Project Grant 2218427
- This Project Grant award from the National Science Foundation's Social, Behavioral, and Economic Sciences program (CFDA 47.075) provides $619,000 to the University of Utah to examine how the brain processes and consolidates different types of memories. Specifically, the research will investigate how learning across memory domains with similar structures (e.g., motor sequence learning and object sequence learning) can be leveraged to improve long-term memory formation. The project utilizes...
- This National Science Foundation Project Grant of $519,793 will fund research into visual working memory representations at the University of California, San Diego from July 2022 to June 2025. The award is part of the NSF's Social, Behavioral, and Economic Sciences program (CFDA 47.075), which supports basic research in cognitive sciences. The research will test theories of how visual working memory holds probabilistic information about object features rather than single values. Using...
- The National Science Foundation (NSF) awarded a $208,090 Project Grant to Purdue University under the Social, Behavioral, and Economic Sciences (CFDA 47.075) program. The grant is for a 3-year project from August 2024 to July 2027 focused on building a conceptual framework for understanding the "engram" - the neural mechanisms underlying memory retention and recall. The project will employ methods from biology, history, and philosophy of science to develop an updated, expanded...
- This National Science Foundation project grant award of $600,000 supports research into the mechanisms underlying long-term memory storage at the University of California, Los Angeles from February 1, 2022 to January 31, 2025. The award is made under the Biological Sciences program (CFDA 47.074) to promote progress in the biological sciences. Specifically, the grant funds research investigating whether memories are stored through nuclear modifications in neurons rather than changes in...
- The National Science Foundation (NSF) Division of Behavioral and Cognitive Sciences awarded a 3-year, $430,762 Project Grant entitled "COMPCOG: TOWARDS A UNIFIED ACCOUNT OF WHEN EXTERNAL CUES ARE BENEFICIAL OR DETRIMENTAL DURING MEMORY SEARCH" to Rutgers, The State University. The project aims to develop computational models to study how environmental cues and reminders affect human memory, with the goal of informing the design of memory interventions for educational settings and...
- The National Science Foundation (NSF) awarded a 3-year, $200,000 Project Grant to Brown University under the Integrative Activities (CFDA No. 47.083) program. The purpose of this collaborative U.S.-Israel research project is to investigate the neural mechanisms by which learning can be enhanced for both visual and motor skill acquisition. The research aims to integrate findings on memory reactivation and the role of sleep in facilitating skill learning, and to understand how these processes work...
- This federal Project Grant award, valued at $358,313.00, was provided 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. The award will fund a 5-year research study at Drexel University to investigate how prior knowledge shapes the learning and long-term consolidation of new memories in healthy human adults. The research will utilize functional neuroimaging (fMRI) and...
- This federal Project Grant award of $604,425.00 from the National Science Foundation's Social, Behavioral, and Economic Sciences (CFDA 47.075) program aims to determine how the brain's memory systems help prevent competition and promote cooperation between memories to guide attention. The research, led by the University of California, Berkeley, will investigate the role of the hippocampus in minimizing confusion between similar memories and accurately directing attention, with potential...
- This Project Grant award from the National Science Foundation's Office of Multidisciplinary Activities, under the Social, Behavioral, and Economic Sciences (CFDA 47.075) program, supports a postdoctoral fellowship to investigate how humans use detailed memories of past experiences to make adaptive decisions when facing uncertain futures. The $160,000 award, effective September 1, 2025 through August 31, 2027, will fund research conducted by an early career scientist under the sponsorship of...
- This Project Grant award of $346,803, provided by the National Science Foundation's Social, Behavioral, and Economic Sciences program (CFDA 47.075), supports research at the University of Chicago to test theories underlying what makes certain stimuli more memorable than others. The project aims to understand the underlying brain mechanisms that determine what information is prioritized for storage in human memory. The research utilizes behavioral experiments, brain imaging, and artificial...
