Response of MSTd neurons to simulated 3D orientation of rotating planes.
about
Sensitivity of human visual cortical area V6 to stereoscopic depth gradients associated with self-motionNeural computations underlying depth perceptionSpatial stereoresolution for depth corrugations may be set in primary visual cortex.Discerning nonrigid 3D shapes from motion cues.Representation of 3-D surface orientation by velocity and disparity gradient cues in area MT.Relative luminance and binocular disparity preferences are correlated in macaque primary visual cortex, matching natural scene statistics.Integration of texture and disparity cues to surface slant in dorsal visual cortex.Higher order visual processing in macaque extrastriate cortex.MEG-fMRI integration to visualize brain dynamics while perceiving 3-D object shape from motionDynamic cortical activity during the perception of three-dimensional object shape from two-dimensional random-dot motionThe visual representation of 3D object orientation in parietal cortex.Cortical area MSTd combines visual cues to represent 3-D self-movement.
P2860
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P2860
Response of MSTd neurons to simulated 3D orientation of rotating planes.
description
2002 nî lūn-bûn
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2002年の論文
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2002年学术文章
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name
Response of MSTd neurons to simulated 3D orientation of rotating planes.
@en
Response of MSTd neurons to simulated 3D orientation of rotating planes.
@nl
type
label
Response of MSTd neurons to simulated 3D orientation of rotating planes.
@en
Response of MSTd neurons to simulated 3D orientation of rotating planes.
@nl
prefLabel
Response of MSTd neurons to simulated 3D orientation of rotating planes.
@en
Response of MSTd neurons to simulated 3D orientation of rotating planes.
@nl
P2093
P2860
P356
P1476
Response of MSTd neurons to simulated 3D orientation of rotating planes.
@en
P2093
Hidehiko Komatsu
Hiroki Sugihara
Ikuya Murakami
Krishna V Shenoy
Richard A Andersen
P2860
P304
P356
10.1152/JN.00900.2000
P407
P577
2002-01-01T00:00:00Z