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Journal of Neurophysiology|July 1, 1985
Receptive-field and axonal properties of neurons in the dorsal lateral geniculate nucleus of awake unparalyzed rabbitsH A Swadlow, T G WeyandThe Journal of Comparative Neurology|August 22, 1986
Thalamic inputs to visual areas 1 and 2 in the rabbitT G Weyand, H A SwadlowThe Journal of Comparative Neurology|December 20, 1981
Efferent systems of the rabbit visual cortex: laminar distribution of the cells of origin, axonal conduction velocities, and identification of axonal branchesH A Swadlow, T G WeyandJournal of Neurophysiology|April 1, 1987
Corticogeniculate neurons, corticotectal neurons, and suspected interneurons in visual cortex of awake rabbits: receptive-field properties, axonal properties, and effects of EEG arousalH A Swadlow, T G WeyandBrain, Behavior and Evolution|January 1, 1980
Interhemispheric striate projections in the prosimian primate, Galago senegalensisT G Weyand, H A SwadlowThe Journal of Comparative Neurology|June 1, 1986
Rabbit cingulate cortex: cytoarchitecture, physiological border with visual cortex, and afferent cortical connections of visual, motor, postsubicular, and intracingulate originB A Vogt, R W Sikes, H A Swadlow, et al.Journal of Neurophysiology|April 1, 1988
Efferent neurons and suspected interneurons in binocular visual cortex of the awake rabbit: receptive fields and binocular propertiesH A SwadlowJournal of Neurophysiology|August 1, 1992
Monitoring the excitability of neocortical efferent neurons to direct activation by extracellular current pulsesH A SwadlowJournal of Neurophysiology|February 1, 1994
Efferent neurons and suspected interneurons in motor cortex of the awake rabbit: axonal properties, sensory receptive fields, and subthreshold synaptic inputsH A SwadlowJournal of Neurophysiology|July 1, 1989
Efferent neurons and suspected interneurons in S-1 vibrissa cortex of the awake rabbit: receptive fields and axonal propertiesH A SwadlowPageof 5