M. Gustavo Murer

Universidad de Buenos Aires, Buenos Aires, Ciudad Autónoma de Buenos Aires, Argentina 
Basal Ganglia, electrophysiology
"M. Gustavo Murer"
Mean distance: 16.33 (cluster 6)
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Sáez M, Keifman E, Alberquilla S, et al. (2023) D2 dopamine receptors and the striatopallidal pathway modulate L-DOPA-induced dyskinesia in the mouse. Neurobiology of Disease. 106278
Vainstein E, Baleani S, Urrutia L, et al. (2022) Multicentre observational study on multisystem inflammatory syndrome related to COVID-19 in Argentina. Pediatrics International : Official Journal of the Japan Pediatric Society. e15431
Martinez MC, Zold CL, Coletti MA, et al. (2022) Dorsal striatum coding for the timely execution of action sequences. Elife. 11
Paz RM, Stahl AM, Rela L, et al. (2022) D1/D5 Inverse Agonists Restore Striatal Cholinergic Interneuron Physiology in Dyskinetic Mice. Movement Disorders : Official Journal of the Movement Disorder Society
Beccaria JP, Pretell Annan CA, Keifman E, et al. (2021) Striatal cholinergic interneurons are required for contending strategy selection while solving spatial navigation problems. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Casalia ML, Casabona JC, García C, et al. (2021) A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels. Stem Cell Research & Therapy. 12: 590
Paz RM, Murer MG. (2021) Mechanisms of Antiparkinsonian Anticholinergic Therapy Revisited. Neuroscience. 467: 201-217
Paz RM, Tubert C, Stahl AM, et al. (2021) Levodopa Causes Striatal Cholinergic Interneuron Burst-Pause Activity in Parkinsonian Mice. Movement Disorders : Official Journal of the Movement Disorder Society
Tubert C, Murer MG. (2020) What's wrong with the striatal cholinergic interneurons in Parkinson's disease? Focus on intrinsic excitability. The European Journal of Neuroscience. 53: 2100-2116
Solís O, García-Sanz P, Martín AB, et al. (2019) Behavioral sensitization and cellular responses to psychostimulants are reduced in D2R knockout mice. Addiction Biology. e12840
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