Robert D. Hawkins, Phd
Affiliations: | Columbia University, New York, NY |
Area:
Neurobiology of Learning and Memory, Synapses and CircuitsGoogle:
"Robert Hawkins"Mean distance: 106866
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Publications
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Jin I, Kassabov S, Kandel ER, et al. (2021) Possible novel features of synaptic regulation during long-term facilitation in . Learning & Memory (Cold Spring Harbor, N.Y.). 28: 218-227 |
Hawkins RD, Kandel ER. (2019) Comparison of the ionic currents modulated during activity-dependent and normal presynaptic facilitation. Learning & Memory (Cold Spring Harbor, N.Y.). 26: 449-454 |
Hawkins RD. (2019) The contributions and mechanisms of changes in excitability during simple forms of learning in Aplysia. Neurobiology of Learning and Memory. 164: 107049 |
Yang Q, Antonov I, Castillejos D, et al. (2018) Intermediate-term memory in involves neurotrophin signaling, transcription, and DNA methylation. Learning & Memory (Cold Spring Harbor, N.Y.). 25: 620-628 |
Jin I, Udo H, Nicholls R, et al. (2018) Autocrine signaling by an neurotrophin forms a presynaptic positive feedback loop. Proceedings of the National Academy of Sciences of the United States of America |
Jin I, Udo H, Kassabov S, et al. (2018) Anterograde and retrograde signaling by an neurotrophin forms a transsynaptic functional unit. Proceedings of the National Academy of Sciences of the United States of America |
Yang Q, Kuzyk P, Antonov I, et al. (2015) Hyperpolarization-activated, cyclic nucleotide-gated cation channels in Aplysia: Contribution to classical conditioning. Proceedings of the National Academy of Sciences of the United States of America |
Hawkins RD, Byrne JH. (2015) Associative learning in invertebrates. Cold Spring Harbor Perspectives in Biology. 7 |
Hawkins RD. (2013) Possible contributions of a novel form of synaptic plasticity in Aplysia to reward, memory, and their dysfunctions in mammalian brain Learning and Memory. 20: 580-591 |
Hawkins RD, Antonov I, Jin I. (2013) Mechanisms of Short-Term and Intermediate-Term Memory in Aplysia Handbook of Behavioral Neuroscience. 22: 194-205 |