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Rafael Malach
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Anatomy
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Network (preview)
18
Hendler, Talma
15
Harel, Michal
14
Hasson, Uri
8
Levy, Ifat
7
Mukamel, Roy
7
Nir, Yuval
7
Avidan, Galia
6
Grill-Spector, Kalanit
6
Fried, Itzhak
6
Zohary, Ehud
6
Lerner, Yulia
5
Tootell, Roger
5
Kushnir, Talma
5
Ben-Bashat, Dafna
4
Bentin, Shlomo
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Geonetwork of Rafael Malach (preview)
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All Publications
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2009: Gilaie-Dotan Sharon; Perry Anat; Bonneh Yoram; Malach Rafael; Bentin Shlomo
Seeing with profoundly deactivated mid-level visual areas: non-hierarchical functioning in the human visual cortex.
Cerebral cortex (New York, N.Y. : 1991) 2009;19(7):1687-703.
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2009: Salomon Roy; Malach Rafael; Lamy Dominique
Involvement of the intrinsic/default system in movement-related self recognition.
PloS one 2009;4(10):e7527.
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2008: Ben Bashat Dafna; Sivan Ida; Ziv Michal; Aizenstein Orna; Pianka Pazit; Malach Rafael; Graif Moshe; Hendler Talma; Navon Gil
T1-weighted functional imaging based on a contrast agent in presurgical mapping.
Journal of magnetic resonance imaging : JMRI 2008;28(5):1245-50.
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2008: Motes Michael A; Malach Rafael; Kozhevnikov Maria
Object-processing neural efficiency differentiates object from spatial visualizers.
Neuroreport 2008;19(17):1727-31.
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2008: Gelbard-Sagiv Hagar; Mukamel Roy; Harel Michal; Malach Rafael; Fried Itzhak
Internally generated reactivation of single neurons in human hippocampus during free recall.
Science (New York, N.Y.) 2008;322(5898):96-101.
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2008: Nir Yuval; Mukamel Roy; Dinstein Ilan; Privman Eran; Harel Michal; Fisch Lior; Gelbard-Sagiv Hagar; Kipervasser Svetlana; Andelman Fani; Neufeld Miri Y; Kramer Uri; Arieli Amos; Fried Itzhak; Malach Rafael
Interhemispheric correlations of slow spontaneous neuronal fluctuations revealed in human sensory cortex.
Nature neuroscience 2008;11(9):1100-8.
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2008: Goldberg Ilan; Ullman Shimon; Malach Rafael
Neuronal correlates of "free will" are associated with regional specialization in the human intrinsic/default network.
Consciousness and cognition 2008;17(3):587-601.
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2008: Lerner Yulia; Epshtein Boris; Ullman Shimon; Malach Rafael
Class information predicts activation by object fragments in human object areas.
Journal of cognitive neuroscience 2008;20(7):1189-206.
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2008: Nir Yuval; Dinstein Ilan; Malach Rafael; Heeger David J
BOLD and spiking activity.
Nature neuroscience 2008;11(5):523-4; author reply 524.
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2008: Gilaie-Dotan Sharon; Nir Yuval; Malach Rafael
Regionally-specific adaptation dynamics in human object areas.
NeuroImage 2008;39(4):1926-37.
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2008: Bitterman Y; Mukamel R; Malach R; Fried I; Nelken I
Ultra-fine frequency tuning revealed in single neurons of human auditory cortex.
Nature 2008;451(7175):197-201.
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2008: Golland Yulia; Golland Polina; Bentin Shlomo; Malach Rafael
Data-driven clustering reveals a fundamental subdivision of the human cortex into two global systems.
Neuropsychologia 2008;46(2):540-53.
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2007: Heller Ruth; Golland Yulia; Malach Rafael; Benjamini Yoav
Conjunction group analysis: an alternative to mixed/random effect analysis.
NeuroImage 2007;37(4):1178-85.
