Does ‘Vabbing’ Actually Make You Irresistible To Men? I Asked A Sexologist

Ever heard of vabbing? No?

Well, nor had I until this morning (how I cherish my life before then).

Turns out the phrase refers to a social media phenomenon (it would be inaccurate to call it a trend, as most people seem appalled by it) that involves wiping vaginal secretions on your pulse points. Yes, really.

In a now-deleted TikTok video, a site user said: “I swear if you vab, you will attract people, like a date, a one-night stand. Or you’ll just get free drinks all night.”

“Elle Woods should have been teaching vabbing instead of the bend and snap – it’s more effective,” the TikToker added.

It’s important to stress that the practice, which is a portmanteau of “vagina” and “dabbing”, really hasn’t taken off – it seems to be more of a point of viral outrage than an actual trend.

Still, I thought I’d speak to sexologist, therapist, and author at Passionerad Sofie Roos about whether the original controversial clip had any merit whatsoever.

And?

Kind of, but not really, the expert said.

“A study published in 2020 found that heterosexual men can smell women’s sexual arousal, and one part of that is the vaginal secretions, especially the lubrication that’s produced when [women are] turned on,” the sexologist explained.

So, there might be a real appeal in the scent – but not in the context of “vabbing,” Roos reckons.

“Research published in Science Direct 2006 finds that female pheromones are very dependent on the social context to work, so wearing vaginal secretions as a perfume in any not-so-sexually-loaded situation will most likely have a disgusting effect,” she shared.

“In my opinion… it’s better to use a good-smelling perfume of high quality” if you want to attract a date, Roos continued.

Smelling of, er, secretions is just “unhygienic” in the wrong context.

Pheromones may actually matter, though

Obviously, there’s no need to “vab.” But speaking to TIME, Noam Sobel, a professor in neurobiology and smell expert, said that our partner’s BO might have more of a say in how much we fancy them than we realise.

“The underlying theory is that you somehow select immune compatibility in a mate” through scent, he told the publication.

Still, Gary Beauchamp, president of the Monell Chemical Senses Centre, told TIME that it’s hard to work out how much, say, sweat actually influences our attraction.

“There are so many things going on with humans, in terms of how you select somebody you want to be with or get married to or have children with… isolating the odour part to it has been very, very difficult.”

It’s far safer to bet that doing something like “vabbing” is a turn-off, don’t you think?

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Precautions could have stopped baby deaths – inquiry

Leo Lamont, Ellie McCormick and Mira-Belle Bosch died within hours of their births in two Lanarkshire hospitals.

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Some PIP recipients may lose out under welfare cuts

Work and Pensions Secretary Liz Kendall will set out reforms to the benefits system on Tuesday afternoon.

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Countdown to pharmacies’ protest over funding

Pharmacies are being advised to “work to rule” unless a funding agreement can be reached with government.

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Good fences make good neighbors (with carnivores)

A predator’s gotta eat, but sometimes what they eat harms people sharing the landscape, and that often leads to the carnivore’s death.

Fortified corrals are one strategy used in Tanzania to protect both livestock and vulnerable carnivore species. But then where do lions, leopards and hyenas go for dinner? Do they feed on the next herd over?

A new study led by Colorado State University has found that good fences truly do make good neighbors because fortified enclosures also benefit livestock keepers who live nearby. Instead of dining on easier meals next-door and negatively impacting neighbors who don’t have fortified enclosures, predators seem to completely avoid neighborhoods when some corrals are built from chain-link fencing, which is more effective than traditional African boma fences made of thorny bushes.

These surprising results are the first to demonstrate a beneficial spillover effect from a strategy to reduce conflict with large carnivores, which play an important role in ecosystems. Losing apex predators can cause ripple effects that disrupt the food web and impact environmental health.

“Coexistence between humans and carnivores is a global challenge, and conflict resulting from carnivores attacking livestock is among the most important coexistence threats globally, including here in the Rocky Mountain West and Colorado specifically,” said Kevin Crooks, co-author of the study and director of the CSU Center for Human-Carnivore Coexistence. “Our results provide important evidence of the effectiveness of proactive, non-lethal tools to prevent livestock predation by carnivores, benefiting not just the target household but potentially neighboring households as well.”

Lead author Jonathan Salerno, an associate professor in CSU’s Department of Human Dimensions of Natural Resources, said that while the intervention method studied is only applicable in limited contexts in the U.S. West, the need to understand the complex interactions among predators, people and conflict interventions is universal.

“Understanding these dynamics can help guide effective use of conservation resources and support better outcomes for people, livestock and threatened species,” he added.

