Beardsley SA, Vaina LM. (2005). How can a patient blind to radial motion discriminate shifts in the center-of-motion? Journal of computational neuroscience. 18 [PubMed]

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References and models cited by this paper

Albright TD, Stoner GR. (1995). Visual motion perception. Proceedings of the National Academy of Sciences of the United States of America. 92 [PubMed]

Andersen RA. (1997). Neural mechanisms of visual motion perception in primates. Neuron. 18 [PubMed]

Anderson KC, Siegel RM. (1999). Optic flow selectivity in the anterior superior temporal polysensory area, STPa, of the behaving monkey. The Journal of neuroscience : the official journal of the Society for Neuroscience. 19 [PubMed]

Beintema JA, van den Berg AV. (1998). Heading detection using motion templates and eye velocity gain fields. Vision research. 38 [PubMed]

Bevington PR. (1969). Data Reduction And Error Analysis For The Physical Sciences.

Bex PJ, Makous W. (1997). Radial motion looks faster. Vision research. 37 [PubMed]

Bremmer F, Duhamel JR, Ben Hamed S, Graf W. (2002). Heading encoding in the macaque ventral intraparietal area (VIP). The European journal of neuroscience. 16 [PubMed]

Bruss AR, Horn BKP. (1983). Passive navigation Comp Vis Graph Image Proc. 21

Burr DC, Morrone MC, Vaina LM. (1998). Large receptive fields for optic flow detection in humans. Vision research. 38 [PubMed]

Cameron S, Grossberg S, Guenther FH. (1998). A self-organizing neural network architecture for navigation using optic flow. Neural computation. 10 [PubMed]

Cavalleri P, Sabatini SP, Solari F, Bisio GM. (2003). Centric-minded templates for self-motion perception. Vision research. 43 [PubMed]

Clifford CW, Beardsley SA, Vaina LM. (1999). The perception and discrimination of speed in complex motion. Vision research. 39 [PubMed]

Cornilleau-Pérès V, Gielen CC. (1996). Interactions between self-motion and depth perception in the processing of optic flow. Trends in neurosciences. 19 [PubMed]

Duffy CJ, Wurtz RH. (1991). Sensitivity of MST neurons to optic flow stimuli. I. A continuum of response selectivity to large-field stimuli. Journal of neurophysiology. 65 [PubMed]

Duffy CJ, Wurtz RH. (1995). Response of monkey MST neurons to optic flow stimuli with shifted centers of motion. The Journal of neuroscience : the official journal of the Society for Neuroscience. 15 [PubMed]

Freeman TC, Harris MG. (1992). Human sensitivity to expanding and rotating motion: effects of complementary masking and directional structure. Vision research. 32 [PubMed]

Geesaman BJ, Andersen RA. (1996). The analysis of complex motion patterns by form/cue invariant MSTd neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 16 [PubMed]

Gibson JJ. (1950). The Perception of the visual world.

Graziano MS, Andersen RA, Snowden RJ. (1994). Tuning of MST neurons to spiral motions. The Journal of neuroscience : the official journal of the Society for Neuroscience. 14 [PubMed]

Hatsopoulos N, Warren WJ. (1991). Visual navigation with a neural network Neural Network. 4

Hummel R, Sundareswaran V. (1993). Motion parameter estimationfrom global flow field data IEEE Trans Pat Anal Mach Intel. 15

Lappe M, Beintema JA, van den Berg AV. (2002). Receptive field structure of flow detectors for heading perception Advances in Neural Information Processing Systems. 14

Lappe M, Beintema JA, van den Berg AV. (2004). Circular receptivefield structures for flow analysis and heading detection Optic Flow and Beyond.

Lappe M, Rauschecker JP. (1995). Motion anisotropies and heading detection. Biological cybernetics. 72 [PubMed]

Longuet-Higgins HC, Prazdny K. (1980). The interpretation of a moving retinal image. Proceedings of the Royal Society of London. Series B, Biological sciences. 208 [PubMed]

Meese TS, Anderson SJ. (2002). Spiral mechanisms are required to account for summation of complex motion components. Vision research. 42 [PubMed]

Morrone MC, Burr DC, Vaina LM. (1995). Two stages of visual processing for radial and circular motion. Nature. 376 [PubMed]

Morrone MC et al. (2000). A cortical area that responds specifically to optic flow, revealed by fMRI. Nature neuroscience. 3 [PubMed]

Perrone JA. (1992). Model for the computation of self-motion in biological systems. Journal of the Optical Society of America. A, Optics and image science. 9 [PubMed]

Perrone JA, Stone LS. (1994). A model of self-motion estimation within primate extrastriate visual cortex. Vision research. 34 [PubMed]

Rauschecker JP, Lappe M. (1993). A neural network for the processing of optic flow from ego-motion in man and higher mammals Neural Comp. 5

Rieger JH, Lawton DT. (1985). Processing differential image motion. Journal of the Optical Society of America. A, Optics and image science. 2 [PubMed]

Schaafsma SJ, Duysens J. (1996). Neurons in the ventral intraparietal area of awake macaque monkey closely resemble neurons in the dorsal part of the medial superior temporal area in their responses to optic flow patterns. Journal of neurophysiology. 76 [PubMed]

Siegel RM, Read HL. (1997). Analysis of optic flow in the monkey parietal area 7a. Cerebral cortex (New York, N.Y. : 1991). 7 [PubMed]

Snowden RJ, Milne AB. (1996). The effects of adapting to complex motions: Position invariance and tuning to spiral motions J Cog Neurosci. 8

Sundareswaran V. (1992). A fast method to estimate sensor translation Computer Vision ECCV 92 Second European Converence On Computer Vision.

Vaina LM. (1998). Complex motion perception and its deficits. Current opinion in neurobiology. 8 [PubMed]

Vaina LM, Rushton SK. (2000). What neurological patients tell us about the use of optic flow. International review of neurobiology. 44 [PubMed]

Warren WH, Morris MW, Kalish M. (1988). Perception of translational heading from optical flow. Journal of experimental psychology. Human perception and performance. 14 [PubMed]

Zemel RS, Sejnowski TJ. (1998). A model for encoding multiple object motions and self-motion in area MST of primate visual cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 18 [PubMed]

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