The Interdepartmental Program in Neuroscience (the Program) is a broad, multidisciplinary structure that spans resources across departments and centers throughout the University. The Program has undergone several evolutionary changes and most notably was structurally reorganized in 1997. Its new form is expanded and modernized to include additional departments and centers and has established a diverse set of governing and operating committees to insure long-term structure and flexibility required of a dynamic scientific and educational enterprise. The Program now encompasses the full spectrum of neurosciences, providing training opportunities in molecular, cellular, behavioral as well as systems. Particularly important to the vitality and future success of the Program is the large infusion of resources to recruit 15 - 18 new faculty in the neurosciences. These new faculty will further strengthen our goal to provide training opportunities across disciplines ranging from molecular to systems and behavioral neurosciences. A reorganizing principle was the development of a training environment where interdisciplinary approaches to problems could be pursued, thus allowing students to study a problem at multiple levels. Some structure for the approach was embodied in the upper level research themes; tracks which represent not boundaries to train within but represent the diverse levels of problem solving available to students. The program proposed in this application will be used exclusively for broad and basic support of students in their first two years of graduate study. Following commitment to a dissertation laboratory, students will be supported by either an investigator's individual grant or a specialized training grant. The continuity of training objectives established by the Program occurs throughout the student's tenure irrespective of the mechanism of his or her support and leads to a Ph.D. in Neuroscience.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Institutional National Research Service Award (T32)
Project #
1T32NS007489-01
Application #
6080591
Study Section
Special Emphasis Panel (ZMH1-BRB-I (02))
Program Officer
Khachaturian, Henry
Project Start
2000-09-30
Project End
2005-06-30
Budget Start
2000-09-30
Budget End
2001-06-30
Support Year
1
Fiscal Year
2000
Total Cost
$105,712
Indirect Cost
Name
University of Rochester
Department
Neurology
Type
Schools of Dentistry
DUNS #
208469486
City
Rochester
State
NY
Country
United States
Zip Code
14627
Oler, Jonathan A; Tromp, Do P M; Fox, Andrew S et al. (2017) Connectivity between the central nucleus of the amygdala and the bed nucleus of the stria terminalis in the non-human primate: neuronal tract tracing and developmental neuroimaging studies. Brain Struct Funct 222:21-39
Szpunar, Mercedes J; Belcher, Elizabeth K; Dawes, Ryan P et al. (2016) Sympathetic innervation, norepinephrine content, and norepinephrine turnover in orthotopic and spontaneous models of breast cancer. Brain Behav Immun 53:223-233
Sipe, G O; Lowery, R L; Tremblay, M-È et al. (2016) Microglial P2Y12 is necessary for synaptic plasticity in mouse visual cortex. Nat Commun 7:10905
Burke, Kathleen A; Dawes, Ryan P; Cheema, Mehar K et al. (2015) Second-harmonic generation scattering directionality predicts tumor cell motility in collagen gels. J Biomed Opt 20:051024
Rivera-Escalera, Fátima; Matousek, Sarah B; Ghosh, Simantini et al. (2014) Interleukin-1? mediated amyloid plaque clearance is independent of CCR2 signaling in the APP/PS1 mouse model of Alzheimer's disease. Neurobiol Dis 69:124-33
Mironova, Yevgeniya A; Giger, Roman J (2013) Where no synapses go: gatekeepers of circuit remodeling and synaptic strength. Trends Neurosci 36:363-73
Dickendesher, Travis L; Baldwin, Katherine T; Mironova, Yevgeniya A et al. (2012) NgR1 and NgR3 are receptors for chondroitin sulfate proteoglycans. Nat Neurosci 15:703-12
Iorizzo, Dana B; Riley, Meghan E; Hayhoe, Mary et al. (2011) Differential impact of partial cortical blindness on gaze strategies when sitting and walking - an immersive virtual reality study. Vision Res 51:1173-84
Robak, Laurie A; Venkatesh, Karthik; Lee, Hakjoo et al. (2009) Molecular basis of the interactions of the Nogo-66 receptor and its homolog NgR2 with myelin-associated glycoprotein: development of NgROMNI-Fc, a novel antagonist of CNS myelin inhibition. J Neurosci 29:5768-83
Su, Xiaomin; Maguire-Zeiss, Kathleen A; Giuliano, Rita et al. (2008) Synuclein activates microglia in a model of Parkinson's disease. Neurobiol Aging 29:1690-701

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