Chain-link linked to safety, savings

In a previous study published in January, Salerno and his collaborators showed that chain-link corrals reduced predation on cattle, goats and sheep in an area surrounding Ruaha National Park in southern Tanzania, a critical landscape for large carnivore conservation. In this agropastoralist system, livestock are kept in fenced compounds at night, when predators are active, and are herded to community grazing lands during the day.

The park and surrounding conservation areas protect 10% of the world’s African lions, among other carnivores, but each household bordering the park has about a 30% chance of losing one or more of its animals to predation each year, a significant economic loss for these small-scale farmers.

Conservation organization Lion Landscapes subsidized 75% of the cost of fortified enclosures for livestock keepers near the park who chose to implement the intervention and cover the remaining 25% of construction costs. A cost-benefit analysis published in the paper showed that after just five years, the benefits from preventing livestock deaths were three to seven times greater than the amounts paid by livestock owners.

“The break-even point is anywhere from three months to two years, given that the loss of one cow is a substantial amount of wealth,” Salerno said. “So, you reduce the risk enough that the fortified enclosure actually pays for itself relatively quickly.”

Using monthly data from 758 livestock-keeping households from 2010 to 2016, the first study also found that the chain-link corrals were 94% effective at reducing the risk of predation in the short term and 60% effective in the long term.

Beneficial spillover effect

The new study, published March 6 in Conservation Letters, examined 25,000 monthly reports from livestock keepers and found that households neighboring those with chain-link corrals also reported fewer attacks on their livestock, the first time a beneficial spillover effect has been demonstrated. The study used data collected by Lion Landscapes and was funded by CSU’s School of Global Environmental Sustainability.

“This research provides scientific evidence about the effectiveness of antipredation interventions, which not only reduce livestock losses but also have positive spillover effects, fostering coexistence between humans and carnivores,” said co-author Joseph Francis Kaduma, a research manager with Lion Landscapes. “By demonstrating how non-lethal methods can benefit both people and wildlife, the study offers practical conservation solutions that can be scaled to other regions facing similar conflicts worldwide.”

Why are the carnivores staying away?

While the study does not answer this question, Salerno said that it’s possible the neighborhoods with enclosures are just too much work for predators.

“The neighborhood with three or four enclosures is going to represent more risk or more effort for the carnivore, because they know they can’t pull livestock out of the fortified enclosures, though a few leopards will try with a goat or sheep,” he said. “It reduces the availability; the night-time livestock buffet is simply less accessible and attractive.”

Why not fence the park?

Like many national parks, Ruaha National Park is vast, and it’s not feasible to enclose it within a chain-link fence. Fencing the park also would have negative ecological consequences by isolating wildlife, and shutting people out would create even greater conflict between nearby communities and conservation interests, Salerno said.

Case study for a global issue

Lion Landscapes has long-term relationships with local livestock keepers and diligently tracked the data that supported these studies. Salerno said that having this kind of data from other places would help conservation organizations and wildlife managers find solutions to similar conflicts.

“If we gather these data, we can understand what factors are contributing to predation events on a particular ranch, and by accounting for the complexity of the larger system, we can start to understand what methods are going to be effective,” he added.

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Combination of cosmic processes shapes the size and location of sub-Neptunes

A combination of cosmic processes shapes the formation of one of the most common types of planets outside of our solar system, according to a new study led by researchers at Penn State. The research team used data from NASA’s Transiting Exoplanet Survey Satellite (TESS) to study young sub-Neptunes — planets bigger than Earth but smaller than Neptune — that orbit close to their stars. The work provides insights into how these planets might migrate inward or lose their atmosphere during their early stages.

A paper describing the research appeared today March 17 in the Astronomical Journal. The findings offer clues about the properties of sub-Neptunes and help address long-standing questions about their origins, the team said.

“The majority of the 5,500 or so exoplanets discovered to date have a very close orbit to their stars, closer than Mercury to our sun, which we call ‘close-in’ planets,” said Rachel Fernandes, President’s Postdoctoral Fellow in the Department of Astronomy and Astrophysics at Penn State and leader of the research team. “Many of these are gaseous sub-Neptunes, a type of planet absent from our own solar system. While our gas giants, like Jupiter and Saturn, formed farther from the sun, it’s unclear how so many close-in sub-Neptunes managed to survive near their stars, where they are bombarded by intense stellar radiation.”

To better understand how sub-Neptunes form and evolve, the researchers turned to planets around young stars, which only recently became observable thanks to TESS.

