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chand's library [73 articles]

Recent papers added to chand's library.
  • notes The neuronal representation of pitch in primate auditory cortex
    Nature, Vol. 436, No. 7054., pp. 1161-1165.
    by Daniel Bendor, Xiaoqin Wang
  • Cortical area MT and the perception of stereoscopic depth
    Nature, Vol. 394, No. 6694. (1998), pp. 677-680.
    by Gregory C Deangelis, Bruce G Cumming, William T Newsome
    posted to disparity neuroscience stereopis by chand on 2005-11-24 16:59:16 as *** along with 1 person balicea
  • notes Neuronal adaptation to visual motion in area MT of the macaque.
    Neuron, Vol. 39, No. 4. (14 August 2003), pp. 681-691.
    by A Kohn, JA Movshon
    posted to no-tag by chand on 2005-11-21 13:44:12 as read along with 2 people bhamcnil fcalabro
  • Response suppression in v1 agrees with psychophysics of surround masking.
    J Neurosci, Vol. 23, No. 17. (Jul 2003), pp. 6884-93.
    by Barbara Z Landolt, David J Heeger
  • notes Extracting 3D from motion: differences in human and monkey intraparietal cortex.
    Science, Vol. 298, No. 5592. (Oct 2002), pp. 413-5.
    by W Vanduffel, D Fize, H Peuskens, K Denys, S Sunaert, JT Todd, GA Orban
  • Binocular vision: an orientation to disparity coding.
    Curr Biol, Vol. 12, No. 22. (Nov 2002), pp. R764-6.
    by Takanori Uka, Gregory C Deangelis
  • Contribution of middle temporal area to coarse depth discrimination: comparison of neuronal and psychophysical sensitivity.
    J Neurosci, Vol. 23, No. 8. (Apr 2003), pp. 3515-30.
    by Takanori Uka, Gregory C Deangelis
  • notes Contribution of area MT to stereoscopic depth perception: choice-related response modulations reflect task strategy.
    Neuron, Vol. 42, No. 2. (Apr 2004), pp. 297-310.
    by Takanori Uka, Gregory C Deangelis
  • notes Stereopsis activates V3A and caudal intraparietal areas in macaques and humans.
    Neuron, Vol. 39, No. 3. (2003), pp. 555-68.
    by Doris Y Tsao, Wim Vanduffel, Yuka Sasaki, Denis Fize, Tamara A Knutsen, Joseph B Mandeville, Lawrence L Wald, Anders M Dale, Bruce R Rosen, David C Van Essen, Margaret S Livingstone, Guy A Orban, Roger BH Tootell
  • A specialization for relative disparity in V2.
    Nat Neurosci, Vol. 5, No. 5. (May 2002), pp. 472-8.
    by OM Thomas, BG Cumming, AJ Parker
  • Rejection of false matches for binocular correspondence in macaque visual cortical area V4.
    J Neurosci, Vol. 24, No. 37. (Sep 2004), pp. 8170-80.
    by Seiji Tanabe, Kazumasa Umeda, Ichiro Fujita
  • Single-unit activity in cortical area MST associated with disparity-vergence eye movements: evidence for population coding.
    J Neurophysiol, Vol. 85, No. 5. (May 2001), pp. 2245-66.
    by Takemura, Y Inoue, K Kawano, C Quaia, FA Miles
  • notes Parietal neurons represent surface orientation from the gradient of binocular disparity.
    J Neurophysiol, Vol. 83, No. 5. (May 2000), pp. 3140-6.
    by M Taira, KI Tsutsui, M Jiang, K Yara, H Sakata
  • Motion-responsive regions of the human brain.
    Exp Brain Res, Vol. 127, No. 4. (Aug 1999), pp. 355-70.
  • Selectivity of the parietal visual neurones in 3D orientation of surface of stereoscopic stimuli.
    Neuroreport, Vol. 7, No. 14. (Oct 1996), pp. 2389-94.
  • Borders of multiple visual areas in humans revealed by functional magnetic resonance imaging.
