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When danger is about, mice look to their friends

Researchers found that mice moved closer to a familiar companion when hearing a warning signal, but not with a stranger. This suggests a brain circuit that links social memory to threat response, with the hippocampus acting as a gatekeeper for familiar interactions.

SourceVirginia Tech·JournalNeuropsychopharmacology·TypeExperimental study·DateSep 22, 2026

“Brain signatures whisper warnings:” Researchers identify age 9 as critical turning point for anxiety and depression

A longitudinal study identified distinct brain-wave patterns emerging from age 9 that can forecast a child's vulnerability to anxiety or depression by age 13. The predictive markers reveal divergent neurodevelopmental trajectories linked to the right and left sides of the brain, respectively.

SourceElsevier·JournalBiological Psychiatry·TypeImaging analysis·DateMay 19, 2026

Novel study shows physical activity reshapes neural connectivity and makes the brain more resilient after childhood trauma

Research in Biological Psychiatry: Cognitive Neuroscience and Neuroimaging reveals that lifetime physical activity can reshape neural connectivity, strengthening the brain's internal communication and optimizing its response to stress. The study challenges traditional deficit-focused views of adversity, offering a more dynamic and hope...

SourceElsevier·TypeImaging analysis·DateMar 17, 2026

Why we sleep poorly in new environments: A brain circuit that keeps animals awake

Scientists at Nagoya University identified a brain circuit that keeps mice awake in unfamiliar environments, releasing neurotensin to maintain wakefulness and protect against potential dangers. This discovery may explain the 'first night effect' in humans, where the brain remains vigilant on the first night in a new place.

SourceNagoya University·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateFeb 2, 2026

Supplement trio shows promise in reversing autism-linked behaviors in mice

Researchers discovered a low-dose mixture of zinc, serine, and branch-chain amino acids can alleviate behavioral deficits in mouse models of autism by promoting neuronal communication and improving social behaviors. The combination was found to be effective at low doses, whereas individual supplements had no effect.

SourcePLOS·JournalPLOS Biology·TypeExperimental study·DateDec 2, 2025

Unlocking the circuitry of anxiety

PTEN-deficient mouse models exhibit ASD-like characteristics due to circuit imbalance and altered behavior. The study reveals specific circuit changes in the amygdala resulting from PTEN loss in inhibitory neurons, providing new insights into the underlying circuit alterations that contribute to heightened fear and anxiety.

SourceMax Planck Florida Institute for Neuroscience·JournalFrontiers in Cellular Neuroscience·TypeExperimental study·DateJun 26, 2025

Could lighting be the new gambling regulator?

Researchers at Flinders University found that blue-enriched light can make people less sensitive to losses, leading to riskier gambling behaviors. The study suggests that reducing blue light exposure could be a potential strategy to mitigate impulsive gambling.

SourceFlinders University·JournalScientific Reports·TypeExperimental study·DateJun 3, 2025

What birds can teach us about social learning

Researchers discovered a novel connection between the amygdala brain region and social learning in zebra finches. Young birds preferred approaching tutors with longer but less frequent songs, suggesting the amygdala plays a role in socially selective behavior. This finding sheds new light on the neural mechanisms underlying song learning.

SourceSociety for Neuroscience·JournalJNeurosci·DateMay 26, 2025

How the brain allows us to infer emotions

Researchers have identified the medial prefrontal cortex (mPFC) as the basis of emotional inference in animals and humans. In a study published in Nature, Xiaowei Gu and Joshua Johansen found that rats can learn inferred emotions by associating a neutral stimulus with an unpleasant experience.

SourceRIKEN·JournalNature·DateMay 14, 2025

Dopamine signals when a fear can be forgotten

Researchers at MIT's Picower Institute discovered a critical mechanism for mental health, where dopamine signals enable fear extinction. Dopamine activates specific amygdala neurons tied to reward, driving fear extinction and opening up new avenues for treating fear-related disorders like PTSD.

SourcePicower Institute at MIT·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateApr 28, 2025

Listening to an avatar makes you more likely to gamble

A study published in PLOS Biology found that individuals who receive dynamic facial-expression feedback from an avatar's face tend to gamble more than those receiving real human feedback. The amygdala plays a key role in this facilitation, with increased valuation of uncertainty contributing to increased risk-taking behavior.

SourcePLOS·JournalPLOS Biology·TypeExperimental study·DateApr 22, 2025

Thirst and hunger neurons

New research identifies specific populations of neurons in the amygdala that play a key role in regulating nutritional needs and turning them into action. The study reveals distinct groups of neurons responding to thirst and hunger, guided by molecular cues.

SourceMax-Planck-Gesellschaft·JournalNature Communications·DateApr 3, 2025

How the brain evaluates rewards

Researchers used rhesus monkeys to study neural activity during decision-making processes, revealing that amygdala neurons process probability and magnitude of rewards independently. The study also showed that these cells dynamically integrate information about probability, magnitude, and risk to form the basis for decision-making.

