The objective of this proposal is to enhance the research capabilities and collaborative efforts of the vision researchers at the Columbia University Medical Center. State-of-the-art vision research often requires the custom fabrication of mechanical instruments to support the research. Support is requested for a single module to renovate and support the machine shop in the Harkness Eye Institute at Columbia University, to be shared primarily between the Department of Ophthalmology and the Mahoney Center for Brain and Behavior. The module will have 10 users, 7 of whom have NEI-funded RO1 grants, and 3 of whom perform research in the area of visual systems neuroscience on grants funded by the NIMH. All of the investigators are also mentors on an NEI-funded training grant. The current systems projects include studies of the neurophysiology and psychophysics of spatial vision, visual attention, early cortical processing, visual emotional association, and visual motion; the cellular and molecular projects include studies of fluid transport across corneal epithelium, retinal axon guidance, ocular wound healing, and the impact of the lipofuscin fluorophores on retinal pigmented epithelial cell function and viability. All of these projects require the development and fabrication of devices primarily designed for a given project. A great number of these can, when perfected, be shared among a number of projects. Examples of such devices include custom-made nanoliter injection devices, recording chambers, multiple-microdrive platforms, dual recording-iontophoretic devices, illumination devices, and recording gdds. The PI has extensive experience collaborating with machinists, and several of the devices in whose development he participated have been marketed commercially. Currently the Department of Ophthalmology has a fully-equipped machine shop the machines of which are all fine old Bridgeport and Hardinge manual machines. This proposal is to upgrade the machine shop, with a computer-controlled lathe and a computer-controlled milling machine, and to support the salary of the machinist who was hired in June, 2003, using university startup funds. The availability of an in-house professionally certified machinist will significantly speed the process of design and fabrication of custom instruments. The use of computer controlled machine tools will facilitate duplication of instruments usable in multiple laboratories.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Resource-Related Research Projects (R24)
Project #
5R24EY015634-02
Application #
6891373
Study Section
Special Emphasis Panel (ZEY1-VSN (03))
Program Officer
Helmsen, Ralph J
Project Start
2004-05-01
Project End
2009-04-30
Budget Start
2005-05-01
Budget End
2006-04-30
Support Year
2
Fiscal Year
2005
Total Cost
$175,413
Indirect Cost
Name
Columbia University (N.Y.)
Department
Neurosciences
Type
Schools of Medicine
DUNS #
621889815
City
New York
State
NY
Country
United States
Zip Code
10032
Semework, Mulugeta; Steenrod, Sara C; Goldberg, Michael E (2018) A spatial memory signal shows that the parietal cortex has access to a craniotopic representation of space. Elife 7:
Zhang, Wujie; Falkner, Annegret L; Krishna, B Suresh et al. (2017) Coupling between One-Dimensional Networks Reconciles Conflicting Dynamics in LIP and Reveals Its Recurrent Circuitry. Neuron 93:221-234
Foley, Nicholas C; Kelly, Simon P; Mhatre, Himanshu et al. (2017) Parietal neurons encode expected gains in instrumental information. Proc Natl Acad Sci U S A 114:E3315-E3323
Krishna, B Suresh; Ipata, Anna E; Bisley, James W et al. (2014) Extrafoveal preview benefit during free-viewing visual search in the monkey. J Vis 14:
Zhang, Mingsha; Wang, Xiaolan; Goldberg, Michael E (2014) A spatially nonselective baseline signal in parietal cortex reflects the probability of a monkey's success on the current trial. Proc Natl Acad Sci U S A 111:8967-72
Foley, Nicholas C; Jangraw, David C; Peck, Christopher et al. (2014) Novelty enhances visual salience independently of reward in the parietal lobe. J Neurosci 34:7947-57
Falkner, Annegret L; Goldberg, Michael E; Krishna, B Suresh (2013) Spatial representation and cognitive modulation of response variability in the lateral intraparietal area priority map. J Neurosci 33:16117-30
Steenrod, Sara C; Phillips, Matthew H; Goldberg, Michael E (2013) The lateral intraparietal area codes the location of saccade targets and not the dimension of the saccades that will be made to acquire them. J Neurophysiol 109:2596-605
Ipata, Anna E; Gee, Angela L; Goldberg, Michael E (2012) Feature attention evokes task-specific pattern selectivity in V4 neurons. Proc Natl Acad Sci U S A 109:16778-85
Xu, Benjamin Y; Karachi, Carine; Goldberg, Michael E (2012) The postsaccadic unreliability of gain fields renders it unlikely that the motor system can use them to calculate target position in space. Neuron 76:1201-9

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