Saturday, 25 Jul 2026
  • My Feed
  • My Saves
  • History
  • Blog
Living Well Study
  • Blog
  • Ageing Well
  • Brain Health
  • Healthy Diets
  • Physical Wellness
  • Wellness
  • 🔥
  • Wellness
  • older adults
  • Living Well
  • Brain Health
  • dementia
  • public health
  • Ageing Well
  • Health and Medicine
  • alzheimer disease
  • physical exercise
Font ResizerAa
Living Well StudyLiving Well Study
  • My Saves
  • My Feed
  • History
Search
  • Pages
    • Home
    • Search Page
  • Personalized
    • Blog
    • My Feed
    • My Saves
    • History
  • Categories
    • Ageing Well
    • Brain Health
    • Healthy Diets
    • Mental Wellness
    • Physical Wellness
    • Wellness
Have an existing account? Sign In
Follow US
© 2022 Foxiz News Network. Ruby Design Company. All Rights Reserved.
Living Well Study > Blog > Science > Study Shows How the Adolescent Brain Reshapes Memory
Science

Study Shows How the Adolescent Brain Reshapes Memory

support
Share
a teenage brain under construction
SHARE

Scientists have long known that the brain continues developing well beyond the teenage years, with important changes in decision-making, emotional regulation and memory extending into the mid-to-late 20s. Now, researchers at Albert Einstein College of Medicine have identified a biological process in mice that sheds light on how memory circuits mature during this prolonged period of brain development. Published in PLOS Biology, the study found that a key memory region undergoes a surprising phase of remodeling during late adolescence, temporarily making earlier memories harder to access before they re-emerge later in adulthood, often with less precise detail.

The researchers focused on the retrosplenial cortex (RSP), a brain region involved in organising and retrieving long-term memories. They discovered that protective, mesh-like structures known as perineuronal nets, which help stabilise memory circuits, unexpectedly diminished during late adolescence before rebuilding in adulthood. This temporary decline was observed only in the RSP and not in the nearby hippocampus, another brain region critical for memory.

According to senior author Jelena Radulovic, M.D., Ph.D., the findings provide the first detailed picture of how one of the brain’s memory circuits continues developing after adolescence. She believes the reorganisation of these protective structures may help the brain prioritise memories formed in adulthood over those from early adolescence, allowing individuals to better adapt to new challenges at different stages of life.

The timing of these changes is particularly significant because it coincides with a period now recognised as one of continued brain maturation in humans. While adolescence was once thought to end around age 19, neuroscientists increasingly acknowledge that the brain continues developing into the mid-to-late 20s. Lead author Hui Zhang, Ph.D., said the behavioural changes closely mirrored the biological ones.

As the stabilising structures in the retrosplenial cortex temporarily weakened, access to memories formed earlier in life became less reliable, suggesting that memory retrieval naturally shifts as the brain continues to mature.

To examine how these changes affected memory, the researchers trained mice to associate a particular environment with a mild foot shock. Shortly afterwards, the mice remembered the experience and froze when returned to the same location. However, weeks later, many of the mice trained during early adolescence no longer displayed the fear response, whereas mice trained in adulthood retained stable memories. When the adolescent mice were later tested in a different environment, they once again responded to the original setting, indicating that the memories had become temporarily inaccessible rather than erased.

Further analysis revealed that the temporary loss of memory access was linked to reduced levels of proteins that maintain perineuronal nets, along with lower activity of TGFβ2, a growth factor that supports these protective structures. When researchers restored either the perineuronal nets or TGFβ2 activity, the mice regained access to memories formed earlier in life. By mid-adulthood, many of these memories returned naturally, although they were less specific, with the mice responding similarly in unfamiliar environments. The researchers note that this resembles the “reminiscence bump” seen in humans, in which adults tend to recall experiences from adolescence and early adulthood more readily than memories from other periods of life, while often remembering their emotional significance more clearly than the exact details.

