News

An MRI in each other's arms shows how physical contact alters the brains of couples

Researchers can now scan two people together, showing that touching synchronises couple's brains, making them mirror each other’s movements
Two people in an mri scanner on the left, with an image of their brains on the right

Researchers at Aalto University and Turku PET Centre have developed a new method for simultaneous imaging brain activity from two people, allowing them to study social interaction.

In a recent study, the researchers scanned brain activity from 10 couples. Each couple spent 45 minutes inside the MRI scanner in physical contact with each other. The objective of the study was to examine how social contact activates the brain. The results were published in the theme issue Social Interaction in Neuropsychiatry of the journal .

“This is an excellent start for the study of natural interaction. People don’t just react to external stimuli, but adjust their actions moment-by-moment based on what they expect to happen next,” says Riitta Hari, emerita Professor at Aalto University.

Ordinary magnetic resonance imaging is used to scan one person at a time. In the device developed at Aalto University, the head coil used for regular brain scans was divided into two separate coils. This new design allows for simultaneous scanning of two brains, when the individuals are positioned close enough to each other inside the scanner. During scanning, the participants were face-to-face, almost hugging each other.

When instructed by the researchers, the subjects took turns in tapping each other's lips. Looking at the brain scans, the researchers could see that the motor and sensory areas of the couples’ brains were activated.

Studying the fundamentals of human interaction

“During social interaction, people's brains are literally synchronised. The associated mental imitation of other people's movements is probably one of the basic mechanisms of social interaction. The new technology now developed will provide totally new opportunities for studying the brain mechanisms of social interaction,” says Professor Lauri Nummenmaa from Turku PET Centre.

“For example, during a conversation or problem solving, people’s brain functions become flexibly linked with each other. However, we cannot understand the brain basis of real-time social interaction if we cannot simultaneously scan the brain functions of both persons involved in social interaction,” Riitta Hari says.

The study was funded by the European Research Council (ERC) and the Academy of Finland.

Read more:

You can read the full research paper for free online:

Contact:

Riitta Hari

Prof. (emer.)

Lauri Nummenmaa

Prof.
  • Updated:
  • Published:
Share
URL copied!

Read more news

Saija Simola
Press releases, Research & Art Published:

1 in 4 mental health patients hurt by wording in electronic health records, finds study

Errors, disrespectful language and information perceived as unnecessary in electronic health records can feel offensive to patients
Kauppakorkeakoulun promootiokulkue 2022
Press releases, University Published:

The School of Business’s Ceremonial Conferment of degrees will bring festive atmosphere to the streets of Töölö in May

A dignified celebration is held every five years. The public can watch the spectacular conferment procession in Töölö on the afternoon of Friday 22 May
Abstract blue device with glowing orange grid and beam connecting two rectangular structures
Press releases Published:

Researchers measure energy below a zeptojoule–enough for a red blood cell to move a nanometer

A new method for measuring incredibly miniscule amounts of energy – less than a trillionth of a billionth of a joule – could give quantum computing and the hunt for dark matter a boost, while paving the way for counting individual photons.
Aalto University professor Mikko Mottonen, photo Mikko Raskinen
Awards and Recognition Published:

Mikko Möttönen selected as finalist for the European Inventor Award 2026

Möttönen is a finalist in the ‘Research’ category for developing an ultrasensitive cryogenic microwave sensor to diagnose interference in quantum computers.