Access the full text.
Sign up today, get DeepDyve free for 14 days.
C. Beaulieu, Z. Kisvárday, P. Somogyi, M. Cynader, A. Cowey (1992)
Quantitative distribution of GABA-immunopositive and -immunonegative neurons and synapses in the monkey striate cortex (area 17).Cerebral cortex, 2 4
P. Bhide, K. Bedi (1984)
The effects of a lengthy period of environmental diversity on well‐fed and previously undernourished rats. II. Synapse‐to‐neuron ratiosJournal of Comparative Neurology, 227
M. R. Rosenzweig, E. L. Bennett, M. C. Diamond (1971)
Macromolecules and Behaviour
G. Hung (1984)
Stereological methods. Vol. 1: Practical methods for biological morphometry By . Academic Press, New York/London, 1979. xvi + 415 pp., $57.50Microchemical Journal
Prof. Zilles (1985)
The Cortex of the Rat
R. Dykes, P. Landry, R. Metherate, T. Hicks (1984)
Functional role of GABA in cat primary somatosensory cortex: shaping receptive fields of cortical neurons.Journal of neurophysiology, 52 6
D. Hubel, T. Wiesel (1962)
Receptive fields, binocular interaction and functional architecture in the cat's visual cortexThe Journal of Physiology, 160
A. Peters, M. Feldman (1976)
The projection of the lateral geniculate nucleus to area 17 of the rat cerebral cortex. I. General descriptionJournal of Neurocytology, 5
D. Meinecke, A. Peters (1987)
GABA immunoreactive neurons in rat visual cortexJournal of Comparative Neurology, 261
P. L. A. Gabbott, P. Somogyi (1986)
Quantitative distribution of GABA‐immunoreactive neurons in the visual cortex (area 17) of the cat, 61
R. Barber, J. Vaughn, Kihachi Saito, B. Mclaughlin, E. Roberts (1978)
GABAergic terminals are presynaptic to primary afferent terminals in the substantia gelatinosa of the rat spinal cordBrain Research, 141
J. O'kusky, M. Colonnier (1982)
A laminar analysis of the number of neurons, glia, and synapses in the visual cortex (area 17) of adult macaque monkeysJournal of Comparative Neurology, 210
A. Peters (1987)
Number of Neurons and Synapses in Primary Visual Cortex
B. Cragg (1975)
The density of synapses and neurons in normal, mentally defective ageing human brains.Brain : a journal of neurology, 98 1
M. Warren, K. Bedi (1982)
Synapse‐to‐neuron ratios in the visual cortex of adult rats undernourished from about birth until 100 days of ageJournal of Comparative Neurology, 210
R. W. Guillery, M. Colonnier (1970)
Synaptic patterns in the dorsal lateral geniculate nucleus of the monkey, 103
J. Wolff, V. Balcar, T. Zetzsche, H. Böttcher, D. Schmechel, B. Chronwall (1984)
Development of GABA-ergic system in rat visual cortex.Advances in experimental medicine and biology, 181
C. Beaulieu, M. Colonnier (1988)
Richness of environment affects the number of contacts formed by boutons containing flat vesicles but does not alter the number of these boutons per neuronJournal of Comparative Neurology, 274
P. L. A. Gabbott, M. G. Stewart (1987)
Quantitative morphological effects of dark‐rearing and light exposure on the synaptic connectivity of layer IV in the rat visual cortex (area 17), 68
Chia‐Sheng Lin, S. Lu, D. Schmechel (1986)
Glutamic acid decarboxylase and somatostatin immunoreactivities in rat visual cortexJournal of Comparative Neurology, 244
Dean Hillman, Suzanne Chen (1984)
Reciprocal relationship between size of postsynaptic densities and their number: Constancy in contact areaBrain Research, 295
(1981)
The electron microscopic analysis of the neuronal organization of the cerebral cortex
D. Simons, P. Land (1987)
Early experience of tactile stimulation influences organization of somatic sensory cortexNature, 326
E. White (1989)
Cortical Circuits
C. Beaulieu, P. Somogyi (1990)
Targets and Quantitative Distribution of GABAergic Synapses in the Visual Cortex of the CatEuropean Journal of Neuroscience, 2
H. Gundersen (1977)
Notes on the estimation of the numerical density of arbitrary profiles: the edge effectJournal of Microscopy, 111
J. Parnavelas, R. Burne, Chia‐Sheng Lin (1981)
Receptive field properties of neurons in the visual cortex of the ratNeuroscience Letters, 27
Nada Zecevic, Jean-Pierre Bourgeois, P. Rakic (1989)
Changes in synaptic density in motor cortex of rhesus monkey during fetal and postnatal life.Brain research. Developmental brain research, 50 1
C. Ribak (1978)
Aspinous and sparsely-spinous stellate neurons in the visual cortex of rats contain glutamic acid decarboxylaseJournal of Neurocytology, 7
P. Somogyi, A. Hodgson
The Journal of Histochemistry and Cytochemistry Copyright Iii. Demonstration of Gaba in Golgi-impregnated Neurons and in Conventional Electron Microscopic Sections of Cat Striate Cortex'
E. R. Weibel (1979)
Practical Methods for Biological Morphometry, 1
A. Schüz, G. Palm (1989)
Density of neurons and synapses in the cerebral cortex of the mouseJournal of Comparative Neurology, 286
C. Houser, J. Vaughn, S. Hendry, E. Jones, A. Peters (1984)
GABA Neurons in the Cerebral Cortex
P. Séguéla, M. Geffard, R. Buijs, M. Moal (1984)
Antibodies against gamma-aminobutyric acid: specificity studies and immunocytochemical results.Proceedings of the National Academy of Sciences of the United States of America, 81 12
A. Sillito (1984)
Functional Considerations of the Operation of GABAergic Inhibitory Processes in the Visual Cortex
