Project Grant 2320895
- This $4.5 million project grant from the National Institutes of Health's National Institute of Neurological Disorders and Stroke, under the 21st Century Cures Act Brain Research through Advancing Innovative Neurotechnologies program, will fund research at Baylor College of Medicine from August 2022 to July 2025. The grant aims to advance understanding of how the neuromodulators acetylcholine and norepinephrine shape cortical responses and influence behavior. Researchers will study the spatial...
- This National Science Foundation Project Grant of $790,344 awarded on July 1, 2022 will fund research at the University of California, San Diego examining the role of postsynaptic neurotransmitter receptors in influencing presynaptic neurotransmitter identity through retrograde signaling. The research, to be completed by June 30, 2025, aims to test the hypothesis that retrograde signaling from postsynaptic receptors stabilizes presynaptic neurotransmitter expression. It will investigate...
- This Project Grant from the National Science Foundation's Office of International Science and Engineering, under the CFDA program "Office of International Science and Engineering", provides $100,000 to develop a new computational framework for statistical inference of neuromodulation across species and spatial scales from large neural datasets. Vanderbilt University will analyze neural circuitry underlying changes in motivation, mood and alertness using a three-step approach. First,...
- This Project Grant award from the National Science Foundation's (NSF) Biological Sciences (CFDA 47.074) Federal Grant Program provides $500,000.00 to the Massachusetts Institute of Technology (MIT) from September 1, 2025 to August 31, 2028. The award will support a systematic study of the neural control of larval settlement in the genetically tractable jellyfish species Clytia. This research aims to gain a deeper understanding of the underlying neural mechanisms that govern the free-swimming...
- This Project Grant award from the National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) provides $1,000,000 in funding to Tufts University to study how a factor secreted from muscle regulates levels of neurotransmitter receptors in neurons that control movement in the roundworm Caenorhabditis elegans. The research aims to advance scientific understanding of how muscle releases factors that signal to the brain to control communication between neurons, which may provide...
- This $397,500 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) program is supporting research to study the fundamental principles linking neurodevelopmental processes to the functional organization of neural circuits. The goal is to understand how these principles could enable network-scale regeneration of the nervous system, which is a key medical...
- This Project Grant awarded by the National Science Foundation (NSF) Biological Sciences Program (CFDA 47.074) will support research to investigate the biochemical mechanisms that regulate receptor tyrosine kinase (RTK) proteins and their impact on the development of brain circuits controlling social and emotional behaviors. The $600,000 award, spanning 2025-2027, will be conducted by Children's Hospital Los Angeles, a prominent pediatric academic medical center and research institution. The...
- This Project Grant award from the National Institute of Mental Health (NIMH) under the Mental Health Research Grants program (CFDA 93.242) provides $434,610 to the Florida Institute of Technology Inc. (Florida TECH) for the development of light-triggered molecular tools to manipulate neuronal connections and study brain function. The principal investigator, Dr. Nasri Nesnas, will collaborate with neuroscientists, including Dr. Attila Losonczy from Columbia University, to design and utilize these...
- This Project Grant award from the National Science Foundation (NSF) Division of Electrical, Communications and Cyber Systems provides $372,722 to the University of Georgia Research Foundation, Inc. (UGA Research Foundation) to develop networks of lipid-coated droplets as model neurons capable of adapting their properties in response to the signals they transmit. The goal is to explore controlling the exchanges across the model synapses using emergent mechanics in networks of interconnected...
- This $1,417,500 Project Grant awarded by the National Institutes of Health (NIH) under the Trans-NIH Research Support program (CFDA 93.310) funds the development of "Electrified Cryo-EM", a novel tool that can kinetically trap biological systems in their metastable, non-equilibrium states. The research aims to unravel the structural changes in neurons during an action potential across multiple length scales, from voltage-gated channel proteins to the synaptic junction. Specifically,...