    Science, Vol. 268, No. 5212. (May 1995), pp. 889-93.
    by MI Sereno, AM Dale, JB Reppas, KK Kwong, JW Belliveau, TJ Brady, BR Rosen, RB Tootell
  • Symmetry activates extrastriate visual cortex in human and nonhuman primates.
    Proc Natl Acad Sci U S A, Vol. 102, No. 8. (Feb 2005), pp. 3159-63.
    by Yuka Sasaki, Wim Vanduffel, Tamara Knutsen, Christopher Tyler, Roger Tootell
  • Connections between anterior inferotemporal cortex and superior temporal sulcus regions in the macaque monkey.
    J Neurosci, Vol. 20, No. 13. (Jul 2000), pp. 5083-101.
    by KS Saleem, W Suzuki, K Tanaka, T Hashikawa
  • Disparity sensitivity of neurons in monkey extrastriate area MST.
    J Neurosci, Vol. 12, No. 7. (Jul 1992), pp. 2478-92.
    by JP Roy, H Komatsu, RH Wurtz
  • Understanding the cortical specialization for horizontal disparity.
    Neural Comput, Vol. 16, No. 10. (Oct 2004), pp. 1983-2020.
    by Jenny CA Read, Bruce G Cumming
  • Cells selective to binocular disparity in the cortex of newborn lambs.
    Nature, Vol. 268, No. 5618. (Jul 1977), pp. 333-5.
  • Neural population code for fine perceptual decisions in area MT.
    Nat Neurosci, Vol. 8, No. 1. (Jan 2005), pp. 99-106.
    by Gopathy Purushothaman, David C Bradley
  • The precision of single neuron responses in cortical area V1 during stereoscopic depth judgments.
    J Neurosci, Vol. 20, No. 9. (May 2000), pp. 3387-400.
    by SJ Prince, AD Pointon, BG Cumming, AJ Parker
  • Stereoscopic mechanisms in monkey visual cortex: binocular correlation and disparity selectivity.
    J Neurosci, Vol. 8, No. 12. (Dec 1988), pp. 4531-50.
    by GF Poggio, F Gonzalez, F Krause
  • Binocular interaction on single units in cat striate cortex: simultaneous stimulation by single moving slit with receptive fields in correspondence.
    Exp Brain Res, Vol. 6, No. 4. (1968), pp. 391-410.
    by JD Pettigrew, T Nikara, PO Bishop
  • Vision science: photons to phenomenology
    (1999)
    by Stephen E Palmer
    posted to bibtex-import by chand on 2005-11-14 09:41:08 as **
  • Human cortical regions involved in extracting depth from motion.
    Neuron, Vol. 24, No. 4. (Dec 1999), pp. 929-40.
    by GA Orban, S Sunaert, JT Todd, P Van Hecke, G Marchal
  • The kinetic occipital (KO) region in man: an fMRI study.
    Cereb Cortex, Vol. 7, No. 7. (1997), pp. 690-701.
  • Analysis of retinal correspondence by studying receptive fields of binocular single units in cat striate cortex.
    Exp Brain Res, Vol. 6, No. 4. (1968), pp. 353-72.
    by T Nikara, PO Bishop, JD Pettigrew
  • Disparity-based coding of three-dimensional surface orientation by macaque middle temporal neurons.
    J Neurosci, Vol. 23, No. 18. (Aug 2003), pp. 7117-28.
    by Jerry D Nguyenkim, Gregory C Deangelis
  • A stereoscopic look at visual cortex.
    J Neurophysiol, Vol. 93, No. 4. (Apr 2005), pp. 1823-6.
    by Peter Neri
    posted to 15774707 animals cortex depth humans perception visual bibtex-import by chand on 2005-11-14 09:41:08 as **
  • The representation of illusory and real contours in human cortical visual areas revealed by functional magnetic resonance imaging.
    J Neurosci, Vol. 19, No. 19. (Oct 1999), pp. 8560-72.
    by JD Mendola, AM Dale, B Fischl, AK Liu, RB Tootell
  • Functional properties of neurons in middle temporal visual area of the macaque monkey. II. Binocular interactions and sensitivity to binocular disparity.