“Comparing the frequency of exoplanets of certain sizes around stars of different ages can tell us a lot about the processes that shape planet formation,” Fernandes said. “If planets commonly form at specific sizes and locations, we should see a similar frequency of those sizes across different ages. If we don’t, it suggests that certain processes are changing these planets over time.”

Observing planets around young stars, however, has traditionally been difficult. Young stars emit bursts of intense radiation, rotate quickly and are highly active, creating high levels of “noise” that make it challenging to observe planets around them.

“Young stars in their first billion years of life throw tantrums, emitting a ton of radiation,” Fernandes explained. “These stellar tantrums cause a lot of noise in the data, so we spent the last six years developing a computational tool called Pterodactyls to see through that noise and actually detect young planets in TESS data.”

The research team used Pterodactyls to evaluate TESS data and identify planets with orbital periods of 12 days or less — for reference, much less than Mercury’s 88-day orbit — with the goal of examining the planet sizes, as well as how the planets were shaped by the radiation from their host stars. Because the team’s survey window was 27 days, this allowed them to see two full orbits from potential planets. They focused on planets between a radius of 1.8 and 10 times the size of Earth, allowing the team to see if the frequency of sub-Neptunes is similar or different in young systems versus older systems previously observed with TESS and NASA’s retired Kepler Space Telescope.

The researchers found that the frequency of close-in sub-Neptunes changes over time, with fewer sub-Neptunes around stars between 10 and 100 million years of age compared to those between 100 million and 1 billion years of age. However, the frequency of close-in sub-Neptunes is much less in older, more stable systems.

“We believe a variety of processes are shaping the patterns we see in close-in stars of this size,” Fernandes said. “It’s possible that many sub-Neptunes originally formed further away from their stars and slowly migrated inward over time, so we see more of them at this orbital period in the intermediate age. In later years, it’s possible that planets are more commonly shrinking when radiation from the star essentially blows away its atmosphere, a process called atmospheric mass loss that could explain the lower frequency of sub-Neptunes. But it’s likely a combination of cosmic processes shaping these patterns over time rather than one dominant force.”

The researchers said they would like to expand their observation window with TESS to observe planets with longer orbital periods. Future missions like the European Space Agency’s PLATO may also allow the research team to observe planets of smaller sizes, similar to that of Mercury, Venus, Earth and Mars. Expanding their analysis to smaller and more distant planets could help the researchers refine their tool and provide additional information about how and where planets form.

Additionally, NASA’s James Webb Space Telescope could permit the characterization of the density and composition of individual planets, which Fernandes said could give additional hints to where they formed.

“Combining studies of individual planets with the population studies like we conducted here would give us a much better picture of planet formation around young stars,” Fernandes said. “The more solar systems and planets we discover, the more we realize that our solar system isn’t really the template; it’s an exception. Future missions might enable us to find smaller planets around young stars and give us a better picture of how planetary systems form and evolve with time, helping us better understand how our solar system, as we know it today, came to be.”

In addition to Fernandes, the research team at Penn State includes Rebekah Dawson, Shaffer Career Development Professor in Science and professor of astronomy and astrophysics at the time of the research and now a physical scientist at NASA. The research team also includes Galen J. Bergsten, Ilaria Pascucci, Kevin K. Hardegree-Ullman, Tommi T. Koskinen and Katia Cunha at the University of Arizona; Gijs Mulders at Pontifical Catholic University of Chile; Steven Giacalone, Eric Mamajek, Kyle Pearson, David Ciardi, Preethi Karpoor, Jessie Christiansen and Jon Zink at the California Institute of Technology; James Rogers at the University of Cambridge, Los Angeles; Akash Gupta at Princeton University; Kiersten Boley at the Carnegie Institution for Science; Jason Curtis at Columbia University; Sabina Sagynbayeva at Stony Brook University; Sakhee Bhure at the University of Southern Queensland in Australia; and Gregory Feiden at the University of North Georgia.

Funding from NASA, including through support of the “Alien Earths” grant; Chile’s National Fund for Scientific and Technological Development; and the U.S. National Science Foundation supported this research. Additional support was provided by the Penn State Center for Exoplanets and Habitable Worlds and the Penn State Extraterrestrial Intelligence Center. Computations for this research were performed with Penn State’s University’s Institute for Computational and Data Sciences’ Roar supercomputer.

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New AI model analyzes full night of sleep with high accuracy in largest study of its kind

Researchers at the Icahn School of Medicine have developed a powerful AI tool, built on the same transformer architecture used by large language models like ChatGPT, to process an entire night’s sleep. To date, it is one of the largest studies, analyzing 1,011,192 hours of sleep. Details on their findings were reported in the March 13online issue of the journal Sleep.

