NEI-supported investigators and their collaborators from Duke University (Duke), The University of North Carolina at Chapel Hill (UNC) and North Carolina State University (NCSU) request continuing support for a Core Grant for Vision Research. These researchers are from Departments of Ophthalmology, Medicine, Neurobiology, Pathology, and Cell Biology. Research areas covered by this group range from deciphering basic mechanisms of signal transduction to delineating functional organization of the visual cortex, and from identifying disease genes to finding effective therapy for specific eye disorders. For the past 20 years, we have used the NEI Core Grant to develop and update our resource modules, thus enhancing the capabilities of individual NEI-supported investigators and our institutions to conduct vision research. The Core Grant effectively provides (1) shared resources and services that are not readily supported by individual research grants and (2) an atmosphere conducive to sharing current techniques; both are critical to the successful research of individual investigators. Furthermore, the same infrastructure facilitates the participation of clinical ophthalmologists at Duke, and especially the development of clinician scientists. It thus supports and facilitates the process of translating the discoveries from basic research into new diagnostic and therapeutic applications directly related to human eye diseases. We request continuing support for three resource modules: Morphology/Image Processing Module, Proteomics/Molecular Biology Module, and Animal Models Module. Support of these shared resources, particularly in the present environment of newly-added research space and faculty at Duke, is vital to the creation of synergy that will give impetus to our vision research group in reaching a level of success that is greater than the sum of the individual investigator's expected achievements. ? ? ? ?

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Center Core Grants (P30)
Project #
2P30EY005722-21
Application #
7118462
Study Section
Special Emphasis Panel (ZEY1-VSN (03))
Program Officer
Chin, Hemin R
Project Start
1997-07-01
Project End
2011-06-30
Budget Start
2006-07-01
Budget End
2007-06-30
Support Year
21
Fiscal Year
2006
Total Cost
$732,218
Indirect Cost
Name
Duke University
Department
Ophthalmology
Type
Schools of Medicine
DUNS #
044387793
City
Durham
State
NC
Country
United States
Zip Code
27705
Dubose, Theodore B; Cunefare, David; Cole, Elijah et al. (2018) Statistical Models of Signal and Noise and Fundamental Limits of Segmentation Accuracy in Retinal Optical Coherence Tomography. IEEE Trans Med Imaging 37:1978-1988
Khaled, Mariam Lofty; Bykhovskaya, Yelena; Yablonski, Sarah E R et al. (2018) Differential Expression of Coding and Long Noncoding RNAs in Keratoconus-Affected Corneas. Invest Ophthalmol Vis Sci 59:2717-2728
McDonnell, Fiona; Dismuke, W Michael; Overby, Darryl R et al. (2018) Pharmacological regulation of outflow resistance distal to Schlemm's canal. Am J Physiol Cell Physiol 315:C44-C51
Tran-Viet, Du; Wong, Brittany M; Mangalesh, Shwetha et al. (2018) HANDHELD SPECTRAL DOMAIN OPTICAL COHERENCE TOMOGRAPHY IMAGING THROUGH THE UNDILATED PUPIL IN INFANTS BORN PRETERM OR WITH HYPOXIC INJURY OR HYDROCEPHALUS. Retina 38:1588-1594
Chen, Xi; Mangalesh, Shwetha; Dandridge, Alexandria et al. (2018) Spectral-Domain OCT Findings of Retinal Vascular-Avascular Junction in Infants with Retinopathy of Prematurity. Ophthalmol Retina 2:963-971
Prigge, Cameron L; Kay, Jeremy N (2018) Dendrite morphogenesis from birth to adulthood. Curr Opin Neurobiol 53:139-145
Dexter, Paige M; Lobanova, Ekaterina S; Finkelstein, Stella et al. (2018) Transducin ?-Subunit Can Interact with Multiple G-Protein ?-Subunits to Enable Light Detection by Rod Photoreceptors. eNeuro 5:
Berry, Duncan; Thomas, Akshay S; Fekrat, Sharon et al. (2018) Association of Disorganization of Retinal Inner Layers with Ischemic Index and Visual Acuity in Central Retinal Vein Occlusion. Ophthalmol Retina 2:1125-1132
Loo, Jessica; Fang, Leyuan; Cunefare, David et al. (2018) Deep longitudinal transfer learning-based automatic segmentation of photoreceptor ellipsoid zone defects on optical coherence tomography images of macular telangiectasia type 2. Biomed Opt Express 9:2681-2698
Chrispell, Jared D; Dong, Enheng; Osawa, Shoji et al. (2018) Grk1b and Grk7a Both Contribute to the Recovery of the Isolated Cone Photoresponse in Larval Zebrafish. Invest Ophthalmol Vis Sci 59:5116-5124

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