Strona główna nauka/tech According to Researchers, Your Breathing Patterns Could Hold the Key to Better...

According to Researchers, Your Breathing Patterns Could Hold the Key to Better Memory

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For the first time, researchers have identified a breathing rhythm in the human hippocampus during sleep, revealing that breathing acts as a metronome coordinating sleep oscillations. These findings, highlighting the role of breathing as a fundamental rhythm in memory consolidation, hold significant implications for individuals with disordered breathing during sleep.

Breathing synchronizes brain waves that support memory consolidation.

A new study from Northwestern Medicine reports that, much like a conductor harmonizes various instruments in an orchestra to create a symphony, breathing synchronizes hippocampal brain waves to enhance memory during sleep.

This is the first time breathing rhythms during sleep have been linked to these hippocampal brain waves — called slow waves, spindles, and ripples — in humans. Scientists knew these waves were linked to memory but their underlying driver was unknown.

“To strengthen memories, three special neural oscillations emerge and synchronize in the hippocampus during sleep, but they were thought to come and go at random times,” said senior study author Christina Zelano, professor of neurology at Northwestern University Feinberg School of Medicine. “We discovered that they are coordinated by breathing rhythms.”

Corresponding study author Andrew Sheriff explains the key findings from the study and what they mean going forward. Credit: Northwestern University

Northwestern scientists discovered that hippocampal oscillations occur at particular points in the breathing cycle, suggesting that breathing is a critical rhythm for proper memory consolidation during sleep.

“Memory consolidation relies on the orchestration of brain waves during sleep, and we show that this process is closely timed by breathing,” said corresponding author Andrew Sheriff, a postdoctoral student in Zelano’s lab.

The study was recently published in the Proceedings of the National Academy of Sciences.

Implications for Sleep-Disordered Breathing

The findings have important implications for disordered breathing during sleep—such as sleep apnea—which is linked with poor memory consolidation.

We’ve all had the experience of better memories after a night of sleep. This was noted as far back as ancient Rome, when the scholar Quintillion wrote of the “curious fact” that “the interval of a single night will greatly increase the strength of the memory,” the study authors said. He was describing what we now call memory consolidation, which is accomplished by the exquisitely tuned coordination of different brain waves in the hippocampus.

Andrew Sheriff Looks at a Computer Monitor in a Lab
Corresponding author Andrew Sheriff looks at a computer monitor in a lab. Credit: Northwestern University

“When you’re sleeping, your brain is actively replaying experiences you had during the day,” Sheriff said.

Sheriff had just returned from a conference in Reykjavik, Iceland, where he had to learn his way around a new city. “The hippocampus plays a major role in forming a map of a new area,” Sheriff said. “I would wake up and feel I had a better representation of the city around me. That was facilitated by the oscillations that occurred during my sleep, which we found are coordinated by breathing.”

The study indicates people with disrupted breathing during sleep should seek treatment for it, Sheriff said.

“When you don’t get sleep your brain suffers, your cognition suffers, you get foggy,” Sheriff said. “We also know that sleep-disordered breathing is connected with stroke, dementia, and neurodegenerative disorders like Alzheimer’s Disease.

“If you listen to someone breathing, you might be able to tell when they are asleep, because breathing is paced differently when you’re sleeping. One reason for that may be that breathing is performing a careful task: coordinating brain waves that are related to memory.”

Reference: “Breathing orchestrates synchronization of sleep oscillations in the human hippocampus” by Andrew Sheriff, Guangyu Zhou, Vivek Sagar, Justin B. Morgenthaler, Christopher Cyr, Katherina K. Hauner, Mahmoud Omidbeigi, Joshua M. Rosenow, Stephan U. Schuele, Gregory Lane and Christina Zelano, 16 December 2024, Proceedings of the National Academy of Sciences.
DOI: 10.1073/pnas.2405395121

The study was funded by the National Institute on Deafness and Other Communication Disorders and a Ruth L. Kirchstein Institutional National Research Award.



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