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2007: Deouell Leon Y; Heller Aaron S; Malach Rafael; D'Esposito Mark; Knight Robert T
Cerebral responses to change in spatial location of unattended sounds.
Neuron 2007;55(6):985-96.
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2007: Nir Yuval; Fisch Lior; Mukamel Roy; Gelbard-Sagiv Hagar; Arieli Amos; Fried Itzhak; Malach Rafael
Coupling between neuronal firing rate, gamma LFP, and BOLD fMRI is related to interneuronal correlations.
Current biology : CB 2007;17(15):1275-85.
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2007: Privman Eran; Nir Yuval; Kramer Uri; Kipervasser Svetlana; Andelman Fani; Neufeld Miri Y; Mukamel Roy; Yeshurun Yehezkel; Fried Itzhak; Malach Rafael
Enhanced category tuning revealed by intracranial electroencephalograms in high-order human visual areas.
The Journal of neuroscience : the official journal of the Society for Neuroscience 2007;27(23):6234-42.
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2007: Golland Yulia; Bentin Shlomo; Gelbard Hagar; Benjamini Yoav; Heller Ruth; Nir Yuval; Hasson Uri; Malach Rafael
Extrinsic and intrinsic systems in the posterior cortex of the human brain revealed during natural sensory stimulation.
Cerebral cortex (New York, N.Y. : 1991) 2007;17(4):766-77.
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2007: Gilaie-Dotan Sharon; Malach Rafael
Sub-exemplar shape tuning in human face-related areas.
Cerebral cortex (New York, N.Y. : 1991) 2007;17(2):325-38.
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2007: Golland Polina; Golland Yulia; Malach Rafael
Detection of spatial activation patterns as unsupervised segmentation of fMRI data.
Medical image computing and computer-assisted intervention : MICCAI ... International Conference on Medical Image Computing and Computer-Assisted Intervention 2007;10(Pt 1):110-8.
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2006: Lerner Y; Hendler T; Malach R; Harel M; Leiba H; Stolovitch C; Pianka P
Selective fovea-related deprived activation in retinotopic and high-order visual cortex of human amblyopes.
NeuroImage 2006;33(1):169-79.
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2006: Nir Yuval; Hasson Uri; Levy Ifat; Yeshurun Yehezkel; Malach Rafael
Widespread functional connectivity and fMRI fluctuations in human visual cortex in the absence of visual stimulation.
NeuroImage 2006;30(4):1313-24.
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2006: Goldberg Ilan I; Harel Michal; Malach Rafael
When the brain loses its self: prefrontal inactivation during sensorimotor processing.
Neuron 2006;50(2):329-39.
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2006: Hasson Uri; Malach Rafael
Human brain activation during viewing of dynamic natural scenes.
Novartis Foundation symposium 2006;270():203-12; discussion 212-6, 232-7.
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2005: Amedi Amir; Malach Rafael; Pascual-Leone Alvaro
Negative BOLD differentiates visual imagery and perception.
Neuron 2005;48(5):859-72.
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2005: Mukamel Roy; Gelbard Hagar; Arieli Amos; Hasson Uri; Fried Itzhak; Malach Rafael
Coupling between neuronal firing, field potentials, and FMRI in human auditory cortex.
Science (New York, N.Y.) 2005;309(5736):951-4.
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2005: Avidan Galia; Hasson Uri; Malach Rafael; Behrmann Marlene
Detailed exploration of face-related processing in congenital prosopagnosia: 2. Functional neuroimaging findings.
Journal of cognitive neuroscience 2005;17(7):1150-67.
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2005: Goldstein Michaela; Loewenstein Anat; Barak Adiel; Pollack Ayala; Bukelman Amir; Katz Haia; Springer Amira; Schachat Andrew P; Bressler Neil M; Bressler Susan B; Cooney Michael J; Alster Yair; Rafaeli Omer; Malach Rafael;
Results of a multicenter clinical trial to evaluate the preferential hyperacuity perimeter for detection of age-related macular degeneration.
