Alanna J. Watt

Affiliations: 
McGill University, Montreal, QC, Canada 
Area:
Cerebellum, development
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"Alanna Watt"
Mean distance: 13.59 (cluster 6)
 
SNBCP

Parents

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Roy Wise research assistant Concordia University Montreal
Gina G. Turrigiano grad student 2003 Brandeis
 (Proportional regulation of AMPA and NMDA currents by activity at neocortical synapses.)
Michael Häusser post-doc UCL (London)

Children

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Eviatar Fields grad student McGill
Sriram Jayabal grad student 2011- McGill
Kim M Gruver grad student 2016- McGill
BETA: Related publications

Publications

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Leung TCS, Fields E, Rana N, et al. (2024) Mitochondrial damage and impaired mitophagy contribute to disease progression in SCA6. Acta Neuropathologica. 147: 26
Wong HH, Watt AJ, Sjöström PJ. (2023) Synapse-specific burst coding sustained by local axonal translation. Neuron
Wong HH, Chou CYC, Watt AJ, et al. (2023) Comparing mouse and human brains. Elife. 12
Cook AA, Jayabal S, Sheng J, et al. (2022) Activation of TrkB-Akt signaling rescues deficits in a mouse model of SCA6. Science Advances. 8: eabh3260
Lang-Ouellette D, Gruver KM, Smith-Dijak A, et al. (2021) Purkinje cell axonal swellings enhance action potential fidelity and cerebellar function. Nature Communications. 12: 4129
Hooshmandi M, Truong VT, Fields E, et al. (2021) 4E-BP2-dependent translation in cerebellar Purkinje cells controls spatial memory but not autism-like behaviors. Cell Reports. 35: 109036
Cook AA, Fields E, Watt AJ. (2020) Losing the beat: contribution of Purkinje cell firing dysfunction to disease, and its reversal. Neuroscience
Gruver KM, Watt AJ. (2019) Optimizing Optogenetic Activation of Purkinje Cell Axons to Investigate the Purkinje Cell - DCN Synapse. Frontiers in Synaptic Neuroscience. 11: 31
Li L, Jayabal S, Ghorbani M, et al. (2019) ATAT1 regulates forebrain development and stress-induced tubulin hyperacetylation. Cellular and Molecular Life Sciences : Cmls
Ady V, Toscano-Márquez B, Nath M, et al. (2018) Altered synaptic and firing properties of cerebellar Purkinje cells in a mouse model of ARSACS. The Journal of Physiology
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