#SleepResearch

N-gated Hacker Newsngate
2025-10-28

👩‍🔬🧠 Scientists just discovered the fact that your brain does stuff when you fall asleep. 😴 Next up: a study proving water is wet! 💦
massgeneralbrigham.org/en/abou

2025-08-28

😴 Did you know Explore Pro isn’t just for EEG?
It’s also a powerful tool for sleep actigraphy.

🛏️ Analyse sleep–wake cycles
📊 Detect patterns & stages
📱 Monitor activity in real-world settings

Check out our example workflows on the wiki:
🔗 wiki.mentalab.com/applications

Geekoogeekoo
2025-06-06

A new wearable reveals how the brain cleans itself at night — and it could lead to powerful new ways to fight Alzheimer’s.

geekoo.news/new-device-reveals

2025-03-12

🛌 Can wearables match PSG for sleep research?

The Wearanize+ study explores multimodal sleep tracking, combining:
📌 Zmax (EEG)
📌 Empatica E4 (PPG, EDA)
📌 ActivPAL (Movement)
📌 Mentalab Explore Pro (PSG-grade signals)

With 130 participants, this open dataset could advance machine learning models for wearable-based sleep scoring.

🔗 Read more: doi.org/10.31219/osf.io/dth8y_

Symbolic PSG image taken from Wikimedia.

Traditional PSG study setup
1337 Group OOSIoosi@zhub.link
2025-01-14

As a child, I was a terrible sleeper. My parents would often find me awake at 3 AM with a flashlight under the covers reading a Hardy Boy, Nancy Drew, or Tom Swift book. When I was 9-years-old, my pediatrician prescribed an awful tasting medicine to be taken at night, mixed with pineapple juice to mask the flavor. Years later, I found out that the medicine was actually a heavy duty narcotic, sometimes called a “Mickey Finn.” Needless to say, I was just never a good sleeper. In my adult years, I often explained away my sleeping habits by swearing that 4-5 hours of sleep a night was all I needed.
My colleagues and I at California State University, Dominguez Hills, conducted sleep research that stems from my lab’s work on the “psychology of technology,” where we have discovered two important variables that encourage us to use (and misuse) technology, thereby losing sleep: (1) poor executive functioning, which includes our (in)ability to pay attention, problem solve, control our impulses, and make decisions, and (2) anxiety. In our work, anxiety is sometimes referred to as FOMO, or the fear of missing out. We see this anxiety in the majority of smartphone users who feel uncomfortable if they are not in direct contact with their phones — and their many electronic connections — 24/7/365. A dead battery and no charger can bring upon a panic attack.
In our study of more than 700 college students, we found that while poor executive functioning did predict sleep problems, the stronger effect was actually due to anxiety. The students who were more anxious about being apart from their phones used their phones more during a typical day, and woke up to check their phones more often at night. The latter two results — more daily smartphone use and more nighttime awakenings — led directly to sleep problems.
Why does anxiety about needing to stay in contact negatively impact sleep? First, those who are anxious about staying connected are more likely to use their technology right up until bedtime. We now know that the blue wavelength light from LED-based devices (phones, tablets, computers) increases the release of cortisol in the brain, which makes us more alert, and inhibits the production of melatonin, which is needed to fall asleep. That’s why The National Sleep Foundation recommends turning off all devices an hour prior to bedtime. The Mayo Clinic says that if you do choose to use technology during the hour before bedtime, keep it 14 inches from your face and dim the brightness, which helps reduce the blue light and increases the natural melatonin release. A study by researchers at Harvard Medical School found that compared to reading a paper book, people who read from an e-book needed an additional 10 minutes to fall asleep. They experienced 90 minutes of delayed melatonin onset — and had half the amount of melatonin released. They also had diminished rapid eye movement sleep. To compound these effects, anxious people have more cortisol in their system, which further stymies sleep. Anxious people also tend to have shorter attention spans — our own research has shown that they switch tasks every 3-5 minutes. This frenetic task switching increases stress — and cortisol — creating a vicious cycle. Finally, anxious people are more likely to sleep with their phone close by and check it when they awaken at night, which then further disrupts sleep.
Consider how vitally important sleep is to our health. In the 1950s and 1960s, William Dement and Nathaniel Kleitman illuminated the process of sleep. Basically, for normally well-rested people, sleep happens in a series of 90-minute bursts, each ending with a dream. Leading up to the dream are four critical phases responsible for synaptic rejuvenation, or the process of pruning away unneeded mental connections and consolidating or reinforcing needed ones. In addition, various molecular byproducts of thinking are left in the brain throughout the day, which are then washed away during normal sleep. Included among these are beta amyloids, which have been found in abundance in the brains of patients with Alzheimer’s disease. (For more on the relationship between sleep and Alzheimer’s disease, see this brief.) When you are not well rested, these phases — and the brain’s housekeeping chores — are disrupted. Further, if you awaken someone every time they start dreaming, they will soon skip the four phases and go straight into REM dream sleep, reducing synaptic rejuvenation.
The National Sleep Foundation has shown that we are in the midst of a 50-year decline in sleep duration, and one study found that 90% of Americans use their gadgets within the last hour before bedtime at least a few nights a week. They also found that the average college student loses 46 minutes of sleep each night due to answering phone calls or checking for messages. Add it all up, and we are all running the risk of a massive sleep debt that is not going to allow our sleeping brain to do its job. Sleep deprivation is leading to less efficient learning, higher emotionality, increased anxiety, and a less efficient brain.
So how do you reduce your nighttime anxiety and permit your brain to sleep effectively? Here are some suggestions:
During the day, practice not reacting to incoming alerts or notifications like one of Pavlov’s dogs. Don’t check your phone every time it beeps. In fact, turn off notifications and check on a schedule to retrain your brain’s neurotransmitters (particularly cortisol). Start by checking every 15 minutes, and gradually increase that to 30 minutes or more. Tell your family, friends, and colleagues that you may not respond immediately, but you will within a specified amount of time, such as 30 minutes to an hour later.
Stop using all devices one hour prior to sleep.
Put all devices away in another room rather than keep them in the bedroom to discourage you from checking them during the night. (If you must keep a phone nearby in case of emergency, set it so that it only rings when certain people are calling, but still place it across the room and away from your bedside.)
An hour before bedtime, start dimming the room lights slowly to release melatonin.
During the last hour before bedtime, choose an activity that your brain will find predictable and, thus, not anxiety-provoking. Consider any of the following:
Watch a television show that you love, maybe even a repeat.
Read a paper book (or use a Kindle which doesn’t emit blue light) by a familiar author.
Listen to music that is very familiar like a playlist of your favorite songs. If you need a device to do this, burn CDs and get a CD player. (The key is to use a device that doesn’t have internet access, email, or a phone.) Keep the volume low.
If you awaken in the middle of the night, try this trick: have a song lyric in mind (not the whole song) that you plan to sing in your mind over and over to block the anxiety and allow you to fall back to sleep. Another option is to learn one of many meditation techniques and practice and use those skills to calm your mind.
Our devices are a gift that connect us to so many people and so much information, but they do not have to raise our anxiety and harm our all-important sleep. We need to control our devices, rather than letting them control us.
### Hashtags:
#SleepHealth #DigitalAnxiety #FOMO #SmartphoneAddiction #SleepTips #TechPsychology #Melatonin #Cortisol #SleepDeprivation #HealthyHabits #ScreenTime #MentalHealth #REM #SleepResearch #SleepHygiene #NighttimeAnxiety #TechAndSleep #BrainHealth #sleepbetter

