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The unexpected creates reward when listening to music

Scientists prove difference between expected/actual outcomes cause reward response

Date:
February 12, 2019
Source:
McGill University
Summary:
If you love it when a musician strikes that unexpected but perfect chord, you are not alone. New research shows the musically unexpected activates the reward centre of our brains, and makes us learn about the music as we listen.
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If you love it when a musician strikes that unexpected but perfect chord, you are not alone. New research shows the musically unexpected activates the reward centre of our brains, and makes us learn about the music as we listen.

Researchers led by Ben Gold, a PhD candidate in the lab of Robert Zatorre at The Neuro (Montreal Neurological Institute and Hospital), of McGill University, put 20 volunteers through a musical reward learning task. Each participant chose a colour, then a direction. Each choice came with a certain probability of leading to either a consonant, pleasurable, musical excerpt or a dissonant, unpleasurable one. Over time the subjects learned which choices were more likely to produce both consonant and dissonant music.

The test was designed to create an expectation of either musical enjoyment or dissatisfaction. Subjects performed this task while their brain activity was measured with functional magnetic resonance imaging (MRI).

Using an algorithm, the researchers then determined the reward prediction error for each choice -- the difference between an expected reward and the actual reward received. They compared that data to the MRI data, and found that reward prediction errors correlated with activity in the nucleus accumbens, a brain region that in previous studies has been shown to activate when the subject is experiencing musical pleasure. This is the first evidence that musically elicited reward prediction errors cause musical pleasure. It is also the first time an aesthetic reward such as music has been shown to create such a response. Previous studies have focused on more tangible rewards such as food or money.

Subjects whose reward prediction errors most closely matched activity in the nucleus accumbens also showed the most progress in learning the choices that led to the consonant tones. This establishes music as a neurobiological reward capable of motivating learning, showing how an abstract stimulus can engage the brain's reward system to potentially pleasurable effect and motivate us to listen again and again.

"This study adds to our understanding of how abstract stimuli like music activate the pleasure centres of our brains," says Gold. "Our results demonstrate that musical events can elicit formally-modeled reward prediction errors like those observed for concrete rewards such as food or money, and that these signals support learning. This implies that predictive processing might play a much wider role in reward and pleasure than previously realized."

The study was published in the journal Proceedings of the National Academy of Sciences on Feb. 6, 2019. It was funded with a Fulbright Canada STEM Graduate Award and a Natural Sciences and Engineering Research Council-CREATE fellowship to Gold, and by a Foundation Grant from the Canadian Institutes of Health Research and a Canadian Institute for Advanced Research Senior Fellowship to Zatorre.


Story Source:

Materials provided by McGill University. Note: Content may be edited for style and length.


Journal Reference:

  1. Benjamin P. Gold, Ernest Mas-Herrero, Yashar Zeighami, Mitchel Benovoy, Alain Dagher, Robert J. Zatorre. Musical reward prediction errors engage the nucleus accumbens and motivate learning. Proceedings of the National Academy of Sciences, 2019; 201809855 DOI: 10.1073/pnas.1809855116

Cite This Page:

McGill University. "The unexpected creates reward when listening to music." ScienceDaily. ScienceDaily, 12 February 2019. <www.sciencedaily.com/releases/2019/02/190212134120.htm>.
McGill University. (2019, February 12). The unexpected creates reward when listening to music. ScienceDaily. Retrieved November 19, 2024 from www.sciencedaily.com/releases/2019/02/190212134120.htm
McGill University. "The unexpected creates reward when listening to music." ScienceDaily. www.sciencedaily.com/releases/2019/02/190212134120.htm (accessed November 19, 2024).

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