The goals of the Stanford Neurosciences Program are to train PhD students as leaders in neuroscience research and teaching. We request continued funding to support our integrated program that trains each student in the study of the nervous system from molecules to behavior. Our program continues to adapt to the ever changing state of the art of the science as well as preparation required for the various roles of our graduates. Teaching students how to identify approach and solve specific research problems will promote their professional development as independent scientists and will contribute new knowledge to the fight against neurological and psychiatric disease. To this end the Program provides students with the opportunity to conduct cutting edge neurobiological research in any of a broad range of disciplines including molecular and cell biology, genetics, biophysics, electrophysiology, anatomy, computational modeling, neuroimaging, and the quantitative study of behavior. Formal course work requires students to examine how the nervous system functions at all levels, during development, and in normal and diseased states. It requires students to integrate this knowledge across levels and to apply it to their specific research goals. The Program incorporates added depth and breadth via a suite of activities including a laboratory boot camp, retreats, seminar series, summer courses, and networking opportunities. All students will be enrolled in the Interdepartmental Program in Neuroscience, the only academic body at Stanford that awards a PhD in the neurosciences. The training faculty is composed of 91 researchers from 22 Departments in 3 Schools. The faculty is highly interactive, intellectually diverse, and their research efforts well-funded. Their research covers nearly every aspect of neuroscience, with concentrations in cellular/molecular, computational, developmental, systems/cognitive/behavioral neuroscience, membrane excitability and neurobiology of disease. Trainees are required to rotate through three labs before committing to a preceptor. Course requirements must be fulfilled with courses taught by different academic departments, and the members of the examination and thesis committees must be from more than one department. The Program Committee, which is the governing body, is composed of Program faculty from eight departments, along with student representatives. Admissions and curriculum issues are handled by separate committees, each composed of similarly diverse faculty/student groups. Admitted students are among the most outstanding candidates in the nation. Past trainees of the Neurosciences Program have been extremely successful in pursuing academic research careers. Maintenance of this training program is critical to neuroscience at Stanford, as this program ensures access of students to faculty at all career stages, ensures we can recruit the highest level of students to the Program and serves as the core through which a diverse and vibrant faculty can establish collaborative efforts.

Public Health Relevance

Funding is requested for the continued support of a broad, interdisciplinary and translational training program for PhD students in neurosciences. Our program prepares students for a career in neuroscience, whether it is academic or industrial, by providing access to cutting edge technologies in the laboratories of highly successful and integrative investigators. The diversity of research topics, the availability of novel technologies the highly collaborative nature of the program and the success of the current faculty are unique to the Stanford Neuroscience Program.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Institutional National Research Service Award (T32)
Project #
5T32MH020016-18
Application #
8875756
Study Section
Special Emphasis Panel (ZNS1)
Program Officer
Desmond, Nancy L
Project Start
1997-09-30
Project End
2016-06-30
Budget Start
2015-07-01
Budget End
2016-06-30
Support Year
18
Fiscal Year
2015
Total Cost
Indirect Cost
Name
Stanford University
Department
Neurology
Type
Schools of Medicine
DUNS #
009214214
City
Stanford
State
CA
Country
United States
Zip Code
94304
Campbell, Malcolm G; Ocko, Samuel A; Mallory, Caitlin S et al. (2018) Principles governing the integration of landmark and self-motion cues in entorhinal cortical codes for navigation. Nat Neurosci 21:1096-1106
Zou, Wei; Dong, Xintong; Broederdorf, Timothy R et al. (2018) A Dendritic Guidance Receptor Complex Brings Together Distinct Actin Regulators to Drive Efficient F-Actin Assembly and Branching. Dev Cell 45:362-375.e3
Gupta, Anika; Sun, Min Woo; Paskov, Kelley Marie et al. (2018) Coalitional game theory as a promising approach to identify candidate autism genes. Pac Symp Biocomput 23:436-447
Perry, LeeAnn M; Goldstein-Piekarski, Andrea N; Williams, Leanne M (2017) Sex differences modulating serotonergic polymorphisms implicated in the mechanistic pathways of risk for depression and related disorders. J Neurosci Res 95:737-762
Payne, Hannah L; Raymond, Jennifer L (2017) Magnetic eye tracking in mice. Elife 6:
Fernandez, Corey; Iyer, Manasi; Low, Isabel (2017) Gpr126 Is Critical for Schwann Cell Function during Peripheral Nerve Regeneration. J Neurosci 37:3106-3108
Seigneur, Erica; Südhof, Thomas C (2017) Cerebellins are differentially expressed in selective subsets of neurons throughout the brain. J Comp Neurol 525:3286-3311
O'Shea, Daniel J; Trautmann, Eric; Chandrasekaran, Chandramouli et al. (2017) The need for calcium imaging in nonhuman primates: New motor neuroscience and brain-machine interfaces. Exp Neurol 287:437-451
Zhang, B; Seigneur, E; Wei, P et al. (2017) Developmental plasticity shapes synaptic phenotypes of autism-associated neuroligin-3 mutations in the calyx of Held. Mol Psychiatry 22:1483-1491
Hardcastle, Kiah; Maheswaranathan, Niru; Ganguli, Surya et al. (2017) A Multiplexed, Heterogeneous, and Adaptive Code for Navigation in Medial Entorhinal Cortex. Neuron 94:375-387.e7

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