H. Scharfman, J. Sarvey (1988)
Physiological correlates of responses to gamma‐aminobutyric acid (GABA) recorded from rat visual cortical neurons in vitroSynapse, 2
H. Scharfman, J. Sarvey (1985)
Responses to γ-aminobutyric acid applied to cell bodies and dendrites of rat visual cortical neuronsBrain Research, 358
A. Peters, K. Harriman (1992)
Different kinds of axon terminals forming symmetric synapses with the cell bodies and initial axon segments of layer II/III pyramidal cells. III. Origins and frequency of occurrence of the terminalsJournal of Neurocytology, 21
D. Sterio (1984)
The unbiased estimation of number and sizes of arbitrary particles using the disectorJournal of Microscopy, 134
G. Paxinos, Charles Watson (1983)
The Rat Brain in Stereotaxic Coordinates
(1981)
Le nomhre de neurones et de synapses dans le cortexvisual de differentes espkces
C. Beaulieu (1993)
Numerical data on neocortical neurons in adult rat, with special reference to the GABA populationBrain Research, 609
H. E. Scharfman, J. M. Sarvey (1985)
Response to GABA applied to cell bodies and dendrites of rat visual cortical neurons, 358
L. Benevento, L. Benevento, B. Bakkum, B. Bakkum, J. Port, J. Port, R. Cohen, R. Cohen (1992)
The effects of dark-rearing on the electrophysiology of the rat visual cortexBrain Research, 572
P. Somogyi, I. Soltesz (1986)
Immunogold demonstration of GABA in synaptic terminals of intracellularly recorded, horseradish peroxidase-filled basket cells and clutch cells in the cat's visual cortexNeuroscience, 19
A. Hodgson, B. Penke, A. Erdei, I. Chubb, P. Somogyi (1985)
Antisera to gamma-aminobutyric acid. I. Production and characterization using a new model system.The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society, 33
K. Krnjević (1984)
Neurotransmitters in Cerebral Cortex
A. Burkhalter (1989)
Intrinsic connections of rat primary visual cortex: Laminar organization of axonal projectionsJournal of Comparative Neurology, 279
R. W. Guillery (1969)
The organization of synaptic interconnections in the laminae of the dorsal lateral geniculate nucleus of the cat, 96
I. Divac (1990)
Cortical circuits: Synaptic organization of the cerebral cortex. Structure, function and theory by Edward L. White, Birkäuser, 1989. Sw. fr. 88.00 (xvi + 223 pages) ISBN 3 7643 3402 9Trends in Neurosciences, 13
M. Colonnier (1981)
Organization of the Cerebral Cortex
C. Beaulieu, M. Colonnier (1985)
A laminar analysis of the number of round‐asymmetrical and flat‐symmetrical synapses on spines, dendritic trunks, and cell bodies in area 17 of the catJournal of Comparative Neurology, 231
A. Peters (1987)
Cerebral Cortex. Vol. 6, Further Aspects of Cortical Function, Including Hippocampus
R. Riccio, M. Matthews (1985)
The postnatal development of the rat primary visual cortex during optic nerve impulse blockade by intraocular tetrodotoxin: a quantitative electron microscopic analysis.Brain research, 352 1
K. Bedi, R. Massey, J. Smart (1989)
Neuronal and synaptic measurements in the visual cortex of adult rats after undernutrition during normal or artificial rearingJournal of Comparative Neurology, 289
B. Connors, R. Malenka, L. Silva (1988)
Two inhibitory postsynaptic potentials, and GABAA and GABAB receptor‐mediated responses in neocortex of rat and cat.The Journal of Physiology, 406
A. J. Hodgson, B. Penke, A. Erdei, I. W. Chubb, P. Somogyi (1985)
Antiserum to γ‐Aminobutyric acid. I. Production and characterization using a new model system. J. Histochem, 33
P. Somogyi, A. J. Hodgson (1985)
Antisera to γ‐Aminobutyric acid. III. Demonstration of GABA in Golgi‐impregnated neurons and in conventional electron microscopic sections of cat striate cortex, 33
Anita Turner, W. Greenough (1985)
Differential rearing effects on rat visual cortex synapses. I. Synaptic and neuronal density and synapses per neuronBrain Research, 329
M. Rosenzweig, E. Bennett, M. Diamond (1972)
Chemical and Anatomical Plasticity of Brain: Replications and Extensions, 1970
J. R. Wolff, V. J. Balcar, T. Zetzsche, H. Bottcher, D. E. Schmechel, B. M. Chronwall (1984)
Gene Expression and Cell‐Cell Interactions in the Developing Nervous System
A. M. Sillito (1984)
Cerebral Cortex, Functional Properties of Cortical Cells
P. Somogyi (1989)
Neural Mechanisms of Visual Perception. The Second Retina Research Foundation Symposium
C. Beaulieu (1993)
Numerical data on neurons in adult rat neocortex with special reference to the GABA population, 609
D. Hubel, T. Wiesel (1968)
Receptive fields and functional architecture of monkey striate cortexThe Journal of Physiology, 195
E. L. White (1989)
Synaptic Organization of the Cerebral Cortex; Structure, Function and Theory
The number and size of synaptic contacts made by GABA‐immunoreactive axonal boutons were estimated in each layer of the primary visual cortex (area Oc1M) of adult rats by using the disector method. Immunoreactivity for GABA was detected with the postembedding immunogold technique on ultrathin sections. Targets of GABA synaptic contacts were also identified to predict the sites of GABA influence in the rat visual cortex.
The Journal of Comparative Neurology – Wiley
Published: Oct 22, 1995
Keywords: ; ; ; ;
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.