The model, called patch foundational transformer for sleep (PFTSleep), analyzes brain waves, muscle activity, heart rate, and breathing patterns to classify sleep stages more effectively than traditional methods, streamlining sleep analysis, reducing variability, and supporting future clinical tools to detect sleep disorders and other health risks.

Current sleep analysis often relies on human experts manually scoring short segments of sleep data or using AI models that are not capable of analyzing a patient’s entire night of sleep. This new approach, developed using thousands of sleep recordings, takes a more comprehensive view. By training on full-length sleep data, the model can recognize sleep patterns throughout the night and across different populations and settings, offering a standardized and scalable method for sleep research and clinical use, say the investigators.

“This is a step forward in AI-assisted sleep analysis and interpretation,” says first author Benjamin Fox, a PhD candidate at the Icahn School of Medicine at Mount Sinai in the Artificial Intelligence and Emerging Technologies Training Area. “By leveraging AI in this way, we can learn relevant clinical features directly from sleep study signal data and use them for sleep scoring and, in the future, other clinical applications such as detecting sleep apnea or assessing health risks linked to sleep quality.”

The model was built using a large dataset of sleep studies (polysomnograms) that measure key physiological signals, including brain activity, muscle tone, heart rate, and breathing patterns. Unlike traditional AI models, which analyze only short, 30-second segments, this new model considers the entire night of sleep, capturing more detailed and nuanced patterns. Further, the model is trained via a method known as self-supervision, which helps learn relevant clinical features from physiological signals without using human labeled outcomes.

“Our findings suggest that AI could transform how we study and understand sleep,” says co-senior corresponding author Ankit Parekh, PhD, Assistant Professor of Medicine (Pulmonary, Critical Care and Sleep Medicine) at the Icahn School of Medicine at Mount Sinai, and Director of the Sleep and Circadian Analysis Group at Mount Sinai. “Our next goal is to refine the technology for clinical applications, such as identifying sleep-related health risks more efficiently.”

The researchers emphasize that this AI tool, while promising, would not replace clinical expertise. Instead, it would serve as a powerful aid for sleep specialists, helping to speed up and standardize sleep analysis. Next, the team’s research aims to expand its capabilities beyond sleep-stage classification to detecting sleep disorders and predicting health outcomes.

“This AI-driven approach has the potential to revolutionize sleep research,” says co-senior corresponding author Girish N. Nadkarni, MD, MPH, Chair of the Windreich Department of Artificial Intelligence and Human Health at the Icahn School of Medicine, Director of the Hasso Plattner Institute for Digital Health, and the Irene and Dr. Arthur M. Fishberg Professor of Medicine. Dr. Nadkarni is also the inaugural Chief of the Division of Data-Driven and Digital Medicine and Co-Director of the Mount Sinai Clinical Intelligence Center. “By analyzing entire nights of sleep with greater consistency, we can uncover deeper insights into sleep health and its connection to overall well-being.”

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This Is How Ashley Walters ‘Screwed Up’ 1 Take Of Adolescence Halfway Through

Ashley Walters had a bit of an on-set nightmare while filming the Netflix drama Adolescence, which required everyone to go back to square one.

Much has already been made about Adolescence’s unique filming style, which saw each hour-long episode of the hard-hitting drama being recorded in one continuous shot.

To accommodate this, both the cast and crew were put through weeks of rehearsals, with each episode being filmed straight-through, twice a day, over the period of a week.

On Monday morning, Stephen Graham and his wife Hannah Walters – both of whom worked as executive producers on Adolescence, while Stephen was also its co-writer and one of its stars – paid a visit to Radio X, where they were asked about how it all worked.

“Why would you do that?” host Chris Moyles asked of the straight-through technique. “Because what if you’re 53 minutes in and someone goes, ‘John… Bob… Oh, God damn it…’?”

Stephen responded: “Well, that’s the risk that you take, isn’t it?”

Chris then asked: “What if you’re, like, halfway through and someone goes, ‘Stephen… I mean…’.”

“That happened!” Stephen teased, with Hannah confirming: “It happened in Ashley’s episode. Ashley screwed up.”

Stephen Graham and Hannah Walters at the premiere of Adolescence last week
Stephen Graham and Hannah Walters at the premiere of Adolescence last week

via Associated Press

“Oh you’ve grassed him up,” Stephen then remarked, to which she insisted: “He won’t mind me saying!”