Retina (Philadelphia, Pa.) 2005;25(3):296-303.
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2005: Shmuel Amir; Korman Maria; Sterkin Anna; Harel Michal; Ullman Shimon; Malach Rafael; Grinvald Amiram
Retinotopic axis specificity and selective clustering of feedback projections from V2 to V1 in the owl monkey.
The Journal of neuroscience : the official journal of the Society for Neuroscience 2005;25(8):2117-31.
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2004: Levy Ifat; Hasson Uri; Malach Rafael
One picture is worth at least a million neurons.
Current biology : CB 2004;14(11):996-1001.
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2004: Levy Ifat; Hasson Uri; Harel Michal; Malach Rafael
Functional analysis of the periphery effect in human building related areas.
Human brain mapping 2004;22(1):15-26.
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2004: Mukamel Roy; Harel Michal; Hendler Talma; Malach Rafael
Enhanced temporal non-linearities in human object-related occipito-temporal cortex.
Cerebral cortex (New York, N.Y. : 1991) 2004;14(5):575-85.
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2004: Hasson Uri; Nir Yuval; Levy Ifat; Fuhrmann Galit; Malach Rafael
Intersubject synchronization of cortical activity during natural vision.
Science (New York, N.Y.) 2004;303(5664):1634-40.
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2004: Lerner Yulia; Harel Michal; Malach Rafael
Rapid completion effects in human high-order visual areas.
NeuroImage 2004;21(2):516-26.
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2004: Grill-Spector Kalanit; Malach Rafael
The human visual cortex.
Annual review of neuroscience 2004;27():649-77.
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2003: Lerner Y; Pianka P; Azmon B; Leiba H; Stolovitch C; Loewenstein A; Harel M; Hendler T; Malach R
Area-specific amblyopic effects in human occipitotemporal object representations.
Neuron 2003;40(5):1023-9.
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2003: Hendler Talma; Rotshtein Pia; Yeshurun Yaara; Weizmann Tal; Kahn Itamar; Ben-Bashat Dafna; Malach Rafael; Bleich Avi
Sensing the invisible: differential sensitivity of visual cortex and amygdala to traumatic context.
NeuroImage 2003;19(3):587-600.
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2003: Amedi Amir; Raz Noa; Pianka Pazit; Malach Rafael; Zohary Ehud
Early 'visual' cortex activation correlates with superior verbal memory performance in the blind.
Nature neuroscience 2003;6(7):758-66.
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2003: Avidan Galia; Levy Ifat; Hendler Talma; Zohary Ehud; Malach Rafael
Spatial vs. object specific attention in high-order visual areas.
NeuroImage 2003;19(2 Pt 1):308-18.
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2003: Loewenstein Anat; Malach Rafael; Goldstein Michaela; Leibovitch Igal; Barak Adiel; Baruch Eli; Alster Yair; Rafaeli Omer; Avni Isaac; Yassur Yuval
Replacing the Amsler grid: a new method for monitoring patients with age-related macular degeneration.
Ophthalmology 2003;110(5):966-70.
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2003: Hasson Uri; Avidan Galia; Deouell Leon Y; Bentin Shlomo; Malach Rafael
Face-selective activation in a congenital prosopagnosic subject.
Journal of cognitive neuroscience 2003;15(3):419-31.
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2003: Hasson Uri; Harel Michal; Levy Ifat; Malach Rafael
Large-scale mirror-symmetry organization of human occipito-temporal object areas.
Neuron 2003;37(6):1027-41.
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2002: Amedi Amir; Jacobson Gilad; Hendler Talma; Malach Rafael; Zohary Ehud
Convergence of visual and tactile shape processing in the human lateral occipital complex.
Cerebral cortex (New York, N.Y. : 1991) 2002;12(11):1202-12.
