The basal ganglia in Parkinson's disease: current concepts and unexplained observations JA Obeso, C Marin, C Rodriguez‐Oroz, J Blesa, B Benitez‐Temiño, ... Annals of Neurology: Official Journal of the American Neurological …, 2008 | 466 | 2008 |
Pedunculopontine nucleus and basal ganglia: distant relatives or part of the same family? J Mena-Segovia, JP Bolam, PJ Magill Trends in neurosciences 27 (10), 585-588, 2004 | 424 | 2004 |
A major external source of cholinergic innervation of the striatum and nucleus accumbens originates in the brainstem D Dautan, I Huerta-Ocampo, IB Witten, K Deisseroth, JP Bolam, ... Journal of Neuroscience 34 (13), 4509-4518, 2014 | 350 | 2014 |
Topographical organization of the pedunculopontine nucleus C Martinez-Gonzalez, JP Bolam, J Mena-Segovia Frontiers in neuroanatomy 5, 22, 2011 | 278 | 2011 |
Rethinking the pedunculopontine nucleus: from cellular organization to function J Mena-Segovia, JP Bolam Neuron 94 (1), 7-18, 2017 | 230 | 2017 |
Cholinergic brainstem neurons modulate cortical gamma activity during slow oscillations J Mena‐Segovia, HM Sims, PJ Magill, JP Bolam The Journal of physiology 586 (12), 2947-2960, 2008 | 230 | 2008 |
Cholinergic modulation of midbrain dopaminergic systems J Mena-Segovia, P Winn, JP Bolam Brain research reviews 58 (2), 265-271, 2008 | 179 | 2008 |
Segregated cholinergic transmission modulates dopamine neurons integrated in distinct functional circuits D Dautan, AS Souza, I Huerta-Ocampo, M Valencia, M Assous, IB Witten, ... Nature neuroscience 19 (8), 1025-1033, 2016 | 146 | 2016 |
Convergence of cortical and thalamic input to direct and indirect pathway medium spiny neurons in the striatum I Huerta-Ocampo, J Mena-Segovia, JP Bolam Brain Structure and Function 219, 1787-1800, 2014 | 138 | 2014 |
GABAergic neuron distribution in the pedunculopontine nucleus defines functional subterritories J Mena‐Segovia, BR Micklem, RG Nair‐Roberts, MA Ungless, JP Bolam Journal of Comparative Neurology 515 (4), 397-408, 2009 | 127 | 2009 |
Extrinsic sources of cholinergic innervation of the striatal complex: a whole-brain mapping analysis D Dautan, H Hacioğlu Bay, JP Bolam, TV Gerdjikov, J Mena-Segovia Frontiers in neuroanatomy 10, 1, 2016 | 82 | 2016 |
Distinct types of non-cholinergic pedunculopontine neurons are differentially modulated during global brain states H Roš, PJ Magill, J Moss, JP Bolam, J Mena-Segovia Neuroscience 170 (1), 78-91, 2010 | 73 | 2010 |
Subpopulations of cholinergic, GABAergic and glutamatergic neurons in the pedunculopontine nucleus contain calcium‐binding proteins and are heterogeneously distributed C Martinez‐Gonzalez, HL Wang, BR Micklem, JP Bolam, J Mena‐Segovia European Journal of Neuroscience 35 (5), 723-734, 2012 | 67 | 2012 |
Cholinergic midbrain afferents modulate striatal circuits and shape encoding of action strategies D Dautan, I Huerta-Ocampo, NK Gut, M Valencia, K Kondabolu, Y Kim, ... Nature communications 11 (1), 1739, 2020 | 64 | 2020 |
Modulation of motor behavior by the mesencephalic locomotor region D Dautan, A Kovács, T Bayasgalan, MA Diaz-Acevedo, B Pal, ... Cell reports 36 (8), 2021 | 63 | 2021 |
Structural and functional considerations of the cholinergic brainstem J Mena-Segovia Journal of Neural Transmission 123 (7), 731-736, 2016 | 59 | 2016 |
Targeted activation of cholinergic interneurons accounts for the modulation of dopamine by striatal nicotinic receptors KR Brimblecombe, S Threlfell, D Dautan, P Kosillo, J Mena-Segovia, ... Eneuro 5 (5), 2018 | 55 | 2018 |
Decoding brain state transitions in the pedunculopontine nucleus: cooperative phasic and tonic mechanisms A Petzold, M Valencia, B Pál, J Mena-Segovia Frontiers in Neural Circuits 9, 68, 2015 | 51 | 2015 |
Pedunculopontine glutamatergic neurons provide a novel source of feedforward inhibition in the striatum by selectively targeting interneurons M Assous, D Dautan, JM Tepper, J Mena-Segovia Journal of Neuroscience 39 (24), 4727-4737, 2019 | 49 | 2019 |
Changes in sleep–waking cycle after striatal excitotoxic lesions J Mena-Segovia, L Cintra, O Prospéro-Garcı́a, M Giordano Behavioural brain research 136 (2), 475-481, 2002 | 43 | 2002 |