Luke Coddington
Affiliations: | Neurobiology | University of Alabama, Birmingham, Birmingham, AL, United States |
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"Luke Coddington"Mean distance: 15.73 (cluster 11) | S | N | B | C | P |
Parents
Sign in to add mentorJacques I. Wadiche | grad student | 2009-2014 | Janelia Farm / HHMI |
Joshua T. Dudman | post-doc | HHMI Janelia Research Campus |
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Publications
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Pennock RL, Coddington LT, Yan X, et al. (2023) Afferent convergence to a shared population of interneuron AMPA receptors. Nature Communications. 14: 3113 |
Coddington LT, Lindo SE, Dudman JT. (2023) Mesolimbic dopamine adapts the rate of learning from action. Nature. 614: 294-302 |
Pan WX, Coddington LT, Dudman JT. (2021) Dissociable contributions of phasic dopamine activity to reward and prediction. Cell Reports. 36: 109684 |
Coddington LT, Dudman JT. (2021) In Vivo Optogenetics with Stimulus Calibration. Methods in Molecular Biology (Clifton, N.J.). 2188: 273-283 |
Park J, Coddington LT, Dudman JT. (2020) Basal Ganglia Circuits for Action Specification. Annual Review of Neuroscience |
Coddington LT, Dudman JT. (2019) Learning from Action: Reconsidering Movement Signaling in Midbrain Dopamine Neuron Activity. Neuron. 104: 63-77 |
Brown J, Behnam R, Coddington L, et al. (2018) Expanding the Optogenetics Toolkit by Topological Inversion of Rhodopsins. Cell |
Coddington LT, Dudman JT. (2018) The timing of action determines reward prediction signals in identified midbrain dopamine neurons. Nature Neuroscience. 21: 1563-1573 |
Nietz AK, Vaden JH, Coddington LT, et al. (2017) Non-synaptic signaling from cerebellar climbing fibers modulates Golgi cell activity. Elife. 6 |
Coddington LT, Nietz AK, Wadiche JI. (2014) The contribution of extrasynaptic signaling to cerebellar information processing. Cerebellum (London, England). 13: 513-20 |