PsyPost
  • Mental Health
  • Social Psychology
  • Cognitive Science
  • Neuroscience
  • About
No Result
View All Result
Join
My Account
PsyPost
No Result
View All Result
Home Exclusive Cognitive Science

Scientists locate homing signal in brain, explaining why some people are better navigators

by University College London
December 29, 2014
Reading Time: 3 mins read
Photo credit: Blausen Medical Communications

Photo credit: Blausen Medical Communications

Share on TwitterShare on Facebook

The part of the brain that tells us the direction to travel when we navigate has been identified by UCL scientists, and the strength of its signal predicts how well people can navigate.

It has long been known that some people are better at navigating than others, but until now it has been unclear why. The latest study, funded by the Wellcome Trust and published in Current Biology, shows that the strength and reliability of ‘homing signals’ in the human brain vary among people and can predict navigational ability.

In order to successfully navigate to a destination, you need to know which direction you are currently facing and which direction to travel in. For example, ‘I am facing north and want to head east’. It is already known that mammals have brain cells that signal the direction that they are currently facing, a discovery that formed part of the 2014 Nobel Prize in Physiology or Medicine to UCL Professor John O’Keefe.

The latest research reveals that the part of the brain that signals which direction you are facing, called the entorhinal region, is also used to signal the direction in which you need to travel to reach your destination. This part of the brain tells you not only which direction you are currently facing, but also which direction you should be facing in the future. In other words, the researchers have found where our ‘sense of direction’ comes from in the brain and worked out a way to measure it using functional magnetic resonance imaging (fMRI).

“This type of ‘homing signal’ has been thought to exist for many years, but until now it has remained purely speculation,” explains Dr Hugo Spiers (UCL Experimental Psychology), who led the study. “Studies on London cab drivers have shown that the first thing they do when they work out a route is calculate which direction they need to head in. We now know that the entorhinal cortex is responsible for such calculations and the quality of signals from this region seem to determine how good someone’s navigational skills will be.”

In the study, 16 healthy volunteers were asked to navigate a simple square environment simulated on a computer. Each wall had a picture of a different landscape, and each corner contained a different object. Participants were placed in a corner of the environment, facing a certain direction and asked how to navigate to an object in another corner.

“In this simple test, we were looking to see which areas of the brain were active when participants were considering different directions,” says Dr Spiers. “We were surprised to see that the strength and consistency of brain signals from the entorhinal region noticeably influenced people’s performance in such a basic task. We now need to investigate the effect in more complex navigational tasks, but I would expect the differences in entorhinal activity to have a larger impact on more complex tasks.

Dr Martin Chadwick (UCL Experimental Psychology), lead author of the study, said: “Our results provide evidence to support the idea that your internal ‘compass’ readjusts as you move through the environment. For example, if you turn left then your entorhinal region should process this to shift your facing direction and goal direction accordingly. If you get lost after taking too many turns, this may be because your brain could not keep up and failed to adjust your facing and goal directions.”

Google News Preferences Add PsyPost to your preferred sources

The entorhinal region is one of the first parts of the brain affected by Alzheimer’s disease, so the findings may also help to explain why people start to get lost in the early stages of the disease. The researchers hope to develop their simple simulation task so that it might be used to aid early diagnosis and monitor the progression of the disease.

Dr John Isaac, Head of Neuroscience and Mental Health at the Wellcome Trust said: “Neuroscientists have made huge advances in our understanding of how we navigate space, widely recognised after this year’s Nobel Prizes, and this research is yet another step forward. Why some people are better navigators than others is intrinsically interesting, but it also helps us explain the processes that go wrong in people with degenerative brain disorders such as dementia. An estimated 850,000 people are living with dementia in the UK, many of whom suffer deterioration in their navigational skills, leaving them lost and confused.”

TweetSendScanShareSendPinShareShareShareShareShare

Follow PsyPost

The latest research, however you prefer to read it.

Daily newsletter

One email a day. The newest research, nothing else.

Google News

Get PsyPost stories in your Google News feed.

Add PsyPost to Google News
RSS feed

Use your favorite reader.

Copy RSS URL
Social media
Support independent science journalism

Ad-free reading, full archives, and weekly deep dives for members.

Become a member

Trending

  • Creatine improves muscle mass and cognitive function in older adults even without exercise
  • The brain’s fuel system rapidly recovers after you stop heavy drinking
  • Massive study reveals a “physical activity paradox” in dementia risk
  • More time spent playing video games is linked to a thinner cerebral cortex in adolescents
  • Cannabis use alters how the human brain processes nicotine, new research suggests

Science of Money

  • How AI-generated plain English changes investor interest in mutual funds
  • What 18 years of brokerage data reveals about selling losing stocks
  • When edgy brands meet manipulative consumers: The backfire effect of dark personalities
  • Remote work boosts well-being and retention without sacrificing connection, new research suggests
  • Why the same risk carries different prices in different financial markets

Recent

  • Escitalopram reduces anger and irritability in premenstrual dysphoric disorder, study finds
  • How a parent’s motivation influences their child’s writing skills
  • Semaglutide may protect against psychiatric disorders independent of weight loss
  • Brain scans reveal how recurrent depression leaves a lasting mark on the amygdala
  • A clever psychological test reveals the subtle detail that makes us want to work harder
  • The surprising link between prosocial motivation and dark creativity
  • A specific facial proportion shapes our assumptions about men’s parenting styles
  • Chronic shame may drive destructive thought patterns in abuse survivors
  • Researchers tracked 43,000 women for 14 years. Here’s what happened to their political views as gender equality improved.
  • Creatine improves muscle mass and cognitive function in older adults even without exercise

PsyPost is a psychology and neuroscience news website dedicated to reporting the latest research on human behavior, cognition, and society. (READ MORE...)

  • Mental Health
  • Neuroimaging
  • Personality Psychology
  • Social Psychology
  • Artificial Intelligence
  • Cognitive Science
  • Psychopharmacology
  • Contact us
  • Disclaimer
  • Privacy policy
  • Terms and conditions

(c) PsyPost Media Inc

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In

Add New Playlist

Subscribe
  • My Account
  • Cognitive Science Research
  • Mental Health Research
  • Social Psychology Research
  • Drug Research
  • Relationship Research
  • About PsyPost
  • Contact
  • Privacy Policy

(c) PsyPost Media Inc