Aphantasia Impacts Autobiographical Memory Recall

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Summary: Individuals with aphantasia, a condition where people cannot visualize images in their mind, struggle more with recalling personal memories due to differences in their hippocampus and occipital lobe. This study, involving participants with and without aphantasia, utilized questionnaires, interviews, and functional magnetic resonance imaging (fMRI) to explore the connection between visual imagination and memory recall.

The findings suggest that vivid autobiographical memories are closely linked to the ability to generate mental images, with significant implications for understanding memory functions and potential therapies. The research opens new avenues for investigating memory enhancement techniques, especially for conditions like Alzheimer’s disease.

Key Facts:

  1. People with aphantasia have more difficulty recalling memories, with less detail and confidence in their narratives.
  2. The study found decreased activation in the hippocampus and altered connectivity with the visual cortex in aphantasics.
  3. These insights may lead to innovative memory training methods, possibly benefiting memory disorder patients.

Source: University of Bonn

When people lack visual imagination, this is known as aphantasia. Researchers from the University Hospital Bonn (UKB), the University of Bonn and the German Center for Neurodegenerative Diseases (DZNE) investigated how the lack of mental imagery affects long-term memory.

They were able to show that changes in two important brain regions, the hippocampus and the occipital lobe, as well as their interaction, have an influence on the impaired recall of personal memories in aphantasia.

The study results, which advance the understanding of autobiographical memory, have now been published online by the specialist journal eLife.

Most of us find it easy to remember personal moments from our own lives. These memories are usually linked to vivid inner images. People who are unable to create mental images, or only very weak ones, are referred to as aphantasics.

Previous neuroscientific studies have shown that the hippocampus, in particular, which acts as the brain’s buffer during memory formation, supports both autobiographical memory and visual imagination.

However, the relationship between the two cognitive functions has not yet been clarified: “Can you remember specific events in your life without generating inner images? We investigated this question and, in collaboration with the Institute of Psychology at the University of Bonn, studied the autobiographical memory of people with and without visual imagination,” says corresponding author Dr. Cornelia McCormick from the Department of Neurodegenerative Diseases and Geriatric Psychiatry, who also conducts research at the DZNE and the University of Bonn.

Recall of memories is dependent on the generation of mental images

The Bonn team led by McCormick investigated the question of whether the hippocampus – in particular its connection, or connectivity, to other brain regions – is altered in people with aphantasia and examined the brain activities and structures associated with deficits in autobiographical memory in aphantasia.

The study involved 14 people with aphantasia and 16 control subjects. The extent of aphantasia and the respective autobiographical memory were initially determined using questionnaires and interviews.

“We found that people with aphantasia have more difficulty recalling memories. Not only do they report fewer details, but their narratives are less vivid and their confidence in their own memory is diminished. This suggests that our ability to remember our personal biography is closely linked to our imagination,” says co-author Merlin Monzel, a doctoral student at the Institute of Psychology at the University of Bonn.

The study participants then recalled autobiographical events while images of their brains were recorded using functional magnetic resonance imaging (fMRI).

“This showed that the hippocampus, which plays an important role in recalling vivid, detailed autobiographical memories, is less activated in people with aphantasia,” says co-author and PhD student Pitshaporn Leelaarporn, who works at the UKB and the DZNE.

There were also differences in the interaction between the hippocampus and the visual cortex, which is responsible for processing and integrating visual information in the brain and is located in the occipital lobe.

“The connectivity between the hippocampus and the visual cortex correlated with the imagination in people without aphantasia, whereas there was no correlation in those affected,” explains Leelaarporn.

“Overall, we have been able to show that autobiographical memory does not work as well in people who have limited visual imagination as it does in people who can visualize something very easily. These results raise further questions that we are currently investigating,” says McCormick.

On the one hand, it is now important to find out whether people who are blind from birth and have never been able to build up a repertoire of inner images can remember detailed autobiographical events. The Bonn researchers want to investigate whether this ability can be trained.

“It may even be possible to help people who suffer from memory disorders, such as Alzheimer’s disease, by offering training in visual imagination instead of the usual memory training,” says McCormick.

Funding: German Research Foundation (MC 244/3-1), DZNE Foundation (DZNE Foundation-Research for a Life without Dementia, Parkinson’s & ALS).

About this aphantasia and memory research news

Author: Inka Väth
Source: University of Bonn
Contact: Inka Väth – University of Bonn
Image: The image is credited to Neuroscience News

Original Research: Open access.
“Hippocampal-occipital connectivity reflects autobiographical memory deficits in aphantasia” by Cornelia McCormick et al. eLife


Abstract

Hippocampal-occipital connectivity reflects autobiographical memory deficits in aphantasia

Aphantasia prohibits people from experiencing visual imagery. While most of us can readily recall decade-old personal experiences (autobiographical memories, AM) with vivid mental images, there is a dearth of information about whether the loss of visual imagery in aphantasics affects their AM retrieval.

The hippocampus is thought to be a crucial hub in a brain-wide network underlying AM. One important question is whether this network, especially the connectivity of the hippocampus, is altered in aphantasia. In the current study, we tested 14 congenital aphantasics and 16 demographically matched controls in an AM fMRI task to investigate how key brain regions (i.e., hippocampus and visual-perceptual cortices) interact with each other during AM re-experiencing.

All participants were interviewed regarding their autobiographical memory to examine their episodic and semantic recall of specific events. Aphantasics reported more difficulties in recalling AM, were less confident about their memories, and described less internal and emotional details than controls.

Neurally, aphantasics displayed decreased hippocampal and increased visual-perceptual cortex activation during AM retrieval compared to controls. In addition, controls showed strong negative functional connectivity between the hippocampus and the visual cortex during AM and resting-state functional connectivity between these two brain structures predicted better visualization skills.

Our results indicate that visual mental imagery is essential for detail-rich, vivid AM, and that this type of cognitive function is supported by the functional connection between the hippocampus and the visual-perceptual cortex.

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