Project Grant 2340895
- This Project Grant award of $910,000 from the National Science Foundation (NSF) Division of Behavioral and Cognitive Sciences supports research on the "Mechanisms of Willed Attention" at the University of California, Davis (UC Davis). This research, under the NSF's Social, Behavioral, and Economic Sciences program (CFDA 47.075), aims to investigate the brain mechanisms that enable humans to voluntarily direct their attention, especially in the absence of external cues. Using...
- This federal Project Grant award, provided by the National Science Foundation's Social, Behavioral, and Economic Sciences program (CFDA 47.075), funds a research project titled "MOTION IN ACTION: INTEGRATING MULTISENSORY INPUTS FOR POSTURE STABILIZATION AND COMPLEX ACTION ACQUISITION." The $489,062 award, with a performance period from August 1, 2025 to July 31, 2028, aims to advance understanding of how the brain processes and integrates multiple sensory inputs, such as vision,...
- This National Science Foundation project grant of $625,000 will fund research into the brain network mechanisms underlying task-general cognition and intelligent human behavior from September 2022 to August 2025. Under the federal Social, Behavioral, and Economic Sciences program (CFDA 47.075), Rutgers University, Newark will investigate how dynamic activity flows within cognitive control networks implement intelligent goal-directed behavior across diverse tasks. Researchers will utilize brain...
- This Project Grant award of $1,241,250.00 from the National Science Foundation (NSF) under the Computer and Information Science and Engineering (CFDA 47.070) program supports a collaborative research project to investigate the role of brain waves in the prefrontal cortex during categorization decision-making tasks. The project involves a close collaboration between computational and experimental neuroscientists to leverage a neural modeling framework to link macroscale oscillatory brain activity...
- The National Science Foundation's Social, Behavioral, and Economic Sciences (CFDA 47.075) program has awarded a $399,042 project grant to Trustees of Dartmouth College to conduct research on audio-visual effects and attentional control in the human brain. The 3-year research project, running from Mar 15, 2025 to Feb 29, 2028, aims to examine how the brain integrates distinct visual and auditory signals to form a coherent perceptual experience, with a focus on the role of spatial location as a...
- This National Science Foundation (NSF) Division of Behavioral and Cognitive Sciences award under the Social, Behavioral, and Economic Sciences program (CFDA 47.075) provides $1,646,782 in funding to Trustees of Boston University over 5 years to develop a brain-inspired algorithm for complex scene analysis. The key products and services being delivered include: The research integrates three interdisciplinary threads to develop this algorithm: Using brain imaging and machine learning to decode...
- This NSF-BSF project grant award of $233,958 to Brown University will support research to investigate the interdependence between perception, cognition, and action. The project aims to understand how specific actions can influence visual perception, and which aspects of visual processing are improved when preparing to act. It will use a combination of behavioral, psychophysical, physiological, and computational approaches. The research team will also engage in outreach activities to promote...
- This two-year $138,000 Project Grant from the National Science Foundation's Social, Behavioral, and Economic Sciences program (CFDA 47.075) will fund an EEG investigation of temporal orienting of attention for goal-directed eye and hand movements at Providence, Rhode Island. The grant aims to contribute to basic research in the social, behavioral and economic sciences by supporting the monitoring of resources invested in science. Key products will include an EEG study exploring how the brain...
- This National Science Foundation (NSF) CAREER grant under the Social, Behavioral, and Economic Sciences (CFDA 47.075) program will provide $183,411 to The Regents of the University of California, doing business as the University of California, Berkeley, to conduct research on how memory contributes to goal-directed attention from July 1, 2024 to February 28, 2026. The project aims to determine the neural mechanisms by which memories guide attention, focusing on the role of the hippocampus. It...
- The National Science Foundation (NSF) Division of Behavioral and Cognitive Sciences awarded a $500,000 Project Grant to the University of California, Davis (UC Davis) to understand how the brain supports decision-making processes. The three-year grant, awarded under the NSF's Social, Behavioral, and Economic Sciences program (CFDA 47.075), aims to identify neural features that provide information about the decision-making process, build decoders to predict decisions, and develop a closed-loop...
