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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

The pupil as a window to the sleeping brain

Researchers at ETH Zurich discovered that pupil dynamics is related to specific patterns of brain activity and arousal levels, contradicting previous assumptions about low arousal during sleep. The study uses pupil measurements to monitor brain activity in humans for the first time.

SourceETH Zurich·JournalNature Communications·DateMar 5, 2025

A new clock to structure sleep

Researchers identified a novel role for the locus coeruleus in facilitating transition between NREM and REM sleep states while maintaining unconscious vigilance. Stress disrupts its functions, negatively impacting sleep quality. The study provides crucial insights into sleep disorders and could lead to improved treatments.

SourceUniversity of Lausanne·JournalNature Neuroscience·TypeExperimental study·DateNov 25, 2024

Scientists produce human norepinephrine neurons from stem cells, with significant implications for researching diseases like Alzheimer’s and Parkinson’s

Researchers at the University of Wisconsin-Madison have successfully generated human norepinephrine neurons from stem cells using a key protein called ACTIVIN-A. These LC-NE neurons may serve as models for disease in humans, enabling scientists to screen drugs and answer questions about neurodegeneration.

SourceUniversity of Wisconsin-Madison·JournalNature Biotechnology·DateNov 17, 2023

3D imaging helps to better understand the early stages of Alzheimer’s disease

Researchers used novel 3D imaging technology to study a human brainstem nucleus and found intriguing complexity and previously undescribed cellular forms of tau pathology. The study reveals dendritic atrophy as an early sign of tau-bearing neuron degeneration, potentially contributing to symptoms like sleep disturbances and anxiety.

SourceKarolinska Institutet·JournalActa Neuropathologica·TypeImaging analysis·DateAug 30, 2022

Changes in brain attention may underlie autism

Research suggests that individuals with autism spectrum disorder exhibit differences in attention regulation, which may be attributed to altered locus coeruleus activity. This study found that participants with autism displayed atypically smaller pupil dilations during a distraction task, indicating dysregulation in the brainstem.

Research links locus coeruleus activity with hyperarousal in PTSD

A new study in Biological Psychiatry provides direct human evidence for a decades-old theory linking heightened arousal and reactivity in posttraumatic stress disorder (PTSD) to overactivity of the locus coeruleus (LC), a brain region that mediates arousal and reactivity. The study found that participants with PTSD exhibited increased ...

SourceElsevier·JournalBiological Psychiatry·DateOct 31, 2017

Simulating Alzheimer's disease in transgenic mice

Researchers have developed an animal model to simulate the pathological process of Alzheimer's disease, focusing on the locus coeruleus. This study shows that degenerative alterations in noradrenergic neurons of the locus coeruleus are consistent with pathological changes observed in patients with Alzheimer's disease.

SourceNeural Regeneration Research·JournalNeural Regeneration Research·DateSep 5, 2013