Close Menu
Daily Guardian
  • Home
  • News
  • Politics
  • Business
  • Entertainment
  • Lifestyle
  • Health
  • Sports
  • Technology
  • Climate
  • Auto
  • Travel
  • Web Stories
What's On

My brief romance with an AI bird feeder

October 10, 2026

Second crossing debate resurfaces in Central Okanagan during B.C. election campaign

October 9, 2026

Apple and LG leak shows new ‘tap to control’ HomeKit features

October 9, 2026

7 Alberta referendum signs vandalized in Fort McMurray

October 9, 2026

Frances Haugen hopes The Social Reckoning will inspire more whistleblowers

October 9, 2026
Facebook X (Twitter) Instagram
Finance Pro
Facebook X (Twitter) Instagram
Daily Guardian
Subscribe
  • Home
  • News
  • Politics
  • Business
  • Entertainment
  • Lifestyle
  • Health
  • Sports
  • Technology
  • Climate
  • Auto
  • Travel
  • Web Stories
Daily Guardian
Home » The Brain Predicts Social Interaction Before It Starts New Study Finds
Press Release

The Brain Predicts Social Interaction Before It Starts New Study Finds

By News RoomJune 4, 20263 Mins Read
The Brain Predicts Social Interaction Before It Starts New Study Finds
Share
Facebook Twitter LinkedIn Pinterest Email

Jerusalem, June 04, 2026 (GLOBE NEWSWIRE) — How does the brain decide to approach others? Researchers found that coordinated brain activity linked to social behavior begins seconds before movement starts. Using zebrafish, they identified a key role for the pallium, a higher brain region required for normal social interaction, and showed that animals with a stronger brain-wide neural signature were more socially engaged overall. The findings suggest that the brain prepares for social interaction before the movement even begins, and that the strength of this preparation reflects an individual’s social drive.

A new study from the laboratory of Dr. Lilah Avitan at the Hebrew University of Jerusalem sheds light on one of the most basic yet mysterious behaviors in biology: why and how we choose to approach others. The research, led by Avitan  and carried out  by PhD student Imri Lifshitz together with other members of her lab at the Edmond and Lily Safra Center for Brain Sciences (ELSC) at Hebrew University, shows that social interaction is preceded by a distinct brain-wide neural process.

To understand how social decisions are formed, the researchers turned to zebrafish, a model organism that allows scientists to observe brain activity at single-cell resolution.

They developed a novel setup in which one fish observed and reacted to another swimming fish, while its entire brain activity was recorded in real time. This allowed the team to capture, moment by moment, how the brain processes social information and turns it into action.

The team found that when a fish is about to move toward another, its brain begins to change several seconds before the movement occurs.

Rather than a single “social center,” this process involves a distributed coordinated shift across the brain:

  • Activity rises in the pallium, a higher brain region linked to complex behavior
  • At the same time, activity drops in other regions

This pattern forms a kind of neural “pre-decision state” that signals an upcoming social action and can be used to predict it before it happens.

Importantly, the strength of this “pre-decision state” was linked to individual social drive: animals showing a stronger brain-wide pattern were more social overall. The findings also pointed to a central role for the pallium in generating this social drive, identifying it as a key brain region that helps promote approach toward others.

“This study identifies a brain-wide neural signature of social approach that emerges before movement begins,” said Dr. Avitan. “This signature predicts not only whether an upcoming action will be social, but also how strongly socially driven the individual is.”

Understanding how the brain generates social behavior could help explain why individuals differ in sociability. Because similar brain structures are involved in social behavior across species, these findings may also provide insight into human social function and disorders where it is disrupted.

The research paper titled Distinct distributed neural dynamics predict pallium-dependent social approach” is now available in Nature Communications  and can be accessed at https://www.nature.com/articles/s41467-026-71666-8

            
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email

Keep Reading

vineyard vines Returns as Official Style of the Head Of The Charles® Regatta

Bigger & Better Than Ever: Laxmi & Chef Kunal Kapur Return With ‘Diwali Delights’ Season 2

2026 Chery International User Summit to Kick Off: LUXEED Set for Global Brand Launch

Going Asset Management Wins Capital’s Excellence Fund Award, Harnessing Technology to Enhance the Long-Term Value of Assets

Alation Honors 2026 AI Radicals Award Winners at revAlation

Supported Employment: Helping Individuals Build Meaningful Careers

“The Carbon Pursuit of Happiness” Premieres October 10: A New Chapter for In-Depth Dialogue on Health and Humanity

Evolution Metals & Technologies Corp. Raises Fiscal 2026 Revenue Guidance 62% at Midpoint to 11 Million and Reaffirms 460 Million Fiscal 2027 Outlook

Ufunded Launches “Spotlight” Series, Documenting the Minds Shaping Modern Trading

Editors Picks

Second crossing debate resurfaces in Central Okanagan during B.C. election campaign

October 9, 2026

Apple and LG leak shows new ‘tap to control’ HomeKit features

October 9, 2026

7 Alberta referendum signs vandalized in Fort McMurray

October 9, 2026

Frances Haugen hopes The Social Reckoning will inspire more whistleblowers

October 9, 2026

Latest News

Another Marineland whale dies at Shedd Aquarium in Chicago

October 9, 2026

Microsoft tries to spark new life into Windows

October 9, 2026

Encampment removal in Saskatoon ‘very sad,’ but necessary, advocate says

October 9, 2026
Facebook X (Twitter) Pinterest TikTok Instagram
© 2026 Daily Guardian Canada. All Rights Reserved.
  • Privacy Policy
  • Terms
  • Advertise
  • Contact

Type above and press Enter to search. Press Esc to cancel.

Go to mobile version