Benefits of Petting Seedlings: How Touching Boosts Growth and Strength

Is your windowsill brimming with seeds for the upcoming gardening season? Indoor seedlings might flourish in ideal conditions, but they often become tall and leggy, making them prone to falling over shortly after germination. Can an age-old technique help sustain your gardening ambitions into 2026? Let’s explore why nurturing your plants with gentle touches is not as far-fetched as it sounds.

Plant propagation requires a delicate balance. Starting seedlings in controlled environments helps shield them from severe temperatures, pests, and diseases, thus boosting their early survival. However, this sheltered growth can lead to issues like yellowing, which compromises their strength. Known vulnerabilities can make indoor plants fragile, especially when exposed to outdoor elements. With billions in the agricultural sector riding on plant health, commercial growers have long sought effective solutions.

Chemical growth regulators provide one approach, fostering stronger plants. Yet, many of these products aren’t available for home gardeners. Conversely, studies reveal that mechanical stimulation—such as simply rubbing or stroking seedlings—can effectively combat yellowing. This response is attributed to a process known as thigmomorphogenesis, where plants adjust their growth in response to physical touches and environmental forces. Research shows that such interactions promote thicker, more supportive stems and overall compact growth. Many studies have highlighted that mechanically stimulated seedlings are structurally superior and more resilient against challenges like pests and drought.

This effect has been observed in various popular garden plants, from tomatoes and lettuce to petunias and marigolds. Experiments utilizing electric fans, vibrating benches, and even gentle brushing have demonstrated that these methods can significantly reduce stem elongation by 20-50%.

The key takeaway? While commercial growers have employed machines for this form of stimulation since the 1970s, it’s easy to replicate at home. Just ten gentle strokes on a seedling once a day can yield benefits. You can use an old envelope, a soft feather duster, or even your hand. It takes only 10 seconds daily, and the potential rewards are substantial—all supported by solid scientific research.

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James Wong is a botanist and science writer specializing in food crops, conservation, and environmental issues. Trained at the Royal Botanic Gardens in Kew, London, he maintains over 500 houseplants in his compact apartment. Connect with him on X and Instagram @botanygeek.

Source: www.newscientist.com

The Unusual Connection Between Increased Rest and Enhanced Strength, Speed, and Health

Olympia Arnold Schwarzenegger has long emphasized the significance of sleep. “People grow when they sleep, not when they train,” he asserts. Professional athletes often adhere to meticulous sleep regimens tailored to their chronotypes (natural sleep-wake preferences) and synced with their training schedules.

For amateur athletes, the emphasis tends to be on nutrition and training protocols for optimal results. Elite coach Nick Littlehales was among the first to champion sleep as a crucial component of success, stating, “You can train as hard as you want, but without sleep, you can’t adapt. No adaptation means no progress.”

Let’s delve deeper into what occurs in your body during sleep and why it’s a vital aspect of your training regimen and performance strategy.

What occurs in your body during sleep?

Photo credit: Getty

Sleep is not merely a passive phase of training. When you exercise vigorously, your body engages in recovery during sleep. Deep (slow-wave) sleep enables your body to reset, repair, and regenerate. Cellular repair takes place as microtears from your workout are fixed through protein synthesis. If you’ve ever dealt with delayed onset muscle soreness (DOMS), you understand the significance of quality sleep for recovery.

During this sleep phase, human growth hormone (HGH) is released. The pituitary gland generates HGH, which facilitates muscle growth and healing. Furthermore, deep sleep enhances immune system function, reducing the risk of illness—an evident concern for anyone in the midst of a training routine.

What else is happening in our bodies while we sleep?

  • Glycogen levels are restored, and anti-inflammatory cytokines assist in muscle recovery.
  • Your heart rate decreases, blood pressure falls, allowing your cardiovascular system a chance to recuperate.
  • Quality sleep has been shown to enhance insulin sensitivity. Improved glucose metabolism boosts energy levels and aids body composition.
  • Sleep also regulates significant hormones like testosterone, which is crucial for endurance and recovery.