    J Neurophysiol, Vol. 49, No. 5. (May 1983), pp. 1148-67.
  • Functional properties of neurons in middle temporal visual area of the macaque monkey. I. Selectivity for stimulus direction, speed, and orientation.
    J Neurophysiol, Vol. 49, No. 5. (May 1983), pp. 1127-47.
  • Integration of local features into global shapes: monkey and human FMRI studies.
    Neuron, Vol. 37, No. 2. (Jan 2003), pp. 333-46.
    by Zoe Kourtzi, Andreas S Tolias, Christian F Altmann, Mark Augath, Nikos K Logothetis
  • Representation of perceived object shape by the human lateral occipital complex.
    Science, Vol. 293, No. 5534. (Aug 2001), pp. 1506-9.
  • Geometry of binocular vision and a model for stereopsis.
    Biol Cybern, Vol. 21, No. 1. (Jan 1976), pp. 29-35.
    posted to 1244864 biological depth humans models perception vision bibtex-import by chand on 2005-11-14 09:41:07 as **
  • At least at the level of inferior temporal cortex, the stereo correspondence problem is solved.
    Neuron, Vol. 37, No. 4. (Feb 2003), pp. 693-701.
    by Peter Janssen, Rufin Vogels, Yan Liu, Guy A Orban
  • Macaque inferior temporal neurons are selective for disparity-defined three-dimensional shapes.
    Proc Natl Acad Sci U S A, Vol. 96, No. 14. (Jul 1999), pp. 8217-22.
    by P Janssen, R Vogels, GA Orban
  • Three-dimensional shape coding in inferior temporal cortex.
    Neuron, Vol. 27, No. 2. (Aug 2000), pp. 385-97.
    by P Janssen, R Vogels, GA Orban
  • Differential effects of viewpoint on object-driven activation in dorsal and ventral streams.
    Neuron, Vol. 35, No. 4. (Aug 2002), pp. 793-801.
    by Thomas W James, Keith G Humphrey, Joseph S Gati, Ravi S Menon, Melvyn A Goodale
  • Retinotopy and functional subdivision of human areas MT and MST.
    J Neurosci, Vol. 22, No. 16. (Aug 2002), pp. 7195-205.
    by Alexander C Huk, Robert F Dougherty, David J Heeger
  • Stereoscopic vision in macaque monkey. Cells sensitive to binocular depth in area 18 of the macaque monkey cortex.
    Nature, Vol. 225, No. 5227. (Jan 1970), pp. 41-2.
    by DH Hubel, TN Wiesel
  • Seeing in Depth:- Depth Perception
    Vol. 2 (2002)
    by IP Howard, BJ Rogers
    posted to bibtex-import by chand on 2005-11-14 09:41:07 as **
  • Representation of stereoscopic edges in monkey visual cortex.
    Vision Res, Vol. 40, No. 15. (2000), pp. 1955-67.
  • Disparity sensitivity and receptive field incongruity of units in the cat striate cortex.
    Exp Brain Res, Vol. 31, No. 4. (Apr 1978), pp. 523-45.
  • Role of Primate Visual Area V4 in the Processing of 3-D Shape Characteristics Defined by Disparity.
    J Neurophysiol (Jun 2005), pp. 2-5.
    by Jay Hegde, David C Van Essen
    posted to 15987759 bibtex-import by chand on 2005-11-14 09:41:07 as **
  • Differential processing of objects under various viewing conditions in the human lateral occipital complex.
    Neuron, Vol. 24, No. 1. (Sep 1999), pp. 187-203.
    by Grill K Spector, T Kushnir, S Edelman, G Avidan, Y Itzchak, R Malach
  • Neural mechanisms underlying stereoscopic vision.
    Prog Neurobiol, Vol. 55, No. 3. (Jun 1998), pp. 191-224.
    by F Gonzalez, R Perez
  • .Sensation and Perception
    (2002)
    by EB Goldstein
    posted to bibtex-import by chand on 2005-11-14 09:41:06 as **
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