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D Centonze

Showing results (61-70 of 129) with videos related to

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Progress in Neurobiology|February 13, 2001
Ionic mechanisms underlying differential vulnerability to ischemia in striatal neuronsD Centonze, G A Marfia, A Pisani, et al.
Progress in Neurobiology|March 23, 2000
Synaptic transmission in the striatum: from plasticity to neurodegenerationP Calabresi, D Centonze, P Gubellini, et al.
Experimental Neurology|December 31, 2003
Early ionic and membrane potential changes caused by the pesticide rotenone in striatal cholinergic interneuronsP Bonsi, P Calabresi, C De Persis, et al.
Annals of Neurology|May 19, 1998
Striatal spiny neurons and cholinergic interneurons express differential ionotropic glutamatergic responses and vulnerability: implications for ischemia and Huntington's diseaseP Calabresi, D Centonze, A Pisani, et al.
European Journal of Neurology|December 23, 2004
CSF from MS patients can induce acute conduction block in the isolated optic nerveD Centonze, S Rossi, L Boffa, et al.
Experimental Neurology|August 5, 2003
Lamotrigine and remacemide protect striatal neurons against in vitro ischemia: an electrophysiological studyP Calabresi, M Marti, B Picconi, et al.
Multiple Sclerosis (Houndmills, Basingstoke, England)|June 25, 2008
Improvement of hand dexterity following motor cortex rTMS in multiple sclerosis patients with cerebellar impairmentG Koch, S Rossi, C Prosperetti, et al.
Neuropharmacology|February 1, 2003
Corticostriatal LTP requires combined mGluR1 and mGluR5 activationP Gubellini, E Saulle, D Centonze, et al.
Neuropharmacology|May 30, 2001
Selective involvement of mGlu1 receptors in corticostriatal LTDP Gubellini, E Saulle, D Centonze, et al.
Multiple Sclerosis (Houndmills, Basingstoke, England)|December 12, 2013
Functional connectivity changes within specific networks parallel the clinical evolution of multiple sclerosisB Basile, M Castelli, F Monteleone, et al.
Pageof 13

Showing results (61-70 of 129) with videos related to

Sort By:
Pageof 13
Progress in Neurobiology|February 13, 2001
Ionic mechanisms underlying differential vulnerability to ischemia in striatal neuronsD Centonze, G A Marfia, A Pisani, et al.
Progress in Neurobiology|March 23, 2000
Synaptic transmission in the striatum: from plasticity to neurodegenerationP Calabresi, D Centonze, P Gubellini, et al.
Experimental Neurology|December 31, 2003
Early ionic and membrane potential changes caused by the pesticide rotenone in striatal cholinergic interneuronsP Bonsi, P Calabresi, C De Persis, et al.
Annals of Neurology|May 19, 1998
Striatal spiny neurons and cholinergic interneurons express differential ionotropic glutamatergic responses and vulnerability: implications for ischemia and Huntington's diseaseP Calabresi, D Centonze, A Pisani, et al.
European Journal of Neurology|December 23, 2004
CSF from MS patients can induce acute conduction block in the isolated optic nerveD Centonze, S Rossi, L Boffa, et al.
Experimental Neurology|August 5, 2003
Lamotrigine and remacemide protect striatal neurons against in vitro ischemia: an electrophysiological studyP Calabresi, M Marti, B Picconi, et al.
Multiple Sclerosis (Houndmills, Basingstoke, England)|June 25, 2008
Improvement of hand dexterity following motor cortex rTMS in multiple sclerosis patients with cerebellar impairmentG Koch, S Rossi, C Prosperetti, et al.
Neuropharmacology|February 1, 2003
Corticostriatal LTP requires combined mGluR1 and mGluR5 activationP Gubellini, E Saulle, D Centonze, et al.
Neuropharmacology|May 30, 2001
Selective involvement of mGlu1 receptors in corticostriatal LTDP Gubellini, E Saulle, D Centonze, et al.
Multiple Sclerosis (Houndmills, Basingstoke, England)|December 12, 2013
Functional connectivity changes within specific networks parallel the clinical evolution of multiple sclerosisB Basile, M Castelli, F Monteleone, et al.
Pageof 13