bastyon.com/demaskatze?s=f0015

BC BY-NC-SABCBYNCSA
2024-12-26

Nachtstrom & v93r – Wrck

CC BY-NC-SA ( Attribution Non Commercial Share Alike)
bruitversum.bandcamp.com/album

MPI for Biol. IntelligenceMPIforBI@wisskomm.social
2023-11-30

Breeding penguins sleep ten thousand times a day! 🐧 💤 New study finds that with second-long microsleeps the penguins’ sleep still sums up to 12 hours a day! Microsleep seems to be a successful strategy to breed safely without losing the essential functions of sleep.

Find out more: bi.mpg.de/news/2023-11-rattenb

#wisskomm #scicomm #science #sciencemastodon #sciencemagazine #research #researchnews #penguins #pinguine #animals #animalsleep #sleepresearch

2023-11-29

@RickiTarr

48 strictly, it was a timed aspect of a sleep research study I did back in '91 or so. I was paid $3500 to stay locked in a sleep lab with no time queues (sp) for 35 days. They controlled wake and sleep time, EKG leads on for sleep and the time varied at their discretion. No exercise allowed, no computer, no TV, I could play cards, read, write, build models but at every 250 Kcal meal ( randomized) I had to do cognitive tests, subtraction, word associated, that stuff.
#SleepResearch

2023-11-16

Students from Aarhus University in #Denmark developed tools to train neural networks for sleep research on the LUMI supercomputer.

This significant contribution to international #research will facilitate loading more sleep data sets, leading to better sleep scoring models and more accurate interpretations of sleep data👉 connect.geant.org/2023/11/15/b

Also featured on #CONNECT44 👉 connect.geant.org/connect44

#SleepResearch #SleepData #NeuralNetworks #HPC #SleepScoreModels #DeiC #LUMIhpc #ML @nordunet

Woman wearing a ‘partial PSG’ setup for sleep monitoring, including EEG and EOG electrodes. Credits to Kaare Mikkelsen
2023-08-27

I now have a full Johto team! I’m looking forward to Umbreon and Slowking helping me with my #sleep research in the future!

#PokemonSleep #PokemonCommunity #Pokemon #SleepResearch #Johto #JohtoRepresent

MPI for Biol. IntelligenceMPIforBI@wisskomm.social
2023-08-04

How does a dolphin sleep? 🐬 Or a seal? 💤 Sleeping at sea can be a high risk for animals but is necessary for their brain to function. Read about the astonishing strategies different animals have developed to sleep safe at sea in Niels Rattenborg’s new review: science.org/doi/10.1126/scienc

#science #ScienceMastodon #maxplanck #research #researchnews #sleep #sleepresearch #animals #animalsleep #ocean #dolphins #schlaf #schlafforschung

Picture collage with a frigate bird, seal and dolphin on a water background. A ZZZ graphic symbolizes the topic of sleep. In the middle, there is a question written: How do animals sleep at sea?
2023-05-01

🐶 Like humans, dogs with dementia struggle with sleep, according to a new study

💤The findings suggest that targeting sleep problems could improve the quality of life for dogs with the condition

Read more:

scimex.org/newsfeed/like-us-do #dogs #dementia #sleepresearch

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