Jeremy S. Biane, Ph.D.

Institution:
University of California, San Diego, La Jolla, CA
Area:
plasticity, Alzheimer's, regeneration
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"Jeremy Biane"
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Parents

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Mark Tuszynski grad student 2013 UCSD
 (Cortical circuits, learning, and behavior: Local reorganization of synaptic partners and the expansion of the motor repertoire.)
Mazen A. Kheirbek post-doc 2018 UCSF
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Publications

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Biane JS, Ladow MA, Stefanini F, et al. (2023) Neural dynamics underlying associative learning in the dorsal and ventral hippocampus. Nature Neuroscience
Sinopoulou E, Rosenzweig ES, Conner JM, et al. (2022) Rhesus macaque versus rat divergence in the corticospinal projectome. Neuron
Woods NI, Stefanini F, Apodaca-Montano DL, et al. (2020) The Dentate Gyrus Classifies Cortical Representations of Learned Stimuli. Neuron
Biane JS, Takashima Y, Conner JM, et al. (2019) Reorganization of Recurrent Layer 5 Corticospinal Networks Following Adult Motor Training. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Jimenez JC, Su K, Goldberg AR, et al. (2018) Anxiety Cells in a Hippocampal-Hypothalamic Circuit. Neuron
Biane JS, Kheirbek MA. (2017) Imaging Adult Hippocampal Neurogenesis In Vivo. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology. 42: 373
Cai DJ, Aharoni D, Shuman T, et al. (2016) A shared neural ensemble links distinct contextual memories encoded close in time. Nature. 534: 115-8
Kadoya K, Lu P, Nguyen K, et al. (2016) Spinal cord reconstitution with homologous neural grafts enables robust corticospinal regeneration. Nature Medicine
Biane JS, Takashima Y, Scanziani M, et al. (2016) Thalamocortical Projections onto Behaviorally Relevant Neurons Exhibit Plasticity during Adult Motor Learning. Neuron
Biane JS, Scanziani M, Tuszynski MH, et al. (2015) Motor cortex maturation is associated with reductions in recurrent connectivity among functional subpopulations and increases in intrinsic excitability. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 4719-28
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