Project Grant RF1NS132812

Award Date 8/4/23
Completion Date 7/31/26
Dollars Obligated $2.9M
Federal Grant Program
93.372
Assistance Type
Project Grant
Place of Performance
Bronx, NY 10461, USA
Similar Awards
This Project Grant award from the National Institute on Deafness and Other Communication Disorders (NIDCD), under the CFDA program "Research Related to Deafness and Communication Disorders" (93.173), provides $693,856 to The Regents of the University of California, San Francisco (UCSF) to conduct research on the structure and function of coordinated neural activity in the auditory system. The key objectives of this 5-year research project are to: 1) Identify coordinated neural...
This federal Project Grant award of $193,750.00, provided by the National Institute on Deafness and Other Communication Disorders (NIDCD) under the Research Related to Deafness and Communication Disorders program (CFDA 93.173), will fund research to investigate neural dynamics and circuits in the auditory cortex during implicit learning of complex sounds. The research, conducted by The Johns Hopkins University, aims to gain a comprehensive understanding of the neural mechanisms underlying the...
This federal Project Grant award for $146,206, awarded on December 15, 2024 by the National Institute on Deafness and Other Communication Disorders (NIDCD), supports research on the "Cortical and Subcortical Dynamics in the Central Auditory System Across Learning and Overtraining". The project, which runs through August 15, 2027, aims to investigate how the auditory cortex interacts with subcortical regions like the medial geniculate body and inferior colliculus to support auditory...
The Johns Hopkins University was awarded a $2,008,605 Project Grant under the National Institute of Neurological Disorders and Stroke's 21st Century Cures Act - Brain Research through Advancing Innovative Neurotechnologies (BRAIN) Initiative (CFDA 93.372). The grant funding will support the development of an "Autonomous Rapidly Adaptive Multiphoton Microscope for Neural Recording and Stimulation." This adaptive multiphoton microscope system will leverage hybrid volumetric scanning,...
The National Institute of Neurological Disorders and Stroke (NINDS) awarded The Trustees of Columbia University in the City of New York, doing business as the Health Sciences Division, a $2,554,313 federal Project Grant under the 21st Century Cures Act - Brain Research through Advancing Innovative Neurotechnologies (BRAIN) Initiative (CFDA 93.372). The grant, which runs from Sep 1, 2023 to Aug 31, 2026, will support research to determine if targeted in vivo manipulations of local circuit control...
This $401,918 federal Project Grant award from the National Science Foundation's (NSF) Social, Behavioral, and Economic Sciences (CFDA 47.075) program supports research by the University of Rochester to investigate neural mechanisms underlying how the brain processes complex sounds like speech and music across different timescales. The key objectives are to use computational models and neural recordings from auditory cortex to understand the brain's flexible integration of sound information over...
This $594,286 Project Grant award from the National Institute of Neurological Disorders and Stroke (NINDS), under the Extramural Research Programs in the Neurosciences and Neurological Disorders (CFDA 93.853) federal grant program, will support research to explore the functional logic of local circuits in auditory and parietal cortices. The key research objectives are to: Compare the spatial and functional structure of excitatory impacts on local populations in primary auditory cortex (A1) and...
The University of North Carolina at Chapel Hill will receive $3,076,632 under a three-year Project Grant from the National Institute of Neurological Disorders and Stroke to conduct research on cortical circuits for the integration of parallel short-latency auditory pathways. The grant will support research from July 2022 through June 2025 under the Extramural Research Programs in the Neurosciences and Neurological Disorders program (CFDA 93.853), which funds basic and clinical neuroscience...
This $422,562 federal Project Grant award from the National Science Foundation's Social, Behavioral, and Economic Sciences (CFDA 47.075) program will support research at the University of Michigan to investigate the role of top-down auditory processing in human perception and attention. The goal is to understand how higher brain areas interact with lower auditory centers in the brainstem and midbrain to enable listeners to understand speech in noisy environments. The research will use advanced...
This federal Project Grant award of $673,581.00, awarded on April 17, 2025 by the National Institute of Neurological Disorders and Stroke (NINDS) under the Extramural Research Programs in the Neurosciences and Neurological Disorders (CFDA 93.853) program, supports research by New York University (NYU) to investigate the neural mechanisms underlying statistical learning, a fundamental cognitive process. The research aims to build a mechanistic neurobiological circuit theory of statistical...

The National Institute of Neurological Disorders and Stroke has awarded Albert Einstein College of Medicine a $2,923,021 Project Grant under the 21st Century Cures Act - Brain Research through Advancing Innovative Neurotechnologies (BRAIN) Initiative (CFDA 93.372). The grant, titled "Integrative Analysis of Adaptive Information Processing and Learning-Dependent Circuit Reorganization in the Auditory System," will fund research to investigate the neural mechanisms underlying auditory processing, spatial tuning, and experience-dependent plasticity. The project will use a combination of electrophysiology, microscopy, and computational modeling to establish links between synaptic integration, population coding, and learning-induced changes in auditory circuits. Seattle University, UC Davis, and UC San Diego are serving as sub-awardees on this multi-institutional collaborative effort. The project aims to advance the fundamental understanding of information processing and adaptive plasticity within the auditory system from the cellular to behavioral levels.

Generated 7/16/24, 10:41 AM