The training program in Cellular and Molecular Biology at Cornell University is based on our belief that cellular and molecular approaches provide the best insights when integrated with other levels of analysis of behavior. The six predoctoral students supported by this training grant are a subset of students for the Ph.D. degree in the Graduate Field of Neurobiology and Behavior. All students must meet the requirements of this Field, which provides students with a broad training in both neurobiology and behavior. In addition, students in the training program take a series of laboratory rotations as well as advanced lecture and laboratory courses to provide strength in cellular and molecular neurobiology. These are combined with a series of joule clubs and seminar series to remain current with the latest results. Our students benefit from interactions with other academic programs at Cornell, including biochemistry, molecular biology, genetics, pharmacology, chemistry, applied physics, biophysics and psychology, which offer courses and seminars of interest. Trainees are selected from prospective students who apply to the Graduate Field of Neurobiology and Behavior. They typically have completed a major in biological sciences, and have taken at least one course in neurobiology. These students are in the top 15 percentile on the graduate records examination, and nearly all have done research during their undergraduate education. The research areas represented by the core faculty include focus groups in the function of ion channels in neuronal signaling, molecular mechanisms of synaptic function and neuromodulation, neurodevelopment, neuropharmacology, sensory systems and animal communication, and neuroethology. Fully equipped facilities for all of the areas are available to the students both in faculty laboratories and in a number of shared facilities.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Institutional National Research Service Award (T32)
Project #
5T32GM007469-29
Application #
6915073
Study Section
National Institute of General Medical Sciences Initial Review Group (BRT)
Program Officer
Cole, Alison E
Project Start
1977-07-01
Project End
2007-06-30
Budget Start
2005-07-01
Budget End
2006-06-30
Support Year
29
Fiscal Year
2005
Total Cost
$209,609
Indirect Cost
Name
Cornell University
Department
Other Basic Sciences
Type
Schools of Arts and Sciences
DUNS #
872612445
City
Ithaca
State
NY
Country
United States
Zip Code
14850
Feng, Ni Y; Bass, Andrew H (2014) Melatonin action in a midbrain vocal-acoustic network. J Exp Biol 217:1046-57
Lawton, Kristy J; Wassmer, Taryn L; Deitcher, David L (2014) Conserved role of Drosophila melanogaster FoxP in motor coordination and courtship song. Behav Brain Res 268:213-21
Fergus, Daniel J; Shaw, Kerry L (2013) Circadian rhythms and period expression in the Hawaiian cricket genus Laupala. Behav Genet 43:241-53
Dillon, T Samuel; Fox, Laura C; Han, Crystal et al. (2013) 17?-estradiol enhances memory duration in the main olfactory bulb in CD-1 mice. Behav Neurosci 127:923-31
Kisler, Kassandra; Kim, Brian N; Liu, Xin et al. (2012) Transparent Electrode Materials for Simultaneous Amperometric Detection of Exocytosis and Fluorescence Microscopy. J Biomater Nanobiotechnol 3:243-253
Gallant, Jason R; Hopkins, Carl D; Deitcher, David L (2012) Differential expression of genes and proteins between electric organ and skeletal muscle in the mormyrid electric fish Brienomyrus brachyistius. J Exp Biol 215:2479-94
Abbinanti, Matthew D; Harris-Warrick, Ronald M (2012) Serotonin modulates multiple calcium current subtypes in commissural interneurons of the neonatal mouse. J Neurophysiol 107:2212-9
Abbinanti, Matthew D; Zhong, Guisheng; Harris-Warrick, Ronald M (2012) Postnatal emergence of serotonin-induced plateau potentials in commissural interneurons of the mouse spinal cord. J Neurophysiol 108:2191-202
Kadiri, Lolahon R; Kwan, Alex C; Webb, Watt W et al. (2011) Dopamine-induced oscillations of the pyloric pacemaker neuron rely on release of calcium from intracellular stores. J Neurophysiol 106:1288-98
Fergus, Daniel J; Decarvalho, Tagide N; Shaw, Kerry L (2011) Genetically regulated temporal variation of novel courtship elements in the Hawaiian cricket genus Laupala. Behav Genet 41:607-14

Showing the most recent 10 out of 46 publications