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Three systems of descending projections to the inferior colliculus
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Winer JA, Diamond IT, and Raczkowski D (1977) Subdivisions of the auditory cortex of the cat: the retrograde transport of horseradish peroxidase to the medial geniculate body and posterior thalamic nuclei. Journal of Comparative Neurology 176:387-418.
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Winer JA and Larue DT (1987) Patterns of reciprocity in auditory thalamocortical and corticothalamic connections: study with horseradish peroxidase and autoradiographic methods in the rat medial geniculate body. Journal of Comparative Neurology 257:282-315.
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Anatomy of glutamic acid decarboxylase (GAD) immunoreactive neurons and axons in the rat medial geniculate body
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Winer JA and Larue DT (1988) Anatomy of glutamic acid decarboxylase (GAD) immunoreactive neurons and axons in the rat medial geniculate body. Journal of Comparative Neurology 278:47-68.
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Populations of GABAergic neurons and axons in layer I of rat auditory cortex
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Winer JA and Larue DT (1989) Populations of GABAergic neurons and axons in layer I of rat auditory cortex. Neuroscience 33:499-515.
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Winer JA, Larue DT, and Huang CL (1999a) Two systems of giant axon terminals in the cat medial geniculate body: convergence of cortical and GABAergic inputs. Journal of Comparative Neurology 413:181-197.
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GABA and glycine in the central auditory system of the mustache bat: Structural substrates for inhibitory neuronal organization
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Winer JA, Larue DT, and Pollak GD (1995) GABA and glycine in the central auditory system of the mustache bat: structural substrates for inhibitory neuronal organization. Journal of Comparative Neurology 355:317-353.
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Winer JA and Lee CC (2007) The distributed auditory cortex. Hearing Research 229:3-13.
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Winer JA and Morest DK (1983a) The medial division of the medial geniculate body of the cat: implications for thalamic organization. Journal of Neuroscience 3:2629-2651.
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The neuronal architecture of the dorsal division of the medial geniculate body of the cat. A study with the rapid Golgi method
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Winer JA and Morest DK (1983b) The neuronal architecture of the dorsal division of the medial geniculate body of the cat. A study with the rapid Golgi method. Journal of Comparative Neurology 221:1-30.
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A cytoarchitectonic atlas of the medial geniculate body of the opossum, Didelphys virginiana, with a comment on the posterior intralaminar nuclei of the thalamus
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Winer JA, Morest DK, and Diamond IT (1988) A cytoarchitectonic atlas of the medial geniculate body of the opossum, Didelphys virginiana, with a comment on the posterior intralaminar nuclei of the thalamus. Journal of Comparative Neurology 274:422-448.
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Layer V in cat primary auditory cortex (AI): Cellular architecture and identification of projection neurons
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Winer JA and Prieto JJ (2001) Layer V in cat primary auditory cortex (AI): cellular architecture and identification of projection neurons. Journal of Comparative Neurology 434:379-412.
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Origins of medial geniculate body projections to physiologically defined regions of rat auditory cortex
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Winer JA, Sally SL, Larue DT, and Kelly JB (1999b) Origins of medial geniculate body projections to physiologically defined regions of rat auditory cortex. Hearing Research 130:42-61.
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The neurons of the medial geniculate body in the mustached bat (Pteronotus parnellii)
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Winer JA and Wenstrup JJ (1994) The neurons of the medial geniculate body in the mustached bat (Pteronotus parnellii). Journal of Comparative Neurology 346:183-206.
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Differentially projecting cells in individual layers of the auditory cortex: A double-labeling study
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