Friday, March 11, 2022

A neuroscientist shares the brain exercise she does for a stronger memory — and the mistake that can ‘harm’ it

Memory can be tricky. We assume that we’ll remember much more than we actually do. Then we run up against a moment of struggle, failing to pinpoint specific details of an event we’ve experienced, and we wonder how much of our lives we are fully taking in.

You might make a mistake because something you know doesn’t surface in the moment you need it; you have a frustrating, fuzzy sense of I should know that. Why does our ability to “record” sometimes fail us, and what can we do about it?

Training your brain to remember better requires focus

What we think is a memory problem is often actually an attention problem. As a neuroscientist and professor of psychology who studies attention, I’ve found that there are three critical things you must do to successfully remember something:

1. Rehearsal

Use your attention to trace over the information — the name you just heard as a new colleague introduced herself; the most important facts from the work training you’re in; the details of a fun experience you just had. 

In school, when you studied with flash cards, that was a rehearsal; when you review the nuances of a joyful moment (e.g., a family wedding — the toasts, the taste of the cake) or a painful one, that, too, is rehearsal.  

2. Elaboration

Elaboration involves using attention to link new experiences or information to knowledge or memories you already have. You can store much richer memories by elaborating in this way.  

Example: Picture an octopus. Now I tell you: an octopus has three hearts. If you didn’t already know that, you are — as you read this — tethering on that new knowledge to that existing image you have of an octopus. 

The next time you see one or a video of one, you might suddenly remember, turn to the person next to you, and say, “Did you know that an octopus has three hearts?”

3. Consolidation

The two processes mentioned above support initial memory formation. But to go from these initial stages to the storage of information in a more durable form over an extended period, known as long-term memory, requires consolidation.  

This involves forming connections between specific sets of neurons that code elements of the memory by replaying targeted brain activity. Repeated replays solidify the long-term memory trace.

Being too task-focused can harm our memory and creativity

At the grocery store, you fill your cart and head to the checkout line and pull out your phone. There’s a work email and a personal one — you read both, then start drafting a response to the work email.

A notification pings and you click it. The draft email autosaves and you swipe over to Twitter, where someone replied to something you tweeted earlier. You want to be supportive, so you retweet it. A news article catches your eye and you tap it. 

You’re halfway through skimming the article when the cashier announces your total, loading plastic bags into your cart — as the eco-friendly canvas bags you brought are still tucked under your arm. 

Sound familiar? We live busy lives, so the urge to pack as much as possible into every pocket of time is intense. If you didn’t draft that work email while standing in line, you would’ve had to do it later, when you could have been doing ... something else.

And this downtime has another important benefit, too: It supports memory consolidation.

We value and prioritize being continuously task-focused. And we don’t see mental downtime — when we purposefully disengage from finding, gripping and tightly directing our attention to some occupying task — as a valuable thing to do. And why should we? If focusing our attention, as well as using it to rehearse and elaborate supports successful memory, why shouldn’t we aim for all focus all the time? 

Consider your direct experience for a moment. Have you ever had a great idea in the shower? Perhaps it wasn’t because the shampoo’s scent inspired you. It’s that the shower forced mental downtime. You couldn’t take your phone or computer in there. You were trapped in that small, wet box with nothing demanding your attention.

Task-free downtime can lead to some of our most creative, generative moments — novel connections are made, new ideas are born, daydreams may appear that are not only satisfying, but also personally or professionally supportive. And this downtime has another important benefit, too: It supports memory consolidation. 

So remember to pay attention when you want to remember, but also let the mind roam free more often — to remember better!  

Dr. Amishi Jha is a professor of psychology at the University of Miami and the author of “Peak Mind: Find Your Focus, Own Your Attention, Invest 12 Minutes a Day.” She serves as the Director of Contemplative Neuroscience for the Mindfulness Research and Practice Initiative, which she co-founded in 2010. Dr. Jha’s work has been featured at NATO, the World Economic Forum and The Pentagon. She has received coverage in The New York Times, NPR and Time.

 

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Friday, June 06, 2014

Sleep after learning boosts memory

A new study has revealed that sleep after learning strengthens connections between brain cells and enhances memory.

Researchers at NYU Langone Medical Center have shown for the first time that sleep after learning encourages the growth of dendritic spines, the tiny protrusions from brain cells that connect to other brain cells and facilitate the passage of information across synapses, the junctions at which brain cells meet.

Moreover, the activity of brain cells during deep sleep, or slow-wave sleep, after learning is critical for such growth.

The findings, in mice, provide important physical evidence in support of the hypothesis that sleep helps consolidate and strengthen new memories, and show for the first time how learning and sleep cause physical changes in the motor cortex, a brain region responsible for voluntary movements.

"We've known for a long time that sleep plays an important role in learning and memory. If you don't sleep well you won't learn well," senior investigator Wen-Biao Gan, PhD, professor of neuroscience and physiology and a member of the Skirball Institute of Biomolecular Medicine at NYU Langone Medical Center, said.

"But what's the underlying physical mechanism responsible for this phenomenon? Here we've shown how sleep helps neurons form very specific connections on dendritic branches that may facilitate long-term memory. We also show how different types of learning form synapses on different branches of the same neurons, suggesting that learning causes very specific structural changes in the brain," the researcher said.

On the cellular level, sleep is anything but restful: Brain cells that spark as we digest new information during waking hours replay during deep sleep, also known as slow-wave sleep, when brain waves slow down and rapid-eye movement, as well as dreaming, stops.

Scientists have long believed that this nocturnal replay helps us form and recall new memories, yet the structural changes underpinning this process have remained poorly understood.

The study is published in the journal Science.
 
THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.





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Saturday, January 25, 2014

Brain cleans itself during sleep: Experts

The brain cleans itself of toxic metabolic by-products while one is asleep and this cleansing could be the basic purpose behind the state of rest, say experts.
The brain’s unique method of waste removal, dubbed the glymphatic system, is highly active during sleep, cleaning toxins responsible for Alzheimer’s disease and other neurological disorders, revealed the US journal Science.
Researchers from the University of Rochester, New York, also found that during sleep the brain’s cells reduce in size, allowing waste to be removed more effectively, Xinhua reported.
“This study shows that the brain has different functions when asleep and awake,” said Maiken Nedergaard from the University of Rochester Medical Center.
Recent findings have also shown that sleep can help store and consolidate memories.
The glymphatic system acts like a plumbing system that piggybacks on the brain’s blood vessels and pumps cerebral spinal fluid (CSF) through its tissues, flushing waste back into the circulatory system, the researchers said.
The glymphatic system is a waste clearance pathway in the central nervous system (CNS) of mammals.
Researchers speculated that the glymphatic system may be more active during sleep and carried series of experiments on mice by tracking the movements of red and green dye throughout the brain. They found that large amounts of CSF flowed into the brain of the mice during sleep, but not when they were awake.
The glymphatic system was almost 10-fold more active in them during sleep, researchers said.
“These findings have significant implications for treating disease like Alzheimer’s,” said Nedergaard.
Amyloid, a protein implicated in Alzheimer’s disease, is a waste product removed by the system during sleep.
“Understanding how and when brain activates the glymphatic system and clears waste is a critical first step in efforts to potentially modulate the system and make it work more efficiently,” he said.
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