Neurocomputational mechanisms underlying subjective valuation of effort costs

Нейрокомпьютерные механизмы, лежащие в основе субъективной оценки затрат усилий
Trevor T.‐J. Chong, Matthew A J Apps, Kathrin Giehl, Annie Sillence, Laura L. Grima, Masud Husain
2017-02-24

cognitive and physical effortcomputational modelingcost-benefit valuationfunctional magnetic resonance imagingsubjective effort valuation
In everyday life, we have to decide whether it is worth exerting effort to obtain rewards. Effort can be experienced in different domains, with some tasks requiring significant cognitive demand and others being more physically effortful. The motivation to exert effort for reward is highly subjective and varies considerably across the different domains of behaviour. However, very little is known about the computational or neural basis of how different effort costs are subjectively weighed against rewards. Is there a common, domain-general system of brain areas that evaluates all costs and benefits? Here, we used computational modelling and functional magnetic resonance imaging (fMRI) to examine the mechanisms underlying value processing in both the cognitive and physical domains. Participants were trained on two novel tasks that parametrically varied either cognitive or physical effort. During fMRI, participants indicated their preferences between a fixed low-effort/low-reward option and a variable higher-effort/higher-reward offer for each effort domain. Critically, reward devaluation by both cognitive and physical effort was subserved by a common network of areas, including the dorsomedial and dorsolateral prefrontal cortex, the intraparietal sulcus, and the anterior insula. Activity within these domain-general areas also covaried negatively with reward and positively with effort, suggesting an integration of these parameters within these areas. Additionally, the amygdala appeared to play a unique, domain-specific role in processing the value of rewards associated with cognitive effort. These results are the first to reveal the neurocomputational mechanisms underlying subjective cost-benefit valuation across different domains of effort and provide insight into the multidimensional nature of motivation.
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Activity in these domain-general regions decreased with reward and increased with effort, indicating integration of both parameters during valuation.
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Cognitive and physical effort similarly devalued rewards through a common network including dorsomedial and dorsolateral prefrontal cortex, intraparietal sulcus, and anterior insula.
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The amygdala showed a domain-specific role in processing rewards associated with cognitive effort.
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The findings provide evidence for shared and domain-specific neural mechanisms underlying multidimensional motivation.
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The study used computational modeling and fMRI to investigate subjective cost-benefit valuation for cognitive and physical effort.

Subjective valuation of cognitive and physical effort costs in reward-based decision-making

Common and domain-specific neurocomputational mechanisms integrating effort costs and rewards, including domain-general network activity and amygdala involvement

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2017-02-24
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Trevor T.‐J. Chong
Matthew A J Apps
Kathrin Giehl
Annie Sillence
Laura L. Grima
Masud Husain
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