Active Mental Health Brain & Nervous System

Neurocomputational mechanisms underlying anergia: a bidirectionally translational approach.

In plain English

AI plain-English summary

People with anergia find even simple rewarding activities—like meeting a friend or cooking a meal—feel impossibly effortful, and this research aims to pinpoint the brain circuits that cause that feeling. Anergia is a core symptom of depression, schizophrenia, and other disorders, but its underlying biology remains poorly understood. Without knowing why effort feels so draining, treatments remain blunt. This project tests a specific hypothesis: that anergia arises from two distinct neural disruptions—one involving glutamate signals from the hippocampus to the nucleus accumbens (making tasks feel harder), and another involving dopamine signals to the same region (making the world seem less rewarding). The researchers will use a bidirectional approach, combining experiments in stressed mice with brain imaging and behavioural tasks in depressed patients. If successful, this work could stratify depressed patients into two behavioural subtypes based on which neural mechanism is at play. That would allow clinicians to tailor cognitive-behavioural therapies to the specific computational problem—whether a patient needs help recalibrating perceived effort or perceived reward. This is fundamental science with a clear translational path: it bridges basic neurocomputational mechanisms directly to personalised treatment strategies, potentially replacing trial-and-error prescribing with mechanism-guided care.

View original technical description
Anergia, the reduced propensity to expend effort leading to the avoidance of rewarding activities, is a key symptom of a wide range of psychiatric, neurological and systemic disorders. Despite its prevalence, the neurobiological and computational mechanisms underlying anergia are still lacking. Filling this gap of knowledge could help inform new treatment strategies. We hypothesize that: 1- anergia can be behaviorally and neurally deconstructed into fundamental computational components: a disruption in “perceived effort” exerted towards previously goal-directed activities (now perceived as being more effortful), encoded in the release of glutamate from the ventral hippocampus to a major hub of the reward circuitry, the nucleus accumbens (NAc), or an impairment in “perceived reward-rate” of the environment (now perceived as impoverished), encoded in the release of dopamine to the NAc; 2- chronic stress induces anergia by hijacking the specific neurobiological motifs within the NAc that encode perceived effort and reward-rate; 3- behaviorally distinguishable mechanisms underlying anergia can be translated to stratify depressed patients into behavioral-computational phenotypes; -4 such stratification will help tailoring cognitive-behavioural interventions to patients. By bridging the gap between basic research and clinical application, our study aims to revolutionize the treatment landscape for depression, offering hope to millions worldwide.

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Researchers

Annie Hata (EPMC Awardee)Federica Lucantonio (EPMC Awardee)Jonathan Roiser (EPMC Awardee)Liam Mason (EPMC Awardee)Marco Pignatelli (EPMC Awardee)Michelle Craske (EPMC Awardee)Ritwik Niyogi (EPMC Awardee)

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Original classification

Applying neuroscience to understand symptoms in anxiety, depression & psychosis

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