Jack Mellor

Affiliations: 
University of Bristol, Bristol, England, United Kingdom 
Google:
"Jack Mellor"
Mean distance: (not calculated yet)
 
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Dunot J, Moreno S, Gandin C, et al. (2024) APP fragment controls both ionotropic and non-ionotropic signaling of NMDA receptors. Neuron
Griesius S, O'Donnell C, Waldron S, et al. (2024) Correction: Reduced expression of the psychiatric risk gene DLG2 (PSD93) impairs hippocampal synaptic integration and plasticity. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology
Nair JD, Wilkinson KA, Yucel BP, et al. (2023) GluK2 Q/R editing regulates kainate receptor signaling and long-term potentiation of AMPA receptors. Iscience. 26: 107708
Griesius S, O'Donnell C, Waldron S, et al. (2022) Reduced expression of the psychiatric risk gene DLG2 (PSD93) impairs hippocampal synaptic integration and plasticity. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology
Palacios-Filardo J, Udakis M, Brown GA, et al. (2021) Author Correction: Acetylcholine prioritises direct synaptic inputs from entorhinal cortex to CA1 by differential modulation of feedforward inhibitory circuits. Nature Communications. 12: 7265
Humphries R, Mellor JR, O'Donnell C. (2021) Acetylcholine boosts dendritic NMDA spikes in a CA3 pyramidal neuron model. Neuroscience
Prince LY, Bacon T, Humphries R, et al. (2021) Separable actions of acetylcholine and noradrenaline on neuronal ensemble formation in hippocampal CA3 circuits. Plos Computational Biology. 17: e1009435
Nair JD, Braksator E, Yucel BP, et al. (2021) Sustained postsynaptic kainate receptor activation downregulates AMPA receptor surface expression and induces hippocampal LTD. Iscience. 24: 103029
Palacios-Filardo J, Udakis M, Brown GA, et al. (2021) Acetylcholine prioritises direct synaptic inputs from entorhinal cortex to CA1 by differential modulation of feedforward inhibitory circuits. Nature Communications. 12: 5475
Nair JD, Wilkinson KA, Henley JM, et al. (2021) Kainate Receptors and Synaptic Plasticity. Neuropharmacology. 108540
See more...