Mark D. Humphries
Affiliations: | University of Manchester, Manchester, England, United Kingdom |
Area:
Computational neuroscience, Neural ensembles, Basal ganglia, Neural coherenceWebsite:
http://www.systemsneurophysiologylab.manchester.ac.uk/people/profile/?alias=humphriesmark#.WWPw1SeQxhEGoogle:
"Mark Humphries"Mean distance: (not calculated yet)
Parents
Sign in to add mentorKevin Gurney | grad student | 2002 | Sheffield University | |
(The basal ganglia and action selection: A computational study at multiple levels of description) |
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Publications
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Humphries MD, Gurney K. (2021) Making decisions in the dark basement of the brain: A look back at the GPR model of action selection and the basal ganglia. Biological Cybernetics |
Gilbertson T, Humphries M, Steele JD. (2019) Maladaptive striatal plasticity and abnormal reward-learning in cervical dystonia. European Journal of Neuroscience. 50: 3191-3204 |
Humphries MD, Obeso JA, Dreyer JK. (2018) Insights into Parkinson's disease from computational models of the basal ganglia. Journal of Neurology, Neurosurgery, and Psychiatry |
Caballero JA, Humphries MD, Gurney KN. (2018) A probabilistic, distributed, recursive mechanism for decision-making in the brain. Plos Computational Biology. 14: e1006033 |
Bruno AM, Frost WN, Humphries MD. (2017) A spiral attractor network drives rhythmic locomotion. Elife. 6 |
Gilbertson T, Humphries M, Steele D. (2017) PO079 Cervical dystonia is associated with abnormal reward based reinforcement learning Journal of Neurology, Neurosurgery, and Psychiatry. 88 |
Humphries MD. (2016) The Goldilocks zone in neural circuits. Elife. 5 |
Frost WN, Brandon CJ, Bruno AM, et al. (2015) Monitoring Spiking Activity of Many Individual Neurons in Invertebrate Ganglia. Advances in Experimental Medicine and Biology. 859: 127-45 |
Gurney KN, Humphries MD, Redgrave P. (2015) A new framework for cortico-striatal plasticity: behavioural theory meets in vitro data at the reinforcement-action interface. Plos Biology. 13: e1002034 |
Beste C, Humphries M, Saft C. (2014) Striatal disorders dissociate mechanisms of enhanced and impaired response selection - Evidence from cognitive neurophysiology and computational modelling. Neuroimage. Clinical. 4: 623-34 |