Browse by UCL people
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Number of items: 14.
Article
Arama, J;
Abitbol, K;
Goffin, D;
Fuchs, C;
Sihra, TS;
Thomson, AM;
Jovanovic, JN;
(2015)
GABAA receptor activity shapes the formation of inhibitory synapses between developing medium spiny neurons.
Frontiers in Cellulor Neuroscience
, 9
, Article 290. 10.3389/fncel.2015.00290.
|
Botcher, NA;
Falck, JE;
Thomson, AM;
Mercer, A;
(2014)
Distribution of interneurons in the CA2 region of the rat hippocampus.
Front Neuroanat
, 8
, Article 104. 10.3389/fnana.2014.00104.
|
Brown, LE;
Fuchs, C;
Nicholson, MW;
Stephenson, FA;
Thomson, AM;
Jovanovic, JN;
(2014)
Inhibitory synapse formation in a co-culture model incorporating GABAergic medium spiny neurons and HEK293 cells stably expressing GABAA receptors.
J Vis Exp
(93)
, Article e52115. 10.3791/52115.
|
Brown, LE;
Nicholson, MW;
Arama, JE;
Mercer, A;
Thomson, AM;
Jovanovic, JN;
(2016)
γ-aminobutyric acid type A (GABAA) receptor subunits play a direct structural role in synaptic contact formation via their N-terminal extracellular domains.
The Journal of Biological Chemistry
, 291
(27)
pp. 13926-13942.
10.1074/jbc.M116.714790.
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Ecker, A;
Romani, A;
Sáray, S;
Káli, S;
Migliore, M;
Falck, J;
Lange, S;
... Ramaswamy, S; + view all
(2020)
Data-driven integration of hippocampal CA1 synaptic physiology in silico.
Hippocampus
10.1002/hipo.23220.
(In press).
|
Fuchs, C;
Abitbol, K;
Burden, JJ;
Mercer, A;
Brown, L;
Iball, J;
Anne Stephenson, F;
... Jovanovic, JN; + view all
(2013)
GABAA receptors can initiate the formation of functional inhibitory GABAergic synapses.
Eur J Neurosci
, 38
(8)
pp. 3146-3158.
10.1111/ejn.12331.
|
Jovanovic, JN;
Thomson, AM;
(2011)
Development of cortical GABAergic innervation.
Front Cell Neurosci
, 5
, Article 14. 10.3389/fncel.2011.00014.
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Mercer, A;
Thomson, AM;
(2017)
Cornu Ammonis Regions–Antecedents of Cortical Layers?
Frontiers in Neuroanatomy
, 11
, Article 83. 10.3389/fnana.2017.00083.
|
Mercer, A;
Trigg, HL;
Thomson, AM;
(2007)
Characterization of neurons in the CA2 subfield of the adult rat hippocampus.
J Neurosci
, 27
(27)
7329 - 7338.
10.1523/JNEUROSCI.1829-07.2007.
|
Migliore, R;
Lupascu, CA;
Bologna, LL;
Romani, A;
Courcol, JD;
Antonel, S;
Van Geit, WAH;
... Migliore, M; + view all
(2018)
The physiological variability of channel density in hippocampal CA1 pyramidal cells and interneurons explored using a unified data-driven modeling workflow.
PLoS Computational Biology
, 14
(9)
, Article e1006423. 10.1371/journal.pcbi.1006423.
|
Thomson, AM;
(2021)
Circuits and Synapses: Hypothesis, Observation, Controversy and Serendipity – An Opinion Piece.
Frontiers in Neural Circuits
, 15
10.3389/fncir.2021.732315.
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Thomson, AM;
(2010)
Neocortical layer 6, a review.
Front Neuroanat
, 4
, Article 13. 10.3389/fnana.2010.00013.
|
Thomson, AM;
Bannister, AP;
Mercer, A;
Morris, OT;
(2002)
Target and temporal pattern selection at neocortical synapses.
Philos Trans R Soc Lond B Biol Sci
, 357
(1428)
1781 - 1791.
10.1098/rstb.2002.1163.
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Thomson, AM;
Lamy, C;
(2007)
Functional maps of neocortical local circuitry.
Front Neurosci
, 1
(1)
19 - 42.
10.3389/neuro.01.1.1.002.2007.
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