SourceDeutsches Primatenzentrum (DPZ)/German Primate Center·JournalNature Communications·TypeExperimental study·DateApr 2, 2025

A neural compass for fear: Mapping how the brain distinguishes between direct and vicarious fear

A research team has uncovered a fundamental brain circuit that distinguishes between direct and vicarious fear, with the locus coeruleus playing a crucial role in processing fear. The study reveals a lateralized LC-NAergic system that separates personal from socially learned fear, shedding light on empathy and social learning.

SourceInstitute for Basic Science·JournalNature Communications·TypeExperimental study·DateMar 31, 2025

New study identifies brain region that can prevent aggressive social behavior and induce pro social behavior

Researchers identified the cortical amygdala as a key brain region in promoting aggression, but inhibiting this area reduces aggressive behavior and induces pro-social behavior. The study found that cells in the cortical amygdala respond to male social stimuli, enhancing attack behavior.

SourceThe Mount Sinai Hospital / Mount Sinai School of Medicine·JournalNature·TypeExperimental study·DateFeb 12, 2025

UT Health San Antonio study links genetic changes to social behavior differences in autism, schizophrenia

A UT Health San Antonio study found that brain volume changes correlate with social behavior differences in psychiatric conditions such as autism spectrum disorder and schizophrenia. Tbx1 deficiency was associated with decreased brain volume in the amygdala and surrounding cortical regions, affecting desire for social interaction.

SourceUniversity of Texas Health Science Center at San Antonio·JournalMolecular Psychiatry·TypeExperimental study·DateDec 5, 2024

Overthinking what you said? It’s your ‘lizard brain’ talking to newer, advanced parts of your brain

A new Northwestern Medicine study found the 'lizard brain' is connected to newly evolved social cognitive network regions, which are involved in thinking about other people. This link helps shape the function of the social cognitive network by giving it access to the amygdala's role in processing emotionally important content.

SourceNorthwestern University·JournalScience Advances·DateNov 22, 2024

The roots of fear: Understanding the amygdala

Scientists at UC Davis have identified new clusters of cells with differing gene expression patterns in the human and non-human primate amygdala. These findings suggest that alterations in specific cell types may contribute to disorders such as anxiety, and could lead to more targeted treatments.

SourceUniversity of California - Davis·JournalAmerican Journal of Psychiatry·TypeExperimental study·DateOct 30, 2024

Depression: Dysfunction of neurons in the amygdala may be behind negative perceptions of the environment

Depression alters neural circuits in the amygdala, leading to reduced activity in pleasant stimuli and increased activation in negative stimuli. This negativity bias contributes to depressive symptoms. Researchers found a potential treatment by reactivating neurons involved in positive encoding of environmental stimuli.

SourceInstitut Pasteur·JournalTranslational Psychiatry·TypeExperimental study·DateOct 25, 2024

Common brain network detected among veterans with traumatic brain injury could protect against PTSD

Researchers at Brigham and Women's Hospital have identified a specific brain circuit that may protect against post-traumatic stress disorder (PTSD) in veterans with traumatic brain injury. The study suggests using neurostimulation therapies on this circuit could treat PTSD, offering a new potential non-invasive treatment option.

SourceBrigham and Women's Hospital·JournalNature Neuroscience·TypeObservational study·DateSep 24, 2024

Classical music lifts our mood by synchronizing our “extended amygdala”

A study published in Cell Reports found that Western classical music elicits positive effects on the brain by synchronizing neural oscillations between the auditory cortex and rewards circuit. Patients with treatment-resistant depression who received high music appreciation showed better antidepressant effects, while those with low mus...

SourceCell Press·JournalCell Reports·TypeObservational study·DateAug 9, 2024

Impact of neighborhood resources on resilience after trauma

A recent study found that individuals with high individual resources and exposure to more greenspace were more likely to experience low or no PTSD symptoms over time. Greenspace was also associated with greater neural reactivity in the amygdala, a region involved in detecting rewarding cues.

SourceMcLean Hospital·JournalJAMA Psychiatry·TypeData/statistical analysis·DateJul 31, 2024

Neurons spoil your appetite

Researchers at Max Planck Institute for Biological Intelligence have discovered a brain circuit that inhibits food intake during nausea. The circuit involves special nerve cells in the amygdala, which send appetite-suppressing signals to distant brain regions, resulting in a loss of appetite.

SourceMax-Planck-Gesellschaft·JournalCell Reports·DateApr 24, 2024

How tasty is the food?

Researchers at the Max Planck Institute found that ghrelin activates specialized nerve cells in the amygdala, promoting food consumption and conveying hunger feelings. The study uncovers the physiological processes behind feeding behavior, which may lead to novel therapeutic approaches for eating disorders.

SourceMax-Planck-Gesellschaft·JournalScience Advances·TypeMeta-analysis·DateMay 24, 2023

Emotion-focused therapy for bipolar disorder targets the amygdala

A new study found that emotion-focused therapy increased activation and connectivity of the amygdala in patients with bipolar disorder, leading to improved emotion processing. In contrast, cognitive-behavioral therapy showed increased activation of brain regions related to social function but not altered amygdala activity.

SourceElsevier·JournalBiological Psychiatry Cognitive Neuroscience and Neuroimaging·TypeRandomized controlled/clinical trial·DateApr 17, 2023