CAREER: STUDYING THE EFFECTS OF TASK GOALS ON BRAIN REPRESENTATIONS OF VISUAL MOTION -PEOPLE DO NOT ALWAYS NOTICE THE SAME THINGS WHEN THEY LOOK AT THE SAME SCENE, BECAUSE PERCEPTION DEPENDS ON THE GOAL. AT THE NEURAL LEVEL, MANY PERCEPTUAL REGIONS IN THE BRAIN DO NOT NECESSARILY RESPOND THE SAME WAY TO THE SAME STIMULI-ACTIVITY DEPENDS ON BOTH THE STIMULUS AND ON TASK GOALS. THE ABILITY TO FOCUS ON TASK-RELEVANT FEATURES AND THEREBY CHANGE ACTIVITY IN THE BRAIN IS CALLED TOP-DOWN ATTENTION. ATTENTION IS AFFECTED IN MANY NEUROLOGICAL DISORDERS, INCLUDING ADHD AND SCHIZOPHRENIA, AND VARIES ACROSS THE HEALTHY POPULATION. DESPITE ITS IMPORTANCE, BRAIN MECHANISMS OF ATTENTION ARE NOT WELL UNDERSTOOD. ONE HYPOTHESIS HOLDS THAT A NETWORK SPANNING FRONTAL AND PARIETAL CORTEX SUPPORTS TASK-GENERAL FUNCTIONS INCLUDING ATTENTION AND ACCUMULATING OR WEIGHING EVIDENCE. HOWEVER, PARTS OF THIS NETWORK RESPOND TO VISUAL FEATURES OF STIMULI INCLUDING MOTION AND SHAPE, AND THE DUAL INFLUENCE OF TASK AND STIMULUS ARE SELDOM STUDIED IN THE SAME EXPERIMENTS. THE GOAL OF THIS PROJECT IS TO INTEGRATE THESE FINDINGS INTO A COHERENT COMPUTATIONAL MODEL. INSTEAD OF TRYING TO ATTRIBUTE ONE FUNCTION TO EACH PARCEL OF THE BRAIN, THE RESEARCHERS AIM TO QUANTIFY THE DEGREE TO WHICH BRAIN RESPONSES ACROSS THE BRAIN VARY WITH THE STIMULUS, WITH THE COGNITIVE COMPONENTS OF THE TASK, AND/OR WITH TASK DIFFICULTY. THE CENTRAL AIM OF THE RESEARCH IS TO DETERMINE THE DEGREE TO WHICH DIFFERENT TASKS CHANGE THE PATTERN OF ACTIVITY WITHIN AND ACROSS BRAIN REGIONS. THE BROADER IMPACTS INCLUDE PLANS TO WIDEN THE OPPORTUNITIES FOR UNDERGRADUATES TO DEVELOP COMPUTER AND DATA SCIENCE SKILLS THROUGH COURSE DEVELOPMENT AND COMMUNICATION. THERE ARE ALSO PLANS TO RECRUIT STUDENTS FROM HISTORICALLY UNDERREPRESENTED GROUPS TO PARTICIPATE IN THE RESEARCH. THE PROJECT SEEKS ANSWERS TO THESE QUESTIONS IN A CUMULATIVE SERIES OF BEHAVIORAL AND FUNCTIONAL MAGNETIC RESONANCE IMAGING (FMRI) EXPERIMENTS. PARTICIPANTS VIEW MOVING STIMULI ON WHICH THEY PERFORM DIFFERENT VISUAL TASKS WHILE THEIR BRAINS ARE MEASURED WITH FMRI. FOR EXAMPLE, THEY JUDGE WHETHER ONE OBJECT WILL COLLIDE WITH ANOTHER OBJECT OR WHETHER THE PARTICIPANT (PROXIED BY THE POINT OF VIEW OF THE CAMERA) WILL COLLIDE WITH A STATIC OBJECT. THESE TASKS SERVE AS AN EXPERIMENTAL PROXY FOR MANY NATURAL TASKS. FOR EXAMPLE, DRIVING, WALKING, AND MANY SPORTS INVOLVE ESTIMATING ONE?S OWN MOTION RELATIVE TO STATIC OBSTACLES AND MOVING OBJECTS. IMPORTANTLY, AMONG STIMULUS-BASED FACTORS, SELF-MOTION IS A PARTICULARLY STRONG INFLUENCE ON RESPONSES IN MANY AREAS ALSO DRIVEN BY TASK-RELATED FACTORS. THE PROJECT AIMS TO ANALYZE THE DATA USING CUTTING-EDGE ENCODING MODELS BASED ON LABELS FOR TASK CONDITIONS AND MOTION PARAMETERS DERIVED FROM DEEP NEURAL NETWORKS. MODELS ARE COMPARED WITH VARIANCE PARTITIONING, WHICH ASSESSES THE RELATIVE EFFECT OF EACH FACTOR ON BRAIN RESPONSES. THE MODELS DEVELOPED IN THIS PROJECT CAN PROVIDE A DETAILED QUANTITATIVE BASELINE THAT ENABLES SENSITIVE MEASUREMENT OF INDIVIDUAL DIFFERENCES IN ATTENTION AND TASK PROCESSING IN FUTURE STUDIES. FINALLY, SINCE THE ANALYTIC APPROACH OF THIS PROJECT IS COMPUTATIONALLY INTENSIVE, ANOTHER AIM IS TO IMPROVE DATA SCIENCE EDUCATION AT UNIVERSITY OF NEVADA RENO BY DEVELOPING AND TEACHING AN INTRODUCTORY APPLIED RESEARCH COMPUTING COURSE. THIS COURSE IS ALSO INTENDED TO TEACH THE ?HIDDEN CURRICULUM? OF RESEARCH COMPUTING, INCLUDING USE OF THE COMMAND LINE, VERSION CONTROL, AND DEPENDENCY MANAGEMENT. THE AIM IS TO HELP BUILD A COMMUNITY OF PRACTICE IN DATA SCIENCE AT BOTH GRADUATE AND UNDERGRADUATE LEVELS. THIS PROJECT IS JOINTLY FUNDED BY COGNITIVE NEUROSCIENCE AND THE ESTABLISHED PROGRAM TO STIMULATE COMPETITIVE RESEARCH (EPSCOR). 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 | $34.0k | 4/28/25 | ||
| Not listed | $400.0k | 6/13/24 |