Dendritic morphology and axon collaterals of corticotectal, corticopontine, and callosal neurons in layer V of primary visual cortex of the hooded rat
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[1] R. C. Van Sluyters,et al. Callosal connections of the posterior neocortex in normal‐eyed, congenitally anophthalmic, and neonatally enucleated mice , 1984, The Journal of comparative neurology.
[2] D. Robinson. Eye movements evoked by collicular stimulation in the alert monkey. , 1972, Vision research.
[3] M. Descheˆnes,et al. Morphological characterization of slow and fast pyramidal tract cells in the cat , 1979, Brain Research.
[4] J. Kaas,et al. Interhemispheric connections of cortical sensory areas in tree shrews , 1985, The Journal of comparative neurology.
[5] M. Segraves,et al. The distribution of the cells of origin of callosal projections in cat visual cortex , 1982, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[6] H. Swadlow. Efferent systems of primary visual cortex: A review of structure and function , 1983, Brain Research Reviews.
[7] J G Parnavelas,et al. Organization of neurons in the visual cortex, area 17, of the rat. , 1977, Journal of anatomy.
[8] R. Mooney,et al. The structural and functional characteristics of striate cortical neurons that innervate the superior colliculus and lateral posterior nucleus in hamster , 1986, Neuroscience.
[9] M. Wiesendanger,et al. The corticopontine system in the rat. I. Mapping of corticopontine neurons , 1982, The Journal of comparative neurology.
[10] A. Peters,et al. An autoradiographic study of the projections from the lateral geniculate body of the rat , 1975, Brain Research.
[11] Theodore G. Weyand,et al. The cells of origin of the corpus callosum in rabbit visual cortex , 1978, Brain Research.
[12] J Bullier,et al. Bifurcation of subcortical afferents to visual areas 17, 18, and 19 in the cat cortex , 1984, The Journal of comparative neurology.
[13] P S Goldman-Rakic,et al. Callosal and intrahemispheric connectivity of the prefrontal association cortex in rhesus monkey: Relation between intraparietal and principal sulcal cortex , 1984, The Journal of comparative neurology.
[14] B. Vogt,et al. Direct connections of rat visual cortex with sensory, motor, and association cortices , 1984, The Journal of comparative neurology.
[15] Michael W. Miller,et al. Heterotopic and homotopic callosal connections in rat visual cortex , 1984, Brain Research.
[16] L. Palmer,et al. Visual receptive fields of single striate corical units projecting to the superior colliculus in the cat. , 1974, Brain research.
[17] P. Brodal,et al. Distribution in area 17 of neurons projecting to the pontine nuclei: A quantitative study in the cat with retrograde transport of HRP‐WGA , 1983, The Journal of comparative neurology.
[18] A L Pearlman,et al. Does laminar position determine the receptive field properties of cortical neurons? A study of corticotectal cells in area 17 of the normal mouse and the reeler mutant , 1981, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[19] L C Katz,et al. Local circuitry of identified projection neurons in cat visual cortex brain slices , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[20] J. Donoghue,et al. A collateral pathway to the neostriatum from corticofugal neurons of the rat sensory‐motor cortex: An intracellular HRP study , 1981, The Journal of comparative neurology.
[21] P. D. Spear,et al. Single thalamic neurons project to both lateral suprasylvian visual cortex and area 17: A retrograde fluorescent double‐labeling study , 1986, The Journal of comparative neurology.
[22] J. Adams,et al. Technical considerations on the use of horseradish peroxidase as a neuronal marker , 1977, Neuroscience.
[23] J. T. Weber,et al. Interhemispheric and subcortical collaterals of single cortical neurons in the adult cat , 1983, Brain Research.
[24] C. Blakemore,et al. Projections to the visual cortex in the golden hamster , 1979, The Journal of comparative neurology.
[25] R. Wurtz,et al. Activity of superior colliculus in behaving monkey. 3. Cells discharging before eye movements. , 1972, Journal of neurophysiology.
[26] B L Finlay,et al. Quantitative studies of single-cell properties in monkey striate cortex. IV. Corticotectal cells. , 1976, Journal of neurophysiology.
[27] D. Sparks. Functional properties of neurons in the monkey superior colliculus: Coupling of neuronal activity and saccade onset , 1978, Brain Research.
[28] R. Lund,et al. The distribution of the callosal projection to the occipital visual cortex in rats and mice , 1981, Brain Research.
[29] M. Glickstein,et al. Visual Input to the Pontine Nuclei , 1972, Science.
[30] W. Straus. Imidazole increases the sensitivity of the cytochemical reaction for peroxidase with diaminobenzidine at a neutral pH. , 1982, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[31] M. Herkenham. Laminar organization of thalamic projections to the rat neocortex. , 1980, Science.
[32] G. Mower,et al. Cat visual corticopontine cells project to the superior colliculus , 1983, Brain Research.
[33] A. Peters,et al. The neuronal composition of area 17 of rat visual cortex. I. The pyramidal cells , 1985, The Journal of comparative neurology.
[34] J. Trojanowski,et al. The cells of origin of the corpus callosum in rat, cat and rhesus monkey. , 1974, Brain research.
[35] A. Towe,et al. Influence of molecular layer on pyramidal tract neurons , 1985, Experimental Neurology.
[36] C Blakemore,et al. Binocular depth perception and the corpus callosum. , 1970, Vision research.
[37] H. Oka,et al. Two groups of corticofugal neurons identified with the pontine stimulation in the cat parietal association cortex: an intracellular HRP study , 1985, Brain Research.
[38] J. Olavarria,et al. Widespread callosal connections in infragranular visual cortex of the rat , 1983, Brain Research.
[39] J. Lund,et al. The origin of efferent pathways from the primary visual cortex, area 17, of the macaque monkey as shown by retrograde transport of horseradish peroxidase , 1975, The Journal of comparative neurology.
[40] G. Poggio,et al. Binocular interaction and depth sensitivity in striate and prestriate cortex of behaving rhesus monkey. , 1977, Journal of neurophysiology.
[41] A. Gibson,et al. Visual cells in the pontine nuclei of the cat. , 1976, The Journal of physiology.
[42] B. Schofield,et al. Morphology of corticotectal cells in the primary visual cortex of hooded rats , 1987, The Journal of comparative neurology.
[43] J. Adams. Heavy metal intensification of DAB-based HRP reaction product. , 1981, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.