K Ohki, Y Matsuda, A Ajima, D S Kim, S Tanaka. Cereb Cortex 2000
Times Cited: 32
Times Cited: 32
Times Cited
Times Co-cited
Similarity
Iso-orientation domains in cat visual cortex are arranged in pinwheel-like patterns.
T Bonhoeffer, A Grinvald. Nature 1991
T Bonhoeffer, A Grinvald. Nature 1991
53
Optical imaging of the layout of functional domains in area 17 and across the area 17/18 border in cat visual cortex.
T Bonhoeffer, D S Kim, D Malonek, D Shoham, A Grinvald. Eur J Neurosci 1995
T Bonhoeffer, D S Kim, D Malonek, D Shoham, A Grinvald. Eur J Neurosci 1995
46
Retinotopic organization of areas 18 and 19 in the cat.
R J Tusa, A C Rosenquist, L A Palmer. J Comp Neurol 1979
R J Tusa, A C Rosenquist, L A Palmer. J Comp Neurol 1979
37
Spatial and temporal contrast sensitivity of neurones in areas 17 and 18 of the cat's visual cortex.
J A Movshon, I D Thompson, D J Tolhurst. J Physiol 1978
J A Movshon, I D Thompson, D J Tolhurst. J Physiol 1978
37
An optimization approach to signal extraction from noisy multivariate data.
T Yokoo, B W Knight, L Sirovich. Neuroimage 2001
T Yokoo, B W Knight, L Sirovich. Neuroimage 2001
34
Functional architecture of cortex revealed by optical imaging of intrinsic signals.
A Grinvald, E Lieke, R D Frostig, C D Gilbert, T N Wiesel. Nature 1986
A Grinvald, E Lieke, R D Frostig, C D Gilbert, T N Wiesel. Nature 1986
31
Receptive fields, binocular interaction and functional architecture in the cat's visual cortex.
D H HUBEL, T N WIESEL. J Physiol 1962
D H HUBEL, T N WIESEL. J Physiol 1962
28
28
The retinotopic organization of area 17 (striate cortex) in the cat.
R J Tusa, L A Palmer, A C Rosenquist. J Comp Neurol 1978
R J Tusa, L A Palmer, A C Rosenquist. J Comp Neurol 1978
28
The role of visual experience in the development of columns in cat visual cortex.
M C Crair, D C Gillespie, M P Stryker. Science 1998
M C Crair, D C Gillespie, M P Stryker. Science 1998
25
The layout of iso-orientation domains in area 18 of cat visual cortex: optical imaging reveals a pinwheel-like organization.
T Bonhoeffer, A Grinvald. J Neurosci 1993
T Bonhoeffer, A Grinvald. J Neurosci 1993
25
Voltage-sensitive dyes reveal a modular organization in monkey striate cortex.
G G Blasdel, G Salama. Nature 1986
G G Blasdel, G Salama. Nature 1986
25
Orientation selectivity in pinwheel centers in cat striate cortex.
P E Maldonado, I Gödecke, C M Gray, T Bonhoeffer. Science 1997
P E Maldonado, I Gödecke, C M Gray, T Bonhoeffer. Science 1997
21
A tandem-lens epifluorescence macroscope: hundred-fold brightness advantage for wide-field imaging.
E H Ratzlaff, A Grinvald. J Neurosci Methods 1991
E H Ratzlaff, A Grinvald. J Neurosci Methods 1991
21
Spatial relationships among three columnar systems in cat area 17.
M Hübener, D Shoham, A Grinvald, T Bonhoeffer. J Neurosci 1997
M Hübener, D Shoham, A Grinvald, T Bonhoeffer. J Neurosci 1997
21
Complex objects are represented in macaque inferotemporal cortex by the combination of feature columns.
K Tsunoda, Y Yamane, M Nishizaki, M Tanifuji. Nat Neurosci 2001
K Tsunoda, Y Yamane, M Nishizaki, M Tanifuji. Nat Neurosci 2001
21
Geometrical and topological relationships between multiple functional maps in cat primary visual cortex.
D S Kim, Y Matsuda, K Ohki, A Ajima, S Tanaka. Neuroreport 1999
D S Kim, Y Matsuda, K Ohki, A Ajima, S Tanaka. Neuroreport 1999
18
Orientation selectivity and the arrangement of horizontal connections in tree shrew striate cortex.
