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Less sleep reduces positive feelings

Sleeping less than normal impacts how we feel the next morning.

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Photo by @dannyg from Unsplash.com

Sleeping less than normal impacts how we feel the next morning.

“Not in the sense that we have more negative feelings, like being down or depressed. But participants in our study experienced a flattening of emotions when they slept less than normal. They felt less joy, enthusiasm, attention and fulfilment,” says Associate Professor Ingvild Saksvik-Lehouillier at the Norwegian University of Science and Technology’s (NTNU) Department of Psychology.

Most sleep research is done in laboratories, but Saksvik-Lehouillier and the NTNU research team studied participants who slept at home.

The participants first spent seven nights in their own bed, and slept as long as they usually do.

Three of the mornings they conducted a set of tests. Next, the participants slept two hours less than normal for three nights. On two of the mornings they went through the same tests.

“We all have different sleep patterns. The point of having the participants sleep at home was to keep everything as similar to daily life as possible. In the imposed sleep deprivation phase, participants crawled under their covers two hours later than they normally did, and had to get up at their usual time,” says Saksvik-Lehouillier.

The practical testing took place about an hour and a half after the participants got up – and without having had any coffee.

They were shown 365 different pictures with random letters displayed on a computer screen over a period of 14 minutes. If the image did not contain the letter x, they were told to press the space bar, and if there was an x ??in the image, they were supposed to do nothing.

“We tested responsiveness and accuracy. The reaction time went down after the participants had been sleep deprived, but the error rate went up. It seems that we react more quickly to compensate for lower concentration. Then there’ll be more mistakes. It may be smart to avoid activities that require a high level of accuracy the morning after sleeping less than usual,” Saksvik-Lehouillier says.

Previous studies have shown that sleep deprivation may have about the same effect on driving as alcohol does.

Whereas the participants performed better and better each day they took the test after sleeping normally, they scored worse on accuracy each day after a night of insufficient sleep.

“We know that sleep is important for learning. Maybe that’s what we’re seeing here,” says Saksvik-Lehouillier.

In the second part of the test, participants answered a questionnaire to identify 20 positive and negative emotions.

“We didn’t find clear differences when it came to the negative emotions, but there were marked differences for the positive ones. Positive feelings scored worse after just one night of reduced sleep, and dropped even more after three nights. I think this is a really interesting find. We already know that fewer positive emotions have a major impact on mental health. We also know that poor sleep is included in virtually all mental health diagnoses,” Saksvik-Lehouillier said.

In terms of how long the lack of good feelings lasts after sleep deprivation, she says the study did not address that, but the research team plans to investigate the duration of this state of mind.

It’s not just in Norway that people are sleeping less than they used to — it’s an international trend, especially for people who work full-time.

“It’s easy for us to go to bed later than we should, especially when we think, ‘I just have to finish watching this series.’ But we still have to get up to go to work, or study, or deliver our kids to kindergarten. This contributes to getting too little sleep. How long we sleep is just part of the picture, but when we sleep is also important. An irregular circadian rhythm can be worse than sleeping too little. Going to bed and getting up at the same time is recommended,” says Saksvik-Lehouillier. She worries most about young people.

“Adolescents have a greater need for sleep and are a vulnerable group. They feel they need to be available online, there are a lot of entertainment temptations – and maybe the cell phone even goes to bed with them. But they still have to get up the next morning to go to school. Sleep deprivation can quickly become an issue. Many teens experience sleep problems during exam times. For them, it may be a comfort to know that studies show that short-term lack of sleep doesn’t affect their ability to reflect and discuss what they’re learning.

Long-term studies conducted among shift workers who sleep too little over a long period of time show major negative consequences for their health, including a significantly increased risk for diseases such as cancer and diabetes.

“Sleep is individual. Not everyone needs to sleep seven and a half hours every night. And we’re A and B people. Some of us like to stay up till the wee hours, others love to rise and shine early in the morning. The most important thing is how you feel. If you’re in a good mood and alert when you get up, those are indications that your sleep habits are working for you,” says Saksvik-Lehouillier.