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2002: Avidan Galia; Hasson Uri; Hendler Talma; Zohary Ehud; Malach Rafael
Analysis of the neuronal selectivity underlying low fMRI signals.
Current biology : CB 2002;12(12):964-72.
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2002: Avidan Galia; Harel Michal; Hendler Talma; Ben-Bashat Dafna; Zohary Ehud; Malach Rafael
Contrast sensitivity in human visual areas and its relationship to object recognition.
Journal of neurophysiology 2002;87(6):3102-16.
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2002: Hasson Uri; Levy Ifat; Behrmann Marlene; Hendler Talma; Malach Rafael
Eccentricity bias as an organizing principle for human high-order object areas.
Neuron 2002;34(3):479-90.
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2002: Gilaie-Dotan Sharon; Ullman Shimon; Kushnir Tammar; Malach Rafael
Shape-selective stereo processing in human object-related visual areas.
Human brain mapping 2002;15(2):67-79.
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2002: Lerner Y; Hendler T; Malach R
Object-completion effects in the human lateral occipital complex.
Cerebral cortex (New York, N.Y. : 1991) 2002;12(2):163-77.
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2001: Rotshtein P; Malach R; Hadar U; Graif M; Hendler T
Feeling or features: different sensitivity to emotion in high-order visual cortex and amygdala.
Neuron 2001;32(4):747-57.
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2001: Hasson U; Hendler T; Ben Bashat D; Malach R
Vase or face? A neural correlate of shape-selective grouping processes in the human brain.
Journal of cognitive neuroscience 2001;13(6):744-53.
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2001: Levy I; Hasson U; Avidan G; Hendler T; Malach R
Center-periphery organization of human object areas.
Nature neuroscience 2001;4(5):533-9.
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2001: Grill-Spector K; Malach R
fMR-adaptation: a tool for studying the functional properties of human cortical neurons.
Acta psychologica 2001;107(1-3):293-321.
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2001: Lerner Y; Hendler T; Ben-Bashat D; Harel M; Malach R
A hierarchical axis of object processing stages in the human visual cortex.
Cerebral cortex (New York, N.Y. : 1991) 2001;11(4):287-97.
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2001: Amedi A; Malach R; Hendler T; Peled S; Zohary E
Visuo-haptic object-related activation in the ventral visual pathway.
Nature neuroscience 2001;4(3):324-30.
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2000: Grill-Spector K; Kushnir T; Hendler T; Malach R
The dynamics of object-selective activation correlate with recognition performance in humans.
Nature neuroscience 2000;3(8):837-43.
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1999: Grill-Spector K; Kushnir T; Edelman S; Avidan G; Itzchak Y; Malach R
Differential processing of objects under various viewing conditions in the human lateral occipital complex.
Neuron 1999;24(1):187-203.
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1998: Grill-Spector K; Kushnir T; Edelman S; Itzchak Y; Malach R
Cue-invariant activation in object-related areas of the human occipital lobe.
Neuron 1998;21(1):191-202.
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1998: Grill-Spector K; Kushnir T; Hendler T; Edelman S; Itzchak Y; Malach R
A sequence of object-processing stages revealed by fMRI in the human occipital lobe.
Human brain mapping 1998;6(4):316-28.
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1997: Malach R; Schirman T D; Harel M; Tootell R B; Malonek D
Organization of intrinsic connections in owl monkey area MT.
Cerebral cortex (New York, N.Y. : 1991) 1997;7(4):386-93.
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1996: Tootell R B; Dale A M; Sereno M I; Malach R
New images from human visual cortex.
Trends in neurosciences 1996;19(11):481-9.
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1995: Malach R; Reppas J B; Benson R R; Kwong K K; Jiang H; Kennedy W A; Ledden P J; Brady T J; Rosen B R; Tootell R B
Object-related activity revealed by functional magnetic resonance imaging in human occipital cortex.
