The objective of this application is to provide NEI-funded vision scientists with additional, shared support to enhance their individual research capabilities. A further goal is to enhance the research capability of Washington University for conducting vision research by encouraging collaborative studies and attracting other scientists to vision research. These objectives will be will be achieved by operating the following the following 5 core modules. A morphology core module will provide technical support and expertise in histological procedures, antibody staining, in situ hybridization, and with standard and specialized light and electron microscopy. An electronics services core module will design and fabricate devices for research investigators, will provide diagnosis, repair and maintenance of research instruments and will assist in modification and/or development of computer software preparation and use of DNA clones and probes, design of polymerase chain reaction components, DNA sequencing, DNA and protein sequence data management and analysis, phosphorimaging, and gel provide statistical and methodological expertise in study design, will assist to assure validity of statistical analyses and reported results, and will assist in the training of residents and clinicians in areas of research methodology. A digital imaging core module will provide assistance and expertise in the acquisition, manipulation and analysis of digital images captured by various imaging devices. Assistance with image manipulation for digital presentations as well as for both print and electronic publication will be provided. Provision of these support services and resources will greatly enhance the research capabilities of investigators at Washington University and will facilitate collaboration among new and e and established vision scientists.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Center Core Grants (P30)
Project #
2P30EY002687-22
Application #
6144531
Study Section
Special Emphasis Panel (ZEY1-VSN (01))
Program Officer
Helmsen, Ralph J
Project Start
1995-04-01
Project End
2005-03-31
Budget Start
2000-04-01
Budget End
2001-03-31
Support Year
22
Fiscal Year
2000
Total Cost
$438,190
Indirect Cost
Name
Washington University
Department
Ophthalmology
Type
Schools of Medicine
DUNS #
062761671
City
Saint Louis
State
MO
Country
United States
Zip Code
63130
Vinberg, Frans; Kefalov, Vladimir J (2018) Investigating the Ca2+-dependent and Ca2+-independent mechanisms for mammalian cone light adaptation. Sci Rep 8:15864
Lin, Jonathan B; Sene, Abdoulaye; Santeford, Andrea et al. (2018) Oxysterol Signatures Distinguish Age-Related Macular Degeneration from Physiologic Aging. EBioMedicine 32:9-20
Johnson, Keith P; Zhao, Lei; Kerschensteiner, Daniel (2018) A Pixel-Encoder Retinal Ganglion Cell with Spatially Offset Excitatory and Inhibitory Receptive Fields. Cell Rep 22:1462-1472
Zhou, Yuefang; Shiels, Alan (2018) Epha2 and Efna5 participate in lens cell pattern-formation. Differentiation 102:1-9
Lin, Jonathan B; Apte, Rajendra S (2018) NAD+ and sirtuins in retinal degenerative diseases: A look at future therapies. Prog Retin Eye Res 67:118-129
Porter, Lane C; Franczyk, Michael P; Pietka, Terri et al. (2018) NAD+-dependent deacetylase SIRT3 in adipocytes is dispensable for maintaining normal adipose tissue mitochondrial function and whole body metabolism. Am J Physiol Endocrinol Metab 315:E520-E530
De Maria, Alicia; Zhao, Haiqing; Bassnett, Steven (2018) Expression of potassium-dependent sodium-calcium exchanger in the murine lens. Exp Eye Res 167:18-24
Lin, Joseph B; Sene, Abdoulaye; Wiley, Luke A et al. (2018) WNT7A/B promote choroidal neovascularization. Exp Eye Res 174:107-112
Kiser, Philip D; Zhang, Jianye; Sharma, Aditya et al. (2018) Retinoid isomerase inhibitors impair but do not block mammalian cone photoreceptor function. J Gen Physiol 150:571-590
Soto, Florentina; Zhao, Lei; Kerschensteiner, Daniel (2018) Synapse maintenance and restoration in the retina by NGL2. Elife 7:

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