Shorter sleep times aren’t entirely negative either. The body compensates for shorter periods of time with more effective sleep. The time spent awake in bed is also less.

Study participants included 59 people between the ages of 18 and 35. The responsiveness and accuracy test is called Conners’ Continuous Performance Test-3.

“Mild to moderate partial sleep deprivation is associated with increased impulsivity and decreased positive affect in young adults” appeared in SLEEP. Authors include: Ingvild Saksvik-Lehouillier, Simen Berg Saksvik, Johanna Dahlberg,Tiril K Tanum, Heidi Ringen,Håvard Rudi Karlsen, Trine Smedbøl, Torhild Anita Sørengaard, Mailen Stople, Håvard Kallestad, and Alexander Olsen.

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The look and feel of your neighborhood may affect your sleep

Those living in neighborhoods rated as having a stronger sense of safety tended to sleep longer, and that this rating appeared to be shaped by the streetscape.

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Your neighborhood’s “streetscape”—the physical environment of your street—is something that you have probably never consciously thought about, despite seeing it every day. But what if the streetscape was affecting you on a subconscious level and disrupting your sleep? 

This intriguing question is posed by the findings of a study led by Professor Daisuke Matsushita of the Graduate School of Human Life and Ecology at Osaka Metropolitan University. The research team used AI to analyze more than 200,000 Google Street View images to identify visual neighborhood characteristics. They then linked these characteristics to the self-reported sleep of 1,089 working adults living on the lower floors of apartments in Tokyo, who were most likely to be affected by the streetscape.  

They found that those living in neighborhoods rated as having a stronger sense of safety tended to sleep longer, and that this rating appeared to be shaped by the streetscape. Generally, people slept longer in areas with lots of greenery, such as leafy trees, on the street. Similarly, high “enclosure”—meaning many tall vertical buildings and few wide-open spaces—was also associated with longer sleep and fewer insomnia symptoms. 

However, the study also made a surprising finding. The researchers found that highly walkable streetscapes, such as those with more sidewalks and traffic signs, were associated with a lowered sense of safety and shortened sleep duration.  

This suggests that walkability does not always represent a reassuring environment. Instead, a possible explanation is that streets with extensive pedestrian infrastructure are often busier, more crowded, and used by more strangers, which may be perceived as less safe or less relaxing than quieter residential streets.  

“This study demonstrates the potential for evaluating streetscape characteristics across large geographic areas in a cost-effective manner,” Dr. Matsushita said. “Based on the technique used in this study, cities could potentially measure perceived safety, beauty, liveliness, and enclosure as well as pollution and noise.”  

“We hope that opening up this new perspective creates further possibilities for designing healthier neighborhoods,” he concludes.  

The findings were published in Building and Environment.

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Workout or nap? Either can help your sleepless brain, study finds

People who either completed 20 minutes of moderate-to-vigorous exercise or took a 90-minute nap performed about 22 per cent better on memory tests after 30 hours without sleep than those who did neither.

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A short workout or a nap can help protect memory after a sleepless night, a McGill University-led study has found.

Researchers found people who either completed 20 minutes of moderate-to-vigorous exercise or took a 90-minute nap performed about 22 per cent better on memory tests after 30 hours without sleep than those who did neither. The findings, published in Proceedings of the National Academy of Sciences (PNAS), point to practical ways to counter the effects of sleep deprivation.

“Sleep loss affects nearly every aspect of how we think and function, but many people can’t simply stop what they’re doing and get more sleep,” said senior author Marc Roig, Professor in McGill’s School of Physical and Occupational Therapy. “Our findings show that even a brief bout of exercise may help preserve one of our most important cognitive abilities.”