Proceedings of the National Academy of Sciences of the United States of America 1995;92(18):8135-9.
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1995: Tootell R B; Reppas J B; Dale A M; Look R B; Sereno M I; Malach R; Brady T J; Rosen B R
Visual motion aftereffect in human cortical area MT revealed by functional magnetic resonance imaging.
Nature 1995;375(6527):139-41.
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1995: Tootell R B; Reppas J B; Kwong K K; Malach R; Born R T; Brady T J; Rosen B R; Belliveau J W
Functional analysis of human MT and related visual cortical areas using magnetic resonance imaging.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1995;15(4):3215-30.
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1994: Eilam R; Malach R; Segal M
Selective elimination of hypothalamic neurons by grafted hypertension-inducing neural tissue.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1994;14(8):4891-902.
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1994: Malach R; Tootell R B; Malonek D
Relationship between orientation domains, cytochrome oxidase stripes, and intrinsic horizontal connections in squirrel monkey area V2.
Cerebral cortex (New York, N.Y. : 1991) 1994;4(2):151-65.
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1994: Malach R
Cortical columns as devices for maximizing neuronal diversity.
Trends in neurosciences 1994;17(3):101-4.
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1993: Malach R; Amir Y; Harel M; Grinvald A
Relationship between intrinsic connections and functional architecture revealed by optical imaging and in vivo targeted biocytin injections in primate striate cortex.
Proceedings of the National Academy of Sciences of the United States of America 1993;90(22):10469-73.
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1993: Ankaoua D; Malach R
Evidence for plasticity of intrinsic horizontal connections in area 17 of the rat.
Israel journal of medical sciences 1993;29(9):555-69.
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1993: Amir Y; Harel M; Malach R
Cortical hierarchy reflected in the organization of intrinsic connections in macaque monkey visual cortex.
The Journal of comparative neurology 1993;334(1):19-46.
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1992: Kenan-Vaknin G; Ouaknine G E; Razon N; Malach R
Organization of layers II-III connections in human visual cortex revealed by in vitro injections of biocytin.
Brain research 1992;594(2):339-42.
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1992: Kenan-Vaknin G; Malach R; Segal M
Excitatory inputs to layer V pyramidal cells of rat primary visual cortex revealed by acetylcholine activation.
Brain research 1992;574(1-2):147-56.
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1992: Kenan-Vaknin G; Katz H; Malach R
Golgi-like staining of visual cortex cells obtained by extracellular biocytin application in vitro.
Brain research 1992;571(2):338-41.
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1992: Malach R
Dendritic sampling across processing streams in monkey striate cortex.
The Journal of comparative neurology 1992;315(3):303-12.
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1991: Paperna T; Malach R
Patterns of sensory intermodality relationships in the cerebral cortex of the rat.
The Journal of comparative neurology 1991;308(3):432-56.
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1991: Eilam R; Malach R; Bergmann F; Segal M
Hypertension induced by hypothalamic transplantation from genetically hypertensive to normotensive rats.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1991;11(2):401-11.
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1990: Dymshitz J; Malach R; Amir S; Simantov R
Factors regulating the expression of acetylcholinesterase-containing neurons in striatal cultures: effects of chemical depolarization.
Brain research 1990;532(1-2):131-9.
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1989: Avidor R; Eilam R; Malach R; Gozes I
VIP-mRNA is increased in hypertensive rats.
Brain research 1989;503(2):304-7.
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1989: Holtzman R L; Malach R; Gozes I
Disruption of the optic pathway during development affects vasoactive intestinal peptide mRNA expression.
The New biologist 1989;1(2):215-21.
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1989: Malach R
Patterns of connections in rat visual cortex.
The Journal of neuroscience : the official journal of the Society for Neuroscience 1989;9(11):3741-52.
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1988: Malach R
In vivo visualization of callosal pathways: a novel approach to the study of cortical organization.
Journal of neuroscience methods 1988;25(3):225-38.
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