IDENTIFYING NOVEL MEMORY TRACES THAT IMPROVE ACTION PRECISION -HOW DO WE REMEMBER A PHONE NUMBER LONG ENOUGH TO DIAL IT OR REMEMBER TWO NUMBERS LONG ENOUGH TO ADD THEM TOGETHER IN OUR HEAD? THIS TYPE OF MEMORY, CALLED SHORT-TERM WORKING MEMORY, IS A COGNITIVE STORE THAT ALLOWS A FEW ITEMS TO BE RECALLED AND ACTED UPON WITHIN A SHORT SPAN OF TIME. EARLY STUDIES OF WORKING MEMORY SUGGESTED THAT WE CAN TYPICALLY REMEMBER ABOUT 5 TO 9 UNRELATED ITEMS. MORE RECENT WORK SUGGESTS A TRUE CAPACITY OF JUST 3-4 DISTINCT ITEMS. A BRIEFER BUT FAR MORE VIVID FORM OF SHORT-TERM MEMORY, CALLED SENSORY MEMORY, HAS BEEN IDENTIFIED IN THE VISUAL, AUDITORY, AND TACTILE SYSTEMS. VISUAL SENSORY MEMORY, FOR EXAMPLE, IS REMARKABLE IN THAT IT CAN PROVIDE INCREDIBLY DETAILED INFORMATION ABOUT 64 OR MORE ITEMS IN RECENT VISUAL SCENES, A FAR GREATER CAPACITY THAN SHOWN FOR WORKING MEMORY. THE PRESENT WORK WILL STUDY A PREVIOUSLY UNIDENTIFIED PROPRIOCEPTIVE SENSORY MEMORY (PROPRIOCEPTION REFERS TO INFORMATION ABOUT THE POSITION AND MOVEMENT OF THE BODY). LIKE VISUAL SENSORY MEMORY, PROPRIOCEPTIVE SENSORY MEMORY PROVIDES A HIGH-PRECISION BUT SHORT-LASTING STORE FOR SENSORY INFORMATION AND FOR INFORMATION ABOUT RECENT MOTOR ACTIONS. THE HYPOTHESIS IS THAT BOTH TYPE OF MEMORIES, WHEN AVAILABLE, PROVIDE HIGH-PRECISION INPUT INTO THE SENSORIMOTOR NEURAL CIRCUITRY INVOLVED IN ACTION PLANNING, ALLOWING FOR EXTREMELY HIGH LEVELS OF MOTOR PRECISION. THE GOALS OF THIS PROPOSAL ARE TO DEVELOP AN UNDERSTANDING OF THE RELATIONSHIP BETWEEN THE AVAILABILITY OF NOVEL HIGH-PRECISION PROPRIOCEPTIVE AND MOTOR COMMAND MEMORIES AND THE SPATIOTEMPORAL PROPERTIES OF IMPROVEMENTS IN MOTOR PRECISION. THE TEAM WILL BEGIN BY IDENTIFYING THE EXISTENCE OF A HIGH-PRECISION SENSORY MEMORY FOR PROPRIOCEPTION BY DETERMINING THE LINK BETWEEN THE AVAILABILITY OF THIS NOVEL MEMORY AND IMPROVED ACTION PRECISION. THEY WILL THEN CHARACTERIZE THE EXTENT AND TIME COURSE OF THE RAPID REDUCTION IN TIME SCALE VARIABILITY THAT THIS MEMORY CAN PROVIDE. FINALLY, THE RESEARCH WILL PARCEL OUT TWO NOVEL HIGH-PRECISION HYPER-TRANSIENT MEMORIES, PROPRIOCEPTIVE SENSORY MEMORY AND MOTOR COMMAND MEMORY, BASED ON BOTH SPATIAL AND TEMPORAL PROPERTIES, USING GEOMETRIC CHARACTERIZATION AND DIRECT EXPERIMENTAL MANIPULATION. THE PLANNED WORK WILL DEVELOP A FRAMEWORK FOR UNDERSTANDING HOW RECENT SENSORY AND MOTOR MEMORIES CAN WORK BOTH SEPARATELY AND IN COMBINATION TO IMPROVE MOTOR PRECISION DURING VOLUNTARY MOVEMENT. THIS PROJECT PROVIDES A FERTILE RESEARCH TRAINING OPPORTUNITY TO APPLY COMPUTATIONAL AND ENGINEERING PRINCIPLES AND TOOLS TO THE STUDY OF LEARNING AND MEMORY IN NEURAL CIRCUITS FOR TRAINEES RANGING FROM THE UNDERGRADUATE TO THE POSTDOCTORAL LEVEL, AND INTRODUCES COMMUNITY MIDDLE SCHOOL AND HIGH SCHOOL STUDENTS TO HOW LEARNING AND MEMORY SHAPE THE ABILITY TO PRECISELY CONTROL ACTIONS IN HUMANS. 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.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 7/3/25 | ||
| Not listed | $633.2k | 8/5/22 |