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Horror movies manipulate brain activity expertly to enhance excitement

Date:
January 24, 2020
Source:
University of Turku
Summary:
A research team maps neural activity in response to watching horror movies. A study shows the top horror movies of the past 100 years, and how they manipulate brain activity.
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Finnish research team maps neural activity in response to watching horror movies. A study conducted by the University of Turku shows the top horror movies of the past 100 years, and how they manipulate brain activity.

Humans are fascinated by what scares us, be it sky-diving, roller-coasters, or true-crime documentaries -- provided these threats are kept at a safe distance. Horror movies are no different.

Whilst all movies have our heroes face some kind of threat to their safety or happiness, horror movies up the ante by having some kind of superhuman or supernatural threat that cannot be reasoned with or fought easily.

The research team at the University of Turku, Finland, studied why we are drawn to such things as entertainment? The researchers first established the 100 best and scariest horror movies of the past century (Table 1), and how they made people feel.

Unseen Threats Are Most Scary

Firstly, 72% of people report watching at last one horror movie every 6 months, and the reasons for doing so, besides the feelings of fear and anxiety, was primarily that of excitement. Watching horror movies was also an excuse to socialise, with many people preferring to watch horror movies with others than on their own.

People found horror that was psychological in nature and based on real events the scariest, and were far more scared by things that were unseen or implied rather than what they could actually see.

- This latter distinction reflects two types of fear that people experience. The creeping foreboding dread that occurs when one feels that something isn't quite right, and the instinctive response we have to the sudden appearance of a monster that make us jump out of our skin, says principal investigator, Professor Lauri Nummenmaa from Turku PET Centre.

MRI Reveals How Brain Reacts to Different Forms of Fear

Researchers wanted to know how the brain copes with fear in response to this complicated and ever changing environment. The group had people watch a horror movie whilst measuring neural activity in a magnetic resonance imaging scanner.

During those times when anxiety is slowly increasing, regions of the brain involved in visual and auditory perception become more active, as the need to attend for cues of threat in the environment become more important. After a sudden shock, brain activity is more evident in regions involved in emotion processing, threat evaluation, and decision making, enabling a rapid response.

However, these regions are in continuous talk-back with sensory regions throughout the movie, as if the sensory regions were preparing response networks as a scary event was becoming increasingly likely.

-Therefore, our brains are continuously anticipating and preparing us for action in response to threat, and horror movies exploit this expertly to enhance our excitement, explains Researcher Matthew Hudson.


Story Source:

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


Journal Reference:

  1. Matthew Hudson, Kerttu Seppälä, Vesa Putkinen, Lihua Sun, Enrico Glerean, Tomi Karjalainen, Henry K. Karlsson, Jussi Hirvonen, Lauri Nummenmaa. Dissociable neural systems for unconditioned acute and sustained fear. NeuroImage, 2020; 116522 DOI: 10.1016/j.neuroimage.2020.116522

Cite This Page:

University of Turku. "Horror movies manipulate brain activity expertly to enhance excitement." ScienceDaily. ScienceDaily, 24 January 2020. <www.sciencedaily.com/releases/2020/01/200124104518.htm>.
University of Turku. (2020, January 24). Horror movies manipulate brain activity expertly to enhance excitement. ScienceDaily. Retrieved December 15, 2024 from www.sciencedaily.com/releases/2020/01/200124104518.htm
University of Turku. "Horror movies manipulate brain activity expertly to enhance excitement." ScienceDaily. www.sciencedaily.com/releases/2020/01/200124104518.htm (accessed December 15, 2024).

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