Brain recovery process during sleep

Photo credit: Getty

Not only does physical recovery occur during sleep, but mental rejuvenation takes place as well. During REM sleep, typically experienced in the latter half of the night, your brain engages in “housework,” organizing, filing, and tidying up. Motor memory consolidation reinforces neural pathways established during training. Did you execute the perfect tennis serve today? It’ll be etched in your mind tonight.

Additionally, emotional regulation contributes to managing stress, enhancing focus, and boosting motivation—key components for achieving peak performance.

Optimize your sleep quality

Swedish bed manufacturer Hästens recognizes the significance of quality sleep. This luxury brand has been handcrafting beds since 1852, with each piece meticulously created in the Swedish town of Köning and taking up to 600 hours to complete using only natural materials.

Hästens has launched the collaborative campaign “Sleep to Perform,” teaming up with champions from both creative fields and sports, including five-time Grand Slam champion Maria Sharapova. She acknowledges that success begins with prioritizing rest, stating, “No matter where you are in your career, sleep is vital for your performance. It’s not just about rest; it’s about being able to present the best version of yourself every day.”

To explore our full range of beds and accessories, and to discover the benefits of a restful night’s sleep, please visit: here.

To schedule a bed test at a sleep spa near you, use the following resources: www.hastens.com or contact your nearest authorized retailer.

Source: www.sciencefocus.com

Carbon Nanotube-Woven Fabric Outperforms Kevlar in Strength

Bulletproof fabric is lightweight and strong

Peking University Jinzhang Group

The innovative material is remarkably strong, capable of stopping bullets with a 1.8-millimeter-thick sheet, surpassing Kevlar and potentially setting a new standard for fabric strength.

Bulletproof vests functionality relies on dissipating the energy of projectiles through an intricate network of interconnected fibers. Kevlar’s composition consists of aramid fibers, which are polymers recognized for their exceptional strength. However, under extreme pressure, these chains can slip, which limits their protective capabilities.

For the last six years, Jin Chang and researchers from Peking University in China have focused on creating materials that outperform Kevlar and Dyneema, another renowned polyethylene fiber claimed to be the strongest fabric in the world.

“Extremely high dynamic strength and toughness are essential for textile materials used in impact protection applications,” notes Zhang. “This includes ballistic armor, vehicles, and aircraft.”

His team has pioneered a technique to align carbon nanotubes with aramid polymer chains to prevent molecular slippage. “Our new fiber surpasses all previously noted high-performance polymer fibers,” asserts Zhang. “Our fabric is entirely superior to Kevlar.”

The new invention is described as an “engineered carbon nanotube/heterocyclic aramid composite,” according to Zhang, who aims to create a catchy name similar to Kevlar in the future.

This material outperforms Kevlar, achieving the same ballistic protection with significantly less fabric. Zhang explains that each layer is roughly 0.6 millimeters thick and can slow a bullet’s speed from 300 meters per second to 220 meters per second. “Based on energy absorption calculations, about three fabric layers can halt a bullet,” resulting in a total thickness of 1.8 mm. In contrast, Kevlar would need to be at least 4 mm thick for equivalent protection.

Julie Cairney and her team at the University of Sydney in Australia have called the combination of aramid fibers and aligned carbon nanotubes revolutionary.

“This strategy could lead to the development of other innovative composite materials,” Cairney states, also highlighting that this manufacturing approach is compatible with existing industrial methods, indicating promise for scalable production and practical implementation.

“For personal and military protection, these materials have the potential to create lighter and more effective body armor, enhancing safety while maintaining mobility,” she adds.

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Source: www.newscientist.com

Striking Visuals Reflect the Earth’s Vulnerability and Strength

Panda Keeper assesses health of giant panda Xi May’s turnips at Wolong Nature Reserve

Ami Vitale

These photographs from the Earth Photo 2025 competition convey a vivid, thrilling, and surprising narrative about our planet’s climate and biodiversity.

