UCL Discovery
UCL home » Library Services » Electronic resources » UCL Discovery

Browse by UCL people

Group by: Type | Date
Number of items: 21.

Article

Alles, SRA; Nascimento, F; Luján, R; Luiz, AP; Millet, Q; Bangash, MA; Santana-Varela, S; ... Wood, JN; + view all (2020) Sensory neuron–derived NaV1.7 contributes to dorsal horn neuron excitability. Science Advances , 6 (8) , Article eaax4568. 10.1126/sciadv.aax4568. Green open access
file

Beato, M; Groot-Kormelink, PJ; Colquhoun, D; Sivilotti, LG; (2004) The activation mechanism of alpha 1 homomeric glycine receptors. J NEUROSCI , 24 (4) 895 - 906. 10.1523/JNEUROSCI.4420-03.2004. Green open access
file

Beato, M.; Groot-Kormelink, P.J.; Colquhoun, D.; Sivilotti, L.G.; (2002) Openings of the rat recombinant alpha1 homomeric glycine receptor as a function of the number of sgonist molecules bound. The Journal of General Physiology , 119 (5) pp. 443-466. 10.1085/jgp.20028530. Green open access
file

Bhumbra, GS; Bannatyne, BA; Watanabe, M; Todd, AJ; Maxwell, DJ; Beato, M; (2014) The recurrent case for the Renshaw cell. J Neurosci , 34 (38) 12919 - 12932. 10.1523/JNEUROSCI.0199-14.2014. Green open access
file

Bhumbra, GS; Beato, M; (2018) Recurrent excitation between motoneurones propagates across segments and is purely glutamatergic. PLoS Biology , 16 (3) , Article e2003586. 10.1371/journal.pbio.2003586. Green open access
file

Bhumbra, GS; Moore, NJ; Moroni, M; Beato, M; (2012) Co-Release of GABA Does Not Occur at Glycinergic Synapses onto Lumbar Motoneurons in Juvenile Mice. Frontiers in Cellular Neuroscience , 6 (8) 10.3389/fncel.2012.00008. Green open access
file

Burzomato, V.; Beato, M.; Groot-Kormelink, P.J.; Colquhoun, D.; Sivilotti, L.G.; (2004) Single-channel behavior of heteromeric α1β glycine receptors: an attempt to detect a conformational change before the channel opens. Journal of Neuroscience , 24 (48) pp. 10924-10940. 10.1523/JNEUROSCI.3424-04.2004. Green open access
file

Chopek, JW; Nascimento, F; Beato, M; Brownstone, RM; Zhang, Y; (2018) Sub-populations of Spinal V3 Interneurons Form Focal Modules of Layered Pre-motor Microcircuits. Cell Reports , 25 (1) 146-156.e3. 10.1016/j.celrep.2018.08.095. Green open access
file

Deleuze, C; Bhumbra, GS; Pazienti, A; Lourenço, J; Mailhes, C; Aguirre, A; Beato, M; (2019) Strong preference for autaptic self-connectivity of neocortical PV interneurons facilitates their tuning to γ-oscillations. PLoS Biology , 17 (9) , Article e3000419. 10.1371/journal.pbio.3000419. Green open access
file

Houston, CM; Bright, DP; Sivilotti, LG; Beato, M; Smart, TG; (2009) Intracellular Chloride Ions Regulate the Time Course of GABA-Mediated Inhibitory Synaptic Transmission. The Journal of Neuroscience , 29 (33) 10416 - 10423. 10.1523/JNEUROSCI.1670-09.2009. Green open access
file

Krashia, P; Moroni, M; Broadbent, S; Hofmann, G; Kracun, S; Beato, M; Groot-Kormelink, PJ; (2010) Human alpha 3 beta 4 Neuronal Nicotinic Receptors Show Different Stoichiometry if They Are Expressed in Xenopus Oocytes or Mammalian HEK293 Cells. PLOS ONE , 5 (10) , Article e13611. 10.1371/journal.pone.0013611. Green open access
file

Lamotte d'Incamps, B; Bhumbra, GS; Foster, JD; Beato, M; Ascher, P; (2017) Segregation of glutamatergic and cholinergic transmission at the mixed motoneuron Renshaw cell synapse. Scientific Reports , 7 (1) , Article 4037. 10.1038/s41598-017-04266-8. Green open access
file

Moore, NJ; Bhumbra, GS; Foster, JD; Beato, M; (2015) Synaptic Connectivity between Renshaw Cells and Motoneurons in the Recurrent Inhibitory Circuit of the Spinal Cord. The Journal of Neuroscience , 35 (40) pp. 13673-13686. 10.1523/JNEUROSCI.2541-15.2015. Green open access
file

Moroni, M; Biro, I; Giugliano, M; Vijayan, R; Biggin, PC; Beato, M; Sivilotti, LG; (2011) Chloride Ions in the Pore of Glycine and GABA Channels Shape the Time Course and Voltage Dependence of Agonist Currents. The Journal of Neuroscience , 31 (40) 14095 - 14106. 10.1523/JNEUROSCI.1985-11.2011. Green open access
file

Papageorgiou, G; Beato, M; Ogden, D; (2011) Synthesis and photolytic evaluation of a nitroindoline-caged glycine with a side chain of high negative charge for use in neuroscience. Tetrahedron , 67 (29) 5228 - 5234. 10.1016/j.tet.2011.05.045. Green open access
file

Pascual-Valdunciel, Alejandro; Cónsul, Natalia T; Brownstone, Robert M; Beato, Marco; Farina, Dario; Nascimento, Filipe; Özyurt, M Görkem; (2025) Personalized mapping of inhibitory spinal cord circuits in humans via noninvasive neural decoding and in silico modeling. Science Advances , 11 (38) , Article eadz5524. 10.1126/sciadv.adz5524. Green open access
file

Pocratsky, Amanda M; Nascimento, Filipe; Özyurt, M Görkem; White, Ian J; Sullivan, Roisin; O'Callaghan, Benjamin J; Smith, Calvin C; ... Brownstone, Robert M; + view all (2023) Pathophysiology of Dyt1-Tor1a dystonia in mice is mediated by spinal neural circuit dysfunction. Science Translational Medicine , 15 (694) , Article eadg3904. 10.1126/scitranslmed.adg3904. Green open access
file

Ronzano, R; Lancelin, C; Bhumbra, GS; Brownstone, RM; Beato, M; (2021) Proximal and distal spinal neurons innervating multiple synergist and antagonist motor pools. eLife , 10 , Article e70858. 10.7554/eLife.70858. (In press). Green open access
file

Ronzano, Remi; Skarlatou, Sophie; Barriga, Bianca K; Bannatyne, B Anne; Bhumbra, Gardave Singh; Foster, Joshua D; Moore, Jeffrey D; ... Beato, Marco; + view all (2022) Spinal premotor interneurons controlling antagonistic muscles are spatially intermingled. eLife , 11 10.7554/eLife.81976. (In press). Green open access
file

Scimemi, A.; Beato, M.; (2009) Determining the neurotransmitter concentration profile at active synapses. Molecular Neurobiology , 40 (3) pp. 289-306. 10.1007/s12035-009-8087-7. Green open access
file

Book chapter

Beato, Marco; Bhumbra, Gary; (2022) Synaptic Projections of Motoneurons Within the Spinal Cord. In: O'Donovan, Michael J and Falgairolle, Mélanie, (eds.) Vertebrate Motoneurons. (pp. 151-168). Springer: Cham, Switzerland. Green open access
file

This list was generated on Sun Jan 11 07:19:24 2026 GMT.