W H Bosking, Y Zhang, B Schofield, D Fitzpatrick. J Neurosci 1997
W H Bosking, Y Zhang, B Schofield, D Fitzpatrick. J Neurosci 1997
18
Surface organization of orientation and direction selectivity in cat area 18.
N V Swindale, J A Matsubara, M S Cynader. J Neurosci 1987
N V Swindale, J A Matsubara, M S Cynader. J Neurosci 1987
18
Ocular dominance peaks at pinwheel center singularities of the orientation map in cat visual cortex.
M C Crair, E S Ruthazer, D C Gillespie, M P Stryker. J Neurophysiol 1997
M C Crair, E S Ruthazer, D C Gillespie, M P Stryker. J Neurophysiol 1997
15
Development of orientation preference maps in ferret primary visual cortex.
B Chapman, M P Stryker, T Bonhoeffer. J Neurosci 1996
B Chapman, M P Stryker, T Bonhoeffer. J Neurosci 1996
15
Ferrier lecture. Functional architecture of macaque monkey visual cortex.
D H Hubel, T N Wiesel. Proc R Soc Lond B Biol Sci 1977
D H Hubel, T N Wiesel. Proc R Soc Lond B Biol Sci 1977
15
Columnar specificity of intrinsic horizontal and corticocortical connections in cat visual cortex.
C D Gilbert, T N Wiesel. J Neurosci 1989
C D Gilbert, T N Wiesel. J Neurosci 1989
15
Coexistence of linear zones and pinwheels within orientation maps in cat visual cortex.
A Shmuel, A Grinvald. Proc Natl Acad Sci U S A 2000
A Shmuel, A Grinvald. Proc Natl Acad Sci U S A 2000
15
Relationship between lateral inhibitory connections and the topography of the orientation map in cat visual cortex.
Z F Kisvárday, D S Kim, U T Eysel, T Bonhoeffer. Eur J Neurosci 1994
Z F Kisvárday, D S Kim, U T Eysel, T Bonhoeffer. Eur J Neurosci 1994
15
Representation of the ipsilateral visual field in the transition zone between areas 17 and 18 of the cat's cerebral cortex.
B R Payne. Vis Neurosci 1990
B R Payne. Vis Neurosci 1990
15
Building surfaces from borders in Areas 17 and 18 of the cat.
C P Hung, B M Ramsden, L M Chen, A W Roe. Vision Res 2001
C P Hung, B M Ramsden, L M Chen, A W Roe. Vision Res 2001
15
Mapping multiple features in the population response of visual cortex.
Amit Basole, Leonard E White, David Fitzpatrick. Nature 2003
Amit Basole, Leonard E White, David Fitzpatrick. Nature 2003
15
Influence of experience on orientation maps in cat visual cortex.
F Sengpiel, P Stawinski, T Bonhoeffer. Nat Neurosci 1999
F Sengpiel, P Stawinski, T Bonhoeffer. Nat Neurosci 1999
15
A dimension reduction framework for understanding cortical maps.
R Durbin, G Mitchison. Nature 1990
R Durbin, G Mitchison. Nature 1990
12
Relationship between orientation domains, cytochrome oxidase stripes, and intrinsic horizontal connections in squirrel monkey area V2.
R Malach, R B Tootell, D Malonek. Cereb Cortex 1994
R Malach, R B Tootell, D Malonek. Cereb Cortex 1994
12
Unequal representation of cardinal and oblique contours in ferret visual cortex.
D M Coppola, L E White, D Fitzpatrick, D Purves. Proc Natl Acad Sci U S A 1998
D M Coppola, L E White, D Fitzpatrick, D Purves. Proc Natl Acad Sci U S A 1998
12
Topographic organization of the orientation column system in large flat-mounts of the cat visual cortex: a 2-deoxyglucose study.
S Löwel, B Freeman, W Singer. J Comp Neurol 1987
S Löwel, B Freeman, W Singer. J Comp Neurol 1987
12
Relationship between intrinsic connections and functional architecture revealed by optical imaging and in vivo targeted biocytin injections in primate striate cortex.