NEUROMODULATORS CONSTRAIN THE ACTIVITY OF NEURONS AND NEURONAL NETWORKS BY RESTRICTING THEIR PARAMETER SPACE -NEURONS ARE ORGANIZED INTO NETWORKS AND CIRCUITS. WHEN NEURONS AND NEURONAL CIRCUITS ARE PERTURBED BY TRAUMA, GROWTH, OR DISEASE, THE ACTIVITY OF NEURONS AND THE RELEASE OF SO-CALLED NEUROMODULATORS IS AFFECTED. HOWEVER, AFTER A DELAY FOLLOWING THE PERTURBATION, ACTIVITY OFTEN IS RESTORED THANKS TO MECHANISMS TRIGGERED BY CHANGES IN NEURAL ACTIVITY AND/OR EFFECTS OF THE NEUROMODULATORS. THESE MECHANISMS ARE NOT WELL UNDERSTOOD, ESPECIALLY NOT THE ROLE AND MECHANISMS OF THE NEUROMODULATORS. IN THIS PROJECT, THE ROLE THAT NEUROMODULATORS PLAY IN DETERMINING THE CONSTELLATIONS OF PROTEINS EXPRESSED BY INDIVIDUAL NEURONS WILL BE STUDIED, WITH AN EMPHASIS ON PROTEINS THAT CONSTITUTE CHANNELS IN THE CELL MEMBRANE OF NEURONS AND THAT AFFECT NEURAL ACTIVITY. THE OBJECTIVE IS TO IDENTIFY THE MECHANISMS ACTIVATED AFTER SEVERE PERTURBATION OF THE NEURAL NETWORK THAT LEAD TO THE RECOVERY OF THE NEURONS? NORMAL ACTIVITY. FOR THIS PURPOSE, A SMALL NEURAL NETWORK FROM CRABS IS USED BECAUSE THIS NETWORKS? NEURONAL COMPONENTS ARE FEW, VERY WELL KNOWN, AND RELATIVELY ACCESSIBLE EXPERIMENTALLY. STUDENTS OF ALL LEVELS (FROM HIGH SCHOOL TO DOCTORAL STUDENT) AND DIVERSE BACKGROUNDS WILL PARTICIPATE IN A COLLABORATIVE AND HIGHLY INTERACTIVE LAB ENVIRONMENT. NEUROMODULATION THROUGH METABOTROPIC RECEPTOR ACTION IS COMMONLY THOUGHT TO RAPIDLY AND TRANSIENTLY MODIFY AND EXPAND THE OUTPUT REPERTOIRE OF NEURONS AND NEURONAL NETWORKS BY REGULATING IONIC CURRENTS, SYNAPSES, AND TRANSPORTERS. IN THIS PROJECT, THE HYPOTHESIS IS EXAMINED THAT, OVER LONG TIME SCALES (? HOURS), THE OPPOSITE MAY HAPPEN: NEUROMODULATORS CONSTRAIN NEURONS AND NETWORKS INTO RESTRICTED REGIONS IN THE PARAMETER SPACE THAT DETERMINES THEIR ACTIVITY, AND THIS EFFECT MAY HINDER THE NEURONS? PLASTICITY AND ABILITY TO RECOVER FROM PERTURBATIONS. BY REDUCING THE REGION OF PARAMETER SPACE THAT NEURONS AND NETWORKS CAN INHABIT, NEUROMODULATORS ARE THOUGHT TO SCULPT PATTERNS OF ACTIVITY REQUIRED BY THE SYSTEM TO SERVE SPECIFIC FUNCTIONS, ANALOGOUS TO WHAT HAPPENS DURING DEVELOPMENT. HOWEVER, THIS HYPOTHESIZED SCULPTING ROLE OF NEUROMODULATORS MAY ALSO LIMIT THE POSSIBLE NEURAL ACTIVITY PATTERNS NEEDED TO RESPOND ADAPTIVELY TO INSULTS, DAMAGE, OR OTHER PERSISTENT PERTURBATIONS. UNDERSTANDING THE VARIOUS MECHANISMS THAT A NETWORK CAN USE TO MAINTAIN ITS FUNCTIONAL ACTIVITY, OR RESTORE IT AFTER IT HAS BEEN PERTURBED, WILL BROADEN OUR UNDERSTANDING OF HOW NETWORKS CAN BE RESILIENT. HERE THE SIMPLE, ACCESSIBLE AND WELL-CHARACTERIZED PYLORIC NETWORK OF THE CRAB IS USED TO REACH A MECHANISTIC UNDERSTANDING OF THE ROLE OF NEUROMODULATORS IN DEFINING THE NEURONAL ELEMENTS (NEURONS, IONIC CURRENTS) THAT SPECIFY ADULT PATTERNS OF ACTIVITY, AND CONTROL THEIR FUNCTIONAL PLASTICITY OVER LARGE TIME SCALES. BY USING AN ALREADY WELL-DEFINED SYSTEM AND COMPUTATIONAL APPROACHES, A RELATIVELY SIMPLE PATH TO UNDERSTANDING THE ROLE OF NEUROMODULATORS WILL BE TAKEN, WHICH CAN THEN BE APPLIED AND TESTED IN MORE COMPLEX SYSTEMS. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $200.0k | 8/19/25 | ||
| Not listed | $250.0k | 6/18/25 | ||
| Not listed | $250.0k | 1/23/24 |