Funds are requested by a group of 37 vision scientists to support four research modules that will provide a mechanism to facilitate and enhance interaction among the vision scientists in the various disciplines represented at the Eye Research Institute. The modules will extend research endeavors of individual research programs by providing collaborative opportunities for projects in which investigators do not have expertise, funding, or technical capabilities. The four module are: Morphology, Tissue Culture/Monoclonal Antibody, Animal Resource, and Laboratory Computer Applications. The Morphology Module will provide light and electron microscopy capabilities, thereby increasing the availability of morphological techniques to biochemists, pharmacologists, and immunologists who need correlative morphologic data for their research. The Tissue Culture/Monoclonal Antibody Module will assist PIs in selecting appropriate tissue culture techniques and media and in producing characterized tissue cultures of ocular origin, and will be responsible for cell fusions and storage of designated clones for monoclonal antibody production. Such a resource will augment the research of investigators who primary expertise lies in other technologies. The Animal Resource Module will provide expertise and assistance in animal surgical techniques and postoperative care, anesthesia administration, administration of drugs and medications, and antigen injections and bleedings required for polyclonal antibody production. The Laboratory Computer Applications Module will provide support to individual and collaborative efforts by assisting in the interfacing of microcomputers with laboratory equipment and by developing software for gathering, processing, and analyzing experimental data by microcomputer systems. The modules will be staffed by personnel with specialized training in the respective fields. Each module will be under the immediate supervision of a well-established investigator(s) have experience in that area. The module heads will constitute the Core Grant administrative committee, which will in turn be responsible for a committee of senior investigators comprising heads of the research units of ERI.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Center Core Grants (P30)
Project #
5P30EY003790-08
Application #
3102592
Study Section
Vision Research and Training Committee (VSN)
Project Start
1981-08-01
Project End
1991-07-31
Budget Start
1988-08-01
Budget End
1989-07-31
Support Year
8
Fiscal Year
1988
Total Cost
Indirect Cost
Name
Schepens Eye Research Institute
Department
Type
DUNS #
City
Boston
State
MA
Country
United States
Zip Code
02114
Houston, Kevin E; Bowers, Alex R; Peli, Eli et al. (2018) Peripheral Prisms Improve Obstacle Detection during Simulated Walking for Patients with Left Hemispatial Neglect and Hemianopia. Optom Vis Sci 95:795-804
Houston, Kevin E; Peli, Eli; Goldstein, Robert B et al. (2018) Driving With Hemianopia VI: Peripheral Prisms and Perceptual-Motor Training Improve Detection in a Driving Simulator. Transl Vis Sci Technol 7:5
Jung, Jae-Hyun; Peli, Eli (2018) No Useful Field Expansion with Full-field Prisms. Optom Vis Sci 95:805-813
Katikireddy, Kishore Reddy; White, Tomas L; Miyajima, Taiga et al. (2018) NQO1 downregulation potentiates menadione-induced endothelial-mesenchymal transition during rosette formation in Fuchs endothelial corneal dystrophy. Free Radic Biol Med 116:19-30
Alavi, Maryam; Baranov, Petr (2018) The iPSc-Derived Retinal Tissue as a Tool to Study Growth Factor Production in the Eye. Adv Exp Med Biol 1074:619-624
Zhu, Ying; Pappas, Anthony C; Wang, Rui et al. (2018) Ultrastructural Morphology of the Optic Nerve Head in Aged and Glaucomatous Mice. Invest Ophthalmol Vis Sci 59:3984-3996
Bowers, Alex R; Bronstad, P Matthew; Spano, Lauren P et al. (2018) Evaluation of a Paradigm to Investigate Detection of Road Hazards when Using a Bioptic Telescope. Optom Vis Sci 95:785-794
Carvalho, Livia S; Xiao, Ru; Wassmer, Sarah J et al. (2018) Synthetic Adeno-Associated Viral Vector Efficiently Targets Mouse and Nonhuman Primate Retina In Vivo. Hum Gene Ther 29:771-784
Paschalis, Eleftherios I; Lei, Fengyang; Zhou, Chengxin et al. (2018) The Role of Microglia and Peripheral Monocytes in Retinal Damage after Corneal Chemical Injury. Am J Pathol 188:1580-1596
Rodriguez Benavente, Maria C; Argüeso, Pablo (2018) Glycosylation pathways at the ocular surface. Biochem Soc Trans 46:343-350

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