Fourth Industrial Revolution

How a robot's gaze can affect the human brain 

Mini humanoid robot "Alpha Mini" brightens up the daily life of guests at the day care center of German welfare organisation Caritas as the spread of the coronavirus disease (COVID-19) continues in Erlenbach, 50 km south of Frankfurt, Germany, November 25, 2020. Picture taken November 25, 2020. REUTERS/Kai Pfaffenbach - RC2VAK94X8I2

New research could have implications for the deployment of humanoid robots. Image: REUTERS/Kai Pfaffenbach

Stuart McDill
Journalist, Reuters
  • Making eye contact with a robot has long been shown to be unsettling - it even has a name, the 'uncanny valley'.
  • But new research shows that a robot's gaze can trick us into thinking we're socially interacting and slow our decision-making process.
  • The research could have implications for the deployment of humanoid robots.

It has long been known that making eye contact with a robot can be an unsettling experience. Scientists even have a name for the queasy feeling: the "uncanny valley".

Now, thanks to researchers in Italy, we also know it's more than just a feeling.

A team at the Istituto Italiano Di Tecnologia (IIT) in Genoa have shown how a robot's gaze can trick us into thinking we are socially interacting and slow our ability to make decisions.

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"Gaze is an extremely important social signal that we employ on a day-to-day basis when interacting with others," said Professor Agnieszka Wykowska, lead author of the research, published on Wednesday in the journal Science Robots.

"The question is whether the robot gaze will evoke very similar mechanisms in the human brain as another human's gaze would."

The team asked 40 volunteers to play a video game of "chicken" - where each player has to decide whether to allow a car to drive straight towards another car or to deviate to avoid a collision - against a humanoid robot sitting opposite them.

Between rounds players had to look at the robot, which would sometimes look back and other times look away.

In each scenario, the scientists collected data on behaviour and neural activity via electroencephalography (EEG), which detects electrical activity in the brain.

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"Our results show that, actually, the human brain processes the robot gaze as a social signal, and that signal has an impact on the way we're making decisions, on the strategies we deploy in the game and also on our responses," Wykowska said.

"The mutual gaze of the robot affected decisions by delaying them, so humans were much slower in making the decisions in the game."

The findings have implications on where and how humanoid robots are deployed in future.

"Once we understand when robots elicit social attunement, then we can decide it which sort of context this is desirable and beneficial for humans and in which context this should not occur," said Wykowska.

According to a report by the International Federation of Robotics, worldwide sales of professional service robots had already jumped 32% to $11.2 billion between 2018 and 2019.

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