The communication between the brain and bodily organs is fundamental to emotion regulation and overall mental health. The nucleus tractus solitarii (NTS) in the brainstem is a critical hub structure ...
Researchers mapped the brain connectivity of 960 individuals to uncover how fast and slow neural processes unite to support complex behavior.
Okazaki, Japan – The communication between the brain and bodily organs is fundamental to emotion regulation and overall mental health. The nucleus tractus solitarii (NTS) in the brainstem is a ...
A new, high-performance brain-computer interface (BCI) can be rapidly implanted through a minimally invasive procedure. The ...
Current psychiatric diagnostic systems are based in long-standing observations and study in the field, careful consideration, and statistical verification over many decades. In the United States, we ...
NEW YORK, NY (Sept. 18, 2025)--A brain imaging technique developed by Columbia researchers has identified areas in the brain’s cerebral cortex—just behind the forehead—that are most damaged by the ...
Brain tumour imaging and segmentation techniques represent a rapidly evolving field that employs advanced imaging modalities and state‐of‐the‐art computational models to accurately detect and ...
A new Georgetown University Medical Center study in collaboration with MedStar Health and the National Institutes of Health exploring a new brain imaging technique is bringing stroke experts a step ...
CU Boulder postdoc Catherine Saladrigas is helping bring high-resolution imaging into miniature microscopes for neuroscience research. In a promising leap forward for imaging, Saladrigas and a team of ...
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Competitive athletes exhibit lower off-field aggression and enhanced brain connectivity
A recent study published in Psychology of Sport & Exercise has found that long-term engagement in competitive athletics is ...
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Soccer heading does most damage to brain area critical for cognition, brain imaging study finds
A brain imaging technique developed by Columbia researchers has identified areas in the brain's cerebral cortex—just behind the forehead—that are most damaged by the repetitive impacts from heading a ...
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