745.

Müller, M. M. & Keil, A. (2004). Neuronal synchronization and selective color processing in the human brain. J.Cogn Neurosci., 16, 503-522.

Neitzel, S. D. Elektrophysiologische Untersuchungen zum neuronalen Korrelat von Bin-dungsprozessen im primären visuellen Kortex des Rhesusaffen. 2006. University of Bremen Germany.

Literaturverzeichnis

Nothdurft, H. (2000). Salience from feature contrast: additivity across dimensions. Vision Res., 40, 1183-1201.

Nugent, A. K., Keswani, R. N., Woods, R. L. & Peli, E. (2003). Contour integration in pe-ripheral vision reduces gradually with eccentricity. Vision Res., 43, 2427-2437.

Otten, L. J. & Rugg, M. D. (2005). Interpreting event-related potentials. In T. C. Handy (Ed) Event-related potentials (pp. 1-16). Cambridge: MIT Press.

Pantelis, C., Stuart, G. W., Nelson, H. E., Robbins, T. W. & Barnes, T. R. E. (2001). Spatial working memory deficits in schizophrenia: Relationship with tardive dyskinesia and negative symptoms. Am.J.Psychiatry, 158, 1276-1285.

Paus, T. (1996). Location and function of the human frontal eye-field: a selective review.

Neuropsychologia, 34, 475-483.

Persike, M. & Meinhardt, G. (2006). Synergy of features enables detection of texture defined figures. Spat.Vis., 19, 77-102.

Persike, M. & Meinhardt, G. (2005). Contour integration by cue combination. Perception, 34, Supplement 163.

Pettet, M. W. (1999). Shape and contour detection. Vision Res., 39, 551-557.

Pettet, M. W., McKee, S. P. & Grzywacz, N. M. (1998). Constraints on long range interac-tions mediating contour detection. Vision Res., 38, 865-879.

Picton, T. W. (1992). The P300 wave of the human event-related potential.

J.Clin.Neurophysiol., 9, 456-479.

Picton, T. W., Bentin, S., Berg, P., Donchin, E., Hillyard, S. A., Johnson, R., Jr., Miller, G.

A., Ritter, W., Ruchkin, D. S., Rugg, M. D. & Taylor, M. J. (2000). Guidelines for using hu-man event-related potentials to study cognition: recording standards and publication criteria.

Psychophysiology, 37, 127-152.

Pivik, R. T., Broughton, R. J., Coppola, R., Davidson, R. J., Fox, N. & Nuwer, M. R. (1993).

Guidelines for the recording and quantitative analysis of electroencephalographic activity in research contexts. Psychophysiology, 30, 547-558.

Pollmann, S. & Maertens, M. (2005). Shift of activity from attention to motor-related brain areas during visual learning. Nat.Neurosci., 8, 1494-1496.

Poom, L. (2002). Visual binding of luminance, motion and disparity edges. Vision Res., 42, 2577-2591.

Porciatti, V. & Sartucci, F. (1999). Normative data for onset VEPs to red-green and

blue-Porciatti, V. & Sartucci, F. (1996). Retinal and cortical evoked responses to chromatic con-trast stimuli. Specific losses in both eyes of patients with multiple sclerosis and unilateral op-tic neuritis. Brain, 119, 723-740.

Potts, G. F. (2004). An ERP index of task relevance evaluation of visual stimuli. Brain Cogn., 56, 5-13.

Potts, G. F. & Tucker, D. M. (2001). Frontal evaluation and posterior representation in target detection. Cogn.Brain Res., 11, 147-156.

Rabin, J., Switkes, E., Crognale, M., Schneck, M. E. & Adams, A. J. (1994). Visual evoked potentials in three-dimensional color space: correlates of spatio-chromatic processing. Vision Res., 34, 2657-2671.

Raichle, M. E. (2001). Bold insights. Nature, 412, 128-130.

Rodriguez-Carmona, M. L., Harlow, A. J., Walker, G. & Barbur, J. L. The variability of normal trichromatic vision and the establishment of the "normal" range. Proceedings of the 10th Congress of the International Colour Association. 979-982. 2005. Granada.

Ref Type: Conference Proceeding

Romani, A., Callieco, R., Tavazzi, E. & Cosi, V. (2003). The effects of collinearity and ori-entation on texture visual evoked potentials. Clin.Neurophysiol., 114, 1021-1026.

