Adaptive decision-making uses information gained when exploring alternative options to decide whether to update the current choice strategy. Magnocellular mediodorsal thalamus (MDmc) supports adaptive decision-making, but its causal contribution is not well understood. Monkeys with excitotoxic MDmc damage were tested on probabilistic three-choice decision-making tasks. They could learn and track the changing values in object-reward associations, but they were severely impaired at updating choices after reversals in reward contingencies or when there were multiple options associated with reward. These deficits were not caused by perseveration or insensitivity to negative feedback though. Instead, monkeys with MDmc lesions exhibited an inabil...
Rational, value-based decision-making mandates selecting the option with highest subjective expected...
SummaryOrbitofrontal cortex (OFC) is widely held to be critical for flexibility in decision-making w...
Insights from causal manipulations of brain activity depend on targeting the spatial and temporal sc...
Adaptive decision-making uses information gained when exploring alternative options to decide whethe...
Distributed brain networks govern adaptive decision‐making, new learning and rapid updating of infor...
AbstractRecent evidence from monkey models of cognition shows that the magnocellular subdivision of ...
Making good decisions and adapting flexibly to environmental change are critical to the survival of ...
Making good decisions and adapting flexibly to environmental change are critical to the survival of ...
Damage in the orbitofrontal cortex impairs the ability to switch behaviors when their outcomes chang...
Decisions take place in dynamic environments. The nervous system must continually learn the best act...
SummaryWe examined the contribution of the amygdala to value signals within orbital prefrontal corte...
To survive in a dynamic world, animals must rapidly adapt to novel environments and optimize their b...
Making sequential decisions to harvest rewards is a notoriously difficult problem. One difficulty is...
In a changing environment, organisms need to decide when to select items that resemble previously re...
The ability to take effective decisions is fundamental for successful environmental adaptation and s...
Rational, value-based decision-making mandates selecting the option with highest subjective expected...
SummaryOrbitofrontal cortex (OFC) is widely held to be critical for flexibility in decision-making w...
Insights from causal manipulations of brain activity depend on targeting the spatial and temporal sc...
Adaptive decision-making uses information gained when exploring alternative options to decide whethe...
Distributed brain networks govern adaptive decision‐making, new learning and rapid updating of infor...
AbstractRecent evidence from monkey models of cognition shows that the magnocellular subdivision of ...
Making good decisions and adapting flexibly to environmental change are critical to the survival of ...
Making good decisions and adapting flexibly to environmental change are critical to the survival of ...
Damage in the orbitofrontal cortex impairs the ability to switch behaviors when their outcomes chang...
Decisions take place in dynamic environments. The nervous system must continually learn the best act...
SummaryWe examined the contribution of the amygdala to value signals within orbital prefrontal corte...
To survive in a dynamic world, animals must rapidly adapt to novel environments and optimize their b...
Making sequential decisions to harvest rewards is a notoriously difficult problem. One difficulty is...
In a changing environment, organisms need to decide when to select items that resemble previously re...
The ability to take effective decisions is fundamental for successful environmental adaptation and s...
Rational, value-based decision-making mandates selecting the option with highest subjective expected...
SummaryOrbitofrontal cortex (OFC) is widely held to be critical for flexibility in decision-making w...
Insights from causal manipulations of brain activity depend on targeting the spatial and temporal sc...