The study involved 54 healthy young adults who stayed awake for 30 consecutive hours under lab supervision. Participants were then assigned to one of three groups: a 20-minute cycling session, a 90-minute nap or a control condition. Three days later, researchers tested their memory for images they had viewed immediately after the intervention. Those who exercised or napped remembered significantly more images than participants who did neither.

Same result, different pathways

While the memory benefits were nearly identical, brain recordings revealed that exercise and napping helped in different ways.

Napping appeared to help the brain recharge, making it easier to take in and remember new information. Exercise, by contrast, helped the brain use its remaining resources more efficiently, without making participants feel more tired.

The findings could eventually inform fatigue-management strategies in workplaces where sleep loss is common and mistakes can have serious consequences, such as health care, transportation and emergency response.

“A nap isn’t always possible in the middle of a shift,” said first author Madhura Lotlikar, a doctoral candidate in McGill’s Department of Neurology and Neurosurgery. “Exercise is accessible, inexpensive and easy to implement. That makes it a promising tool to help people stay cognitively sharp when sleep is limited.”

The researchers emphasize that exercise cannot replace sleep, but it may help people function better when getting enough rest isn’t possible.

About the study

Protecting episodic memory after sleep loss: Similar benefits of exercise and naps via distinct neural contributions” by Madhura Lotlikar and Marc Roig et al., was published in Proceedings of the National Academy of Sciences of the United States of America.

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Study links coffee consumption to metabolic health and sex hormones

Despite having a similar body mass index (BMI), individuals with higher coffee consumption had lower total and visceral fat and greater skeletal muscle mass than those who consumed less coffee.

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Coffee is one of the world’s most widely consumed beverages, and previous research has linked its consumption to a lower risk of conditions such as type 2 diabetes and cardiovascular disease. However, the biological mechanisms behind these benefits remain unclear. A new Finnish study links habitual coffee consumption to healthier body composition and metabolic markers, while revealing distinct associations with sex hormones in men and women.

The study, conducted at the University of Oulu, analysed data from 2,264 participants aged 46 in the Northern Finland Birth Cohort 1966. Researchers examined how habitual coffee consumption was associated with circulating metabolites, cardiometabolic risk markers and sex hormones.

Despite having a similar body mass index (BMI), individuals with higher coffee consumption had lower total and visceral fat and greater skeletal muscle mass than those who consumed less coffee.

In both men and women, higher coffee consumption was correlated with lower circulating levels of branched-chain amino acids, biomarkers that have previously been linked to insulin resistance and an increased risk of type 2 diabetes when chronically elevated.

The strongest sex-specific associations were observed in men. Higher coffee consumption was linked to a more favourable glucose–insulin profile, higher concentrations of total and bioavailable testosterone, and increased levels of sex hormone-binding globulin (SHBG). At the same time, free testosterone and the free androgen index were modestly lower. In women, hormonal associations were more limited and were primarily characterised by higher SHBG and lower measures of free androgens.

“Coffee is consumed by millions of people every day, yet we still know surprisingly little about how it relates to our metabolism and hormones. What stood out in our findings was a distinct hormonal signature that didn’t disappear even after we took into account BMI and lifestyle factors, with several of these associations differing between men and women,” says Luca Verroest, lead author of the study and Doctoral Researcher at the University of Oulu.

The results suggest that hormonal pathways may partly explain the relationship between coffee consumption and metabolic health. However, as this was an observational study, the findings demonstrate associations rather than cause-and-effect relationships.

The study is particularly relevant in Finland, one of the world’s highest coffee-consuming countries, where annual consumption averages around 11.8 kilograms per person.

The researchers say the findings provide a foundation for future studies aimed at determining whether coffee itself drives these biological changes and identifying the compounds responsible. These questions are currently being investigated in animal models, with the long-term goal of progressing to human intervention studies. Further research will be needed before the findings could inform dietary recommendations.

The study, Associations of habitual coffee intake with testosterone and cardiometabolic markers: the Northern Finland Birth Cohort 1966 study, has been published in the European Journal of Nutrition.

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