Romani, A., Caputo, G., Callieco, R., Schintone, E. & Cosi, V. (1999). Edge detection and surface 'filling in' as shown by texture visual evoked potentials. Clin.Neurophysiol., 110, 86-91.

Rösler, F. (1982). Hirnelektrische Korrelate Kognitiver Prozesse. Berlin Heidelberg New Y-ork: Springer-Verlag.

Rudvin, I., Valberg, A. & Kilavik, B. E. (2000). Visual evoked potentials and magnocellular and parvocellular segregation. Vis.Neurosci., 17, 579-590.

Saper, C. B. (2000). Brain stem modulation of sensation, movement, and consciousness. In E.

R. Kandel, J. H. Schwartz & T. M. Jessell (Eds) Principles of neural science (pp. 889-909).

New York: McGraw-Hill.

Saxe, R., Brett, M. & Kanwisher, N. (2006). Divide and conquer: A defense of functional localizers. Neuroimage, 30, 1088-1096.

Schinkel, N., Pawelzik, K. R. & Ernst, U. A. (2006). Robust integration and detection of noisy contours in a probabilistic neural model. Neurocomputing, 65-66, 211-217.

Schira, M. M., Fahle, M., Donner, T. H., Kraft, A. & Brandt, S. A. (2004). Differential con-tribution of early visual areas to the perceptual process of contour processing.

J.Neurophysiol., 91, 1716-1721.

Literaturverzeichnis

Schmidt, K. E., Goebel, R., Löwel, S. & Singer, W. (1997). The perceptual grouping crite-rion of colinearity is reflected by anisotropies of connections in the primary visual cortex.

Eur.J.Neurosci., 9, 1083-1089.

Schmiedt, C., Brand, A., Hildebrandt, H. & Basar-Eroglu, C. (2005). Event-related theta os-cillations during working memory tasks in patients with schizophrenia and healthy controls.

Brain Res.Cogn Brain Res., 25, 936-947.

Schubö, A., Meinecke, C. & Schröger, E. (2001). Automaticity and attention: investigating automatic processing in texture segmentation with event-related brain potentials. Cogn.Brain Res., 11, 341-361.

Sehatpour, P., Molholm, S., Javitt, D. C. & Foxe, J. J. (2006). Spatiotemporal dynamics of human object recognition processing: an integrated high-density electrical mapping and func-tional imaging study of "closure" processes. Neuroimage, 29, 605-618.

Senkowski, D., Röttger, S., Grimm, S., Foxe, J. J. & Herrmann, C. S. (2005). Kanizsa subjec-tive figures capture visual spatial attention: evidence from electrophysiological and behavioral data. Neuropsychologia, 43, 872-886.

Sereno, M. I., Dale, A. M., Reppas, J. B., Kwong, K. K., Belliveau, J. W., Brady, T. J., Rosen, B. R. & Tootell, R. B. (1995). Borders of multiple visual areas in humans revealed by func-tional magnetic resonance imaging. Science, 268, 889-893.

Shapley, R. & Hawken, M. (2002). Neural mechanisms for color perception in the primary visual cortex. Curr.Opin.Neurobiol., 12, 426-432.

Silverstein, S. M., Hatashita-Wong, M., Schenkel, L. S., Wilkniss, S., Kovacs, I., Feher, A., Smith, T., Goicochea, C., Uhlhaas, P., Carpiniello, K. & Savitz, A. (2006). Reduced top-down influences in contour detection in schizophrenia. Cognit.Neuropsychiatry, 11, 112-132.

Silverstein, S. M., Kovacs, I., Corry, R. & Valone, C. (2000). Perceptual organization, the disorganization syndrome, and context processing in chronic schizophrenia. Schizophr.Res., 43, 11-20.

Skiera, G., Petersen, D., Skalej, M. & Fahle, M. (2000). Correlates of figure-ground segrega-tion in fMRI. Vision Res., 40, 2047-2056.

Skrandies, W. (1993). EEG/EP: new techniques. Brain Topogr., 5, 347-350.

Skrandies, W. (1995). Visual information processing: topography of brain electrical activity.

Biol.Psychol., 40, 1-15.

Smid, H. G., Jakob, A. & Heinze, H.-J. (1999). An event-related brain potential study of vis-ual selective attention to conjunctions of color and shape. Psychophysiology, 36, 264-279.