Since Adolescence’s release, Netflix has shared plenty of behind-the-scenes tidbits about how it was made – including what happened when the cast and crew made mistakes.

Last week, Ashley admitted that he’d already been through one major headache before production had even begun, when he turned up to set with a sports injury after an impromptu basketball game with his daughter.

“I took it for granted,” Ashley revealed. “I’m not gonna lie. Because I wanted to do the one-shot process so much.

“And I turned up to set with a bad back, by the way. My back had gone.”

He even went as far as saying “it nearly didn’t happen” for him, were it not for a last-minute appointment with a chiropractor who was able to sort him out.

The Chris Moyles Show Radio X airs every weekday from 6.30am on Radio X and Global Player. All four episodes of Adolescence are available to stream now on Netflix.

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People Are Just Realising Who Directed One Of Jennifer Love Hewitt’s Most Famous Scenes, And Wow

You may already know that Tim Burton was the unlikely director for both Batman and Batman Returns ― though he doesn’t think he’d do another superhero movie.

But that’s got nothing on the improbable director Jennifer Love Hewitt says is behind one of her most famous scenes.

In I Know What You Did Last Summer, the actor’s character breaks down after months of being followed by a killer. The camera shows her spinning in the street as she screams: “What are you waiting for, huh? What are you waiting for?”.

The moment is probably the best-known scene in the movie – and Jennifer says it was directed by a child, in an interview that’s resurfaced in a viral Instagram Reel.

Jennifer Love Hewitt

via Associated Press

Jennifer Love Hewitt

Speaking to US Weekly in 2018, the star said: “Here’s what’s crazy about that – that scene was actually directed by a kid who won a contest to come on and create a moment for the movie, and it became the biggest part of the movie.”

Though she admitted “I have no idea where he is,” she said his direction was great.

She claimed he said, “I want her to stay in the street and turn around and just… scream, like, ‘What are you waiting for?’”.

“I was literally like, are you kidding me right now?” Jennifer added.

“This is what I’m gonna do? Okay, this is a great idea, let’s have this guy come in,” she said sarcastically.

“And then we were doing it, and it looked amazing. And now everybody loves it.”

“That’s one of the best scenes of the movie. And one of my favourites to recite as well,” an Instagram user commented under a post about the fact.

“That kid is a genius,” another wrote.

I Know What You Did Last Summer’s sequel was announced in 2024 and is due to come out on June 18 of this year.

The actor is set to star in the new release, having previously told US Weekly: “I’m gonna be the creepy old lady who’s still turning around in the street screaming into the air and the kids are gonna hit me. That’s gonna be my part in the next movie!”

We don’t know exactly what her new role in the franchise will be yet ― but there’s been no mention of child directors so far.

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This Brilliant Moment From Adolescence Episode 3 Wasn’t Actually In The Script

Because of everything that went into Adolescence, the gripping new Netflix drama in which each episode was filmed in one continuous shot, it’s been well-documented that months of planning was required before shooting could actually begin.

However, that doesn’t mean that there wasn’t room for improvisation once the cameras did start rolling.

Speaking to Variety, director Philip Barantini revealed that during episode three – which sees Jamie being analysed by a child psychologist – teen actor Owen Cooper surprised everyone once he really got inside of his character’s mindset.

“Owen’s such a lovely kid so to get him to really go there and be really nasty and horrible to this character, it wasn’t in his nature initially to do that,” Barantini explained.

“So, there were moments in that episode where, during the rehearsals, I kept on saying: ‘go further, go mad, you hate her, scream at her, get it all out’. Obviously he’d never had to do that before, so he had to go there and realise the level he could take it.”

He continued: “There was one moment in one take, which I never asked him to do, where he’s talking to Erin [Doherty] and the camera’s on him and he just starts yawning.

“Everyone behind the camera was going, ‘oh my god, he’s never done that before!’ Erin being Erin just said to him, ‘I’m sorry, am I boring you?’. And he had this cheeky smile on his face.”

Owen Cooper at the premiere of Adolescence last week
Owen Cooper at the premiere of Adolescence last week

via Associated Press

Owen also spoke about the improvised moment during an interview on The One Show last week.

“It was the second take and, you know, I was tired so a yawn came to me,” he explained.

“Then Erin did an amazing line, she said, ‘Am I boring you?’. So, that took me back and it made me smile, because it wasn’t in the script. I wasn’t expecting that at all, so it took me back a little bit, but it was amazing.”

All four episodes of Adolescence are now available to stream on Netflix.

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