COVADIS · Deciphering the Code of Value Signals in the Human Brain
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2021-01-01 → 2024-05-01
- EU contribution
- €203,149
- Participants
- 1
- Scheme
- MSCA-IF
Lines connect the coordinator with its partners.
Results in brief
Deciphering the Code of Value Signals in the Human Brain
Humans routinely make complex decisions between alternative courses of action. Understanding how our brains enable us to do this is a fundamental question in neuroscience. A central hypothesis is that the brain represents the motivational relevance of the choice options through value signals. However, the neural code for value has remained elusive, and how the brain computes such values for multidimensional options remains unknown. This lack of knowledge has significant implications for society. It hinders our ability to adequately treat neuropsychiatric goal-directed disorders that affect millions worldwide and hampers the growing artificial-intelligence industry, which aims to develop agents capable of autonomous value-based decisions. This interdisciplinary project aims to take an important step towards deciphering the neural code for value through the combined use of cognitive neuroscience, computational modelling, and behavioral psychophysics methods. Specifically, the main objectives were: Objective 1: Deciphering the neural code for value. We know very little about how value signals are coded by neurons. Single-unit recordings in the orbital frontal cortex (OFC) of non-human primates – an analogue of the human ventromedial prefrontal cortex (vmPFC) – have identified neurons that encode the subjective value of options in a linear manner, either increasing or decreasing their activity with value. However, non-linear population codes, where each neuron is tuned to a specific stimulus magnitude, could allow neuronal ensembles to represent both value magnitude and uncertainty simultaneously. Our aim was to investigate whether the human brain utilizes such a probabilistic neural code for value. Objective 2: Establishing how the neural code for value shapes behavior. If the human brain employs a probabilistic code for value, representing both value and value uncertainty within the same neuronal populations, the properties of these value signals could explain why individuals vary in their preferences, make inconsistent choices, and how they form confidence judgments. Our aim was to establish a link between the neural code for value and how neural uncertainty about value shapes behavior. Objective 3: Establishing how value is constructed from our senses. Rewards often consist of multiple dimensions, such as an apartment’s size, location, brightness, and price. How the brain integrates these attributes, inferred from our senses, into a global value remains elusive. Our aim was to investigate whether the brain calculates this global value by weighting the different attributes of a reward based on the precision of their perceptual representation.
Data: CORDIS, © European Union
Project objective
Humans routinely make complex decisions between alternative courses of action. How our brains enable us to do this is a fundamental question in neuroscience. A central hypothesis is that the brain represents the motivational relevance of the choice options by means of value signals. However, it has remained elusive how the brain computes such values for multi-dimensional options and how it flexibly adapts them to different contexts.This lack of knowledge has strong implications for society, since it prevents us from adequately treating psychiatric behavioral control disorders that affect the lives of millions worldwide, and since it hampers the rapidly growing artificial-intelligence industry trying to develop agents that are truly capable of autonomous value-based decisions.This groundbreaking, interdisciplinary action will take an important step towards deciphering the neural code for value through the combined use of methods from cognitive neuroscience, computational modelling, and behavioral psychophysics. Specifically, I will create an experimental setup for the study of value signals, reveal the computational and biological principles of the neural code for value, and synthetize the results into a comprehensive report on a biologically plausible model of the brain computations underlying value processing.My training in decision-making, neuroimaging, and computational modelling make me the ideal person for this action. The state-of-the-art and interdisciplinary research facilities of the Zürich center for Neuroeconomics at the University of Zürich make it the ideal host institution. At this pioneering lab, I will be trained in cutting-edge decoding methods for neuroimaging, non-invasive brain stimulation, statistical and computational skills, and in communicating the results of this interdisciplinary work. This will boost my ability to lead my own laboratory as an independent researcher in clinical and decision neuroscience.
Original text from CORDIS.
Participants
- UNIVERSITAT ZURICH · ZurichCoordinatorSwitzerland
Links
Data: CORDIS, © European Union