Beyond advancing understanding of memory, the findings may also provide clues about mental health. Schizophrenia and major depression frequently emerge during late adolescence, the same developmental stage in which the researchers observed extensive remodeling of memory circuits in mice. The team suggests that disruptions to this normal developmental process could contribute to vulnerability to psychiatric disorders in genetically susceptible individuals. Although further studies are needed to determine whether the same mechanisms operate in people, the research offers an important new perspective on how the developing brain reshapes memories while preparing for adulthood.

More information: Hui Zhang et al, Retrosplenial cortical reorganization during late adolescence introduces instability of contextual memory circuits, PLOS Biology. DOI: 10.1371/journal.pbio.3003908

Journal information: PLOS Biology Provided by Albert Einstein College of Medicine

TAGGED:adolescentsbrain developmentmemorypsychiatric disorders
Share This Article
Email Copy Link Print
Previous Article Study Finds Frequent TV Watching Associated with Smaller Brain Structures
Next Article Living Environment May Affect Women’s Heart Health for Decades, Study Suggests
Leave a Comment

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Recent Posts

  • Living Environment May Affect Women’s Heart Health for Decades, Study Suggests
  • Study Shows How the Adolescent Brain Reshapes Memory
  • Study Finds Frequent TV Watching Associated with Smaller Brain Structures
  • Overweight May Contribute to Cancer Risk More Than Previously Thought
  • New Analysis in Nature Reviews Microbiology Examines the Impact of Climate Change on Waterborne Diseases

Tags

adolescents adverse effects ageing populations aging populations air pollution alzheimer disease amyloids anxiety artificial intelligence atopic dermatitis behavioral psychology biomarkers blood pressure body mass index brain cancer cancer research cardiology cardiovascular disease cardiovascular disorders caregivers children climate change climate change effects clinical research cognition cognitive development cognitive disorders cognitive function cognitive neuroscience COVID-19 dementia depression diabetes diets discovery research disease control disease intervention disease prevention diseases and disorders environmental health epidemiology foods food science gender studies geriatrics gerontology gut microbiota health and medicine health care health care costs health care delivery heart disease heart failure home care human brain human health hypertension inflammation insomnia life expectancy life sciences longitudinal studies memory disorders menopause mental health metabolic disorders metabolism mortality rates neurodegenerative diseases neurological disorders neurology neuroscience nursing homes nutrients nutrition obesity older adults parkinsons disease physical exercise population studies preventive medicine psychiatric disorders psychological science psychological stress public health research impact risk assessment risk factors risk reduction skin sleep sleep apnea sleep disorders social interaction social research socioeconomics tobacco type 2 diabetes weight loss
July 2026
S M T W T F S
 1234
567891011
12131415161718
19202122232425
262728293031  
« Jun    

This website is for information purpose only and is in no way intended to replace the advice, professional medical care, diagnosis or treatment of a doctor, therapist, dietician or nutritionist.

About | Contact | Cookie Policy | Digital Millennium Copyright Act Notice | Disclaimer | Privacy Policy | Terms of Service

You Might Also Like

Wellness

Positive Feelings and Restful Sleep Enhance the Durability of Perceptual Memories

By support
Science

Why Grip Strength Matters as We Grow Older

By support
Wellness

Inflammation Greatly Increases Depression Risk in Older Adults Suffering from Insomnia

By support
Science

Breakthrough study finds strong genetic risk factor for rare dementia

By support
Living Well Study
Categories
  • Ageing Well
  • Brain Health
  • Healthy Diets
  • Mental Wellness
  • Physical Wellness
  • Wellness
LivingWellStudy
  • About
  • Contact
  • Cookie Policy
  • Digital Millennium Copyright Act Notice
  • Disclaimer
  • Privacy Policy
  • Terms of Service
Welcome Back!

Sign in to your account

Username or Email Address
Password

Lost your password?