R Malach, Y Amir, M Harel, A Grinvald. Proc Natl Acad Sci U S A 1993
R Malach, Y Amir, M Harel, A Grinvald. Proc Natl Acad Sci U S A 1993
12
Optically imaged maps of orientation preference in primary visual cortex of cats and ferrets.
S C Rao, L J Toth, M Sur. J Comp Neurol 1997
S C Rao, L J Toth, M Sur. J Comp Neurol 1997
12
Visual cortex maps are optimized for uniform coverage.
N V Swindale, D Shoham, A Grinvald, T Bonhoeffer, M Hübener. Nat Neurosci 2000
N V Swindale, D Shoham, A Grinvald, T Bonhoeffer, M Hübener. Nat Neurosci 2000
12
Representation of spatial frequency and orientation in the visual cortex.
R M Everson, A K Prashanth, M Gabbay, B W Knight, L Sirovich, E Kaplan. Proc Natl Acad Sci U S A 1998
R M Everson, A K Prashanth, M Gabbay, B W Knight, L Sirovich, E Kaplan. Proc Natl Acad Sci U S A 1998
12
12
Termination patterns of individual X- and Y-cell axons in the visual cortex of the cat: projections to area 18, to the 17/18 border region, and to both areas 17 and 18.
A L Humphrey, M Sur, D J Uhlrich, S M Sherman. J Comp Neurol 1985
A L Humphrey, M Sur, D J Uhlrich, S M Sherman. J Comp Neurol 1985
12
Functional organization of the cortical 17/18 border region in the cat.
Y C Diao, W G Jia, N V Swindale, M S Cynader. Exp Brain Res 1990
Y C Diao, W G Jia, N V Swindale, M S Cynader. Exp Brain Res 1990
12
Some quantitative aspects of the cat's eye: axis and plane of reference, visual field co-ordinates and optics.
P O BISHOP, W KOZAK, G J VAKKUR. J Physiol 1962
P O BISHOP, W KOZAK, G J VAKKUR. J Physiol 1962
12
Laminar patterns of geniculocortical projection in the cat.
S LeVay, C D Gilbert. Brain Res 1976
S LeVay, C D Gilbert. Brain Res 1976
12
Functional organization for direction of motion and its relationship to orientation maps in cat area 18.
A Shmuel, A Grinvald. J Neurosci 1996
A Shmuel, A Grinvald. J Neurosci 1996
12
Orientation maps of subjective contours in visual cortex.
B R Sheth, J Sharma, S C Rao, M Sur. Science 1996
B R Sheth, J Sharma, S C Rao, M Sur. Science 1996
12
Real and illusory contour processing in area V1 of the primate: a cortical balancing act.
B M Ramsden, C P Hung, A W Roe. Cereb Cortex 2001
B M Ramsden, C P Hung, A W Roe. Cereb Cortex 2001
12
Roles of visual experience and intrinsic mechanism in the activity-dependent self-organization of orientation maps: theory and experiment.
Shigeru Tanaka, Masanobu Miyashita, Jérôme Ribot. Neural Netw 2004
Shigeru Tanaka, Masanobu Miyashita, Jérôme Ribot. Neural Netw 2004
30
Functional topography of single cortical cells: an intracellular approach combined with optical imaging.
P Buzás, U T Eysel, Z F Kisvárday. Brain Res Brain Res Protoc 1998
P Buzás, U T Eysel, Z F Kisvárday. Brain Res Brain Res Protoc 1998
12
Orientation topography of layer 4 lateral networks revealed by optical imaging in cat visual cortex (area 18).
T Yousef, T Bonhoeffer, D S Kim, U T Eysel, E Tóth, Z F Kisvárday. Eur J Neurosci 1999
T Yousef, T Bonhoeffer, D S Kim, U T Eysel, E Tóth, Z F Kisvárday. Eur J Neurosci 1999
12
Layout of transcallosal activity in cat visual cortex revealed by optical imaging.
N L Rochefort, P Buzás, Z F Kisvárday, U T Eysel, C Milleret. Neuroimage 2007
N L Rochefort, P Buzás, Z F Kisvárday, U T Eysel, C Milleret. Neuroimage 2007
18
Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.