1789506000
The following programs are available to U.S. Scholars in India
Code
IN
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Grant
Growth Factor Releasing Layered Scaffold Structures for Vascular Tissue Engineering
Growth Factor Releasing Layered Scaffold Structures for Vascular Tissue Engineering
Grant
International Education Administrators Seminar
International Education Administrators Seminar
Grant
Greenhouse Gas Mitigation and Improvement of Crop Production by Methane Driven Biological Functions in Agricultural Soil Ecosystem
Greenhouse Gas Mitigation and Improvement of Crop Production by Methane Driven Biological Functions in Agricultural Soil Ecosystem
Grant
Elucidation of Small RNA Mediated Cross-Kingdom RNAi Mechanisms in Tomato: Phytophthora Interactions
Elucidation of Small RNA Mediated Cross-Kingdom RNAi Mechanisms in Tomato: Phytophthora Interactions
Grant
Impact of Climate Variation and Change on Vectorial Capacity of Indian Mosquitoes for Urban Arboviruses
Impact of Climate Variation and Change on Vectorial Capacity of Indian Mosquitoes for Urban Arboviruses
Grant
Elucidating the Structural Basis of Regulation of Heteromeric GluK2/K5 Kainate Receptor Activity by Auxiliary Neto Proteins
Elucidating the Structural Basis of Regulation of Heteromeric GluK2/K5 Kainate Receptor Activity by Auxiliary Neto Proteins
Grant
Development of Genetically Encoded Biosensors for Small Molecules
Development of Genetically Encoded Biosensors for Small Molecules
Grant
Screening and Characterization of Small Molecule Inhibitors Against Rabies Virus
Screening and Characterization of Small Molecule Inhibitors Against Rabies Virus
Grant
Combinatorial Cassette Platform for Assessing Tissue Regeneration Variability in Bioengineered Stem Cell-Derived Granfts
Combinatorial Cassette Platform for Assessing Tissue Regeneration Variability in Bioengineered Stem Cell-Derived Granfts
Grant
Coupling of Hydrogen Sulfide and Nitric Oxide Signaling in Endothelium in Simulated Microgravity: A Bioengineering Approach to the Management of Wounds
Coupling of Hydrogen Sulfide and Nitric Oxide Signaling in Endothelium in Simulated Microgravity: A Bioengineering Approach to the Management of Wounds