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Issue |
Title |
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Vol. 109, fasc. 4 |
The retinotopic organization of visual responses from tectal reimplants in adult goldfish |
Details
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S.C. Sharma, R.M. Gaze |
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Vol. 98, fasc. 1 |
The right subclavian body |
Details
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R. Bianconi, J.H. Green |
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Vol. 146, No. 3/4 |
The role of cholinergic system in neuronal plasticity: focus on visual cortex and muscarinic receptors |
Abstract
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Nicola Origlia, Nicola Kuczewski, Emanuele Pesavento, Eugenio Aztiria, Luciano Domenici |
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Vol. 129, No. 1 - Structural-Functional Organization of Cerebellar and Vestibular System. A tribute to A. Brodal |
The role of different size vestibulospinal neurons in the static control of posture. |
Abstract
PDF
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O. Pompeiano |
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Vol 149 (2011): From electric fish to human brain: an historical overview of European neuroscience from the University of Pisa |
The role of hypnotizability in the construction of individual sensori-motor selves |
Abstract
PDF
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Enrica Laura Santarcangelo |
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Vol. 99, fasc. 3 |
The role of limbic system in producing modifications of spinal reflexes |
Details
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R. Emmers |
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Vol. 140, No. 3 - In honour of C.A. Terzuolo |
The role of the cerebellum in modulating voluntary limb movement commands. |
Abstract
PDF
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L. E. Miller, R. N. Holdefer, J. C. Houk |
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Vol. 135, No. 3 |
The role of tonic vestibular input for postural control in rats. |
Abstract
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T. G. Deliagina, L. B. Popova, G. Grant |
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Vol. 108, fasc. 1 |
The role ofthe male in the peripheral inhibition of flashing in luciola lusitanica |
Details
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M. Brunelli, M. Buonamici, F. Magni, M. Viola-Magni |
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Vol. 113, fasc. 3 |
The sensitivity of renshaw cells to velocity of sinusoidal strtches of the triceps surae muscle |
Details
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R. Mancinelli |
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Vol. 113, fasc. 3 |
The sensitivity of renshaw cells to velocity of sinusoidal strtches of the triceps surae muscle |
Details
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O. Pompeiano, P. Wand, K.H. Sontag |
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Vol. 128, No. 2-4 - A tribute to A. Brodal |
The significance of foliation and fissuration of cerebellar cortex. The cerebellar folium as a fundamental unit of sensorimotor integration. |
Abstract
PDF
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W. I. Welker |
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Vol. 139, No. 4 |
The spatial substructure of visual receptive fields in the cat's superior colliculus. |
Abstract
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K. Dec, W. J. Waleszczyk, A. Wrobel, B. A. Harutiunian-Kozak |
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Vol 156, No 3 (2018): Special Issue - Crossing the Watershed between Sleep and Wakefulness Collection of selected contributions from the 2017 Amsterdam Brain and Cognition Symposium |
The state of cortical microcircuits during wakefulness and sleep |
Abstract
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C. Bosman, N. Aldunate |
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Vol. 111, fasc. 2 |
The structure of the first auditory cortex (A I) in the cat |
Abstract
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A. Sousa-Pinto |
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Vol. 101, fasc. 1 |
The sun-orientation rhythm of wolf spiders at different latitudes |
Details
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F. Papi, J. Syrjamaki |
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Vol 158, No 2 (2020) |
The swimming control group in spatial reference memory task: analysis of its motor cortex activity |
Abstract
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S. Cid-Duarte, A. Gutiérrez-Menéndez, C. Zorzo, J. L. Arias, M. Méndez |
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Vol. 105, fasc. 1 |
The temporal relation of unit discharge in visual cortex and activity of the extraocular muscles during sleep |
Details
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P. Valleala |
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Vol 149, No 4 (2011): Special Issue - Mechanisms and networks of motoneuronal control during sleep |
The Tongue and its Control by Sleep State-Dependent Modulators |
Abstract
PDF
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R. L. Horner |
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Vol. 101, fasc. 4 |
The tonic activity of the lateral geniculate nucleus in dark and light adaptation |
Details
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A. Arduini, L.R. Pinneo |
|
Vol 149 (2011): From electric fish to human brain: an historical overview of European neuroscience from the University of Pisa |
The toxic effect of light on retinal photoreceptors, its mechanism and the protection by endogenous indolamines |
Abstract
PDF
|
P. L. Marchiafava |
|
Vol. 120, fasc. 1-3 |
The two types of motor apraxia |
Details
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K. Poeck |
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Vol. 118, No. 4 |
The variation in tension output with active shortening in rat myocardium |
Details
PDF
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C. Poggesi, I. Ricciardi |
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Vol. 124, fasc. 1 |
The vestibular cortical projection during spinal decompensation |
Details
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G.B. Azzena, F. Melis |
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Vol. 117, fasc. 1 |
The vestibular nuclei in the domestic hen. Afferents from the spinal cord |
Details
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J.E. Wold |
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