In photographer Ami Vitale’s image Pandamonium, we see a giant panda keeper examining the health of panda cubs in Ulong National Nature Reserve, Sichuan Province, China. The keeper’s attire is designed to minimize human impact on these bears. Following this, there’s another captivating shot by Sue Flood titled Craveter sticker, captured on a glacial ice floe in the waters south of the Antarctic Peninsula. Such images can unveil the area’s grandeur to those unable to visit.

Crabeater Seals in the Southern Ocean near the Antarctic Peninsula

Sue Flood

From Paradise, La Palma – The photo below depicts the aftermath of the 2021 Cumbre Vieja volcanic eruption on this Spanish Canary island. A resident is seen redoing their garden, clearing away lava that destroyed mature palm trees and replacing them with new plants.

La Palma, Canary Islands. Two Years Post-Cumbre Vieja Eruption

Jonathan Browning

The concluding image below features Vincenzo Montefinese’s Lost Oasis, taken in Tinzouline, Draa Valley, Morocco. Here, an individual is seen adjusting solar panels that operate the water pump for irrigating nearby palm trees. Due to climate change and water scarcity, the valley’s oases have diminished by two-thirds over the past century, prompting farmers to illegally dig wells to access groundwater.

Tinzouline, Draa Valley, Morocco

Vincenzo Montefinese

The featured images were curated by New Scientist photo editor Tim Bodhis and David Stock, the director of editorial videos. The winners will be announced on June 16th, and the Earth Photo 2025 exhibition will take place at the Royal Geographical Society in London from June 17 to August 20, followed by a tour across the UK.

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Source: www.newscientist.com

The strength of your sweet tooth could be linked to your sugar-digesting capabilities

When it comes to food cravings, some of us lean towards ice cream while others prefer something savory. It can be hard to understand how people have different tastes when it comes to food. How can anyone not enjoy chocolate?

A recent study may provide some answers. It appears that individuals who have an aversion to sweet foods may have a genetic anomaly in their DNA that makes it challenging for them to digest sucrose (sugar).



Genetic issues with sucrose digestion are commonly linked to irritable bowel syndrome. However, a new study featured in the journal Gastroenterology suggests that defects in the sucrase-isomaltase (SI) gene could also impact how much we enjoy sweet treats.

To investigate further, a team of researchers from the University of Nottingham conducted studies on mice lacking the SI gene. They discovered that these mice had a decreased preference for sucrose consumption.

The researchers then expanded their study to include humans, analyzing data from 6,000 individuals in Greenland and approximately 135,000 individuals in the UK from the UK Biobank. Their findings showed that Greenlandic participants with a completely non-functional SI gene consumed more sugar compared to those with a functioning gene. This pattern was also observed in the UK, where individuals with a partially functioning SI gene showed a lower inclination towards sweet foods.

If you are not a fan of sweet treats, could it be due to a genetic issue? Not necessarily.

“If you have a dislike for sweet foods, it may be linked to reduced SI function, but other factors with bigger impacts are likely contributing to your preference for less sweet foods,” said Dr. Mette Andersen, a co-author of the study and assistant professor at the University of Copenhagen in Denmark, as reported by BBC Science Focus.

Excessive sugar consumption is a significant factor in the rise of obesity and type 2 diabetes. Researchers involved in the study believe that targeting the SI gene with new medications to enhance digestive health could potentially help reduce sugar intake.


About our experts

Dr. Mette Andersen is an assistant professor at the Novo Nordisk Foundation Center for Basic Metabolic Research at the University of Copenhagen, Denmark.

read more

Source: www.sciencefocus.com

Science uncovers the factors behind Hurricane Milton’s intense strength

overview

  • Hurricane Milton strengthened at the fastest rate on record.
  • The storm's wind speeds exceeded 175 miles per hour, unprecedented for an October hurricane.
  • Record-breaking hydrothermal waters in the Gulf of Mexico helped intensify Milton, increasing its size through a process known as eyewall displacement.

Hurricane Milton has been a surprise at almost every turn.

What began as a small, well-scarred hurricane has grown into a vast monster that has grown in strength at the fastest rate in recorded history. The storm could cause dangerous flooding across parts of Florida's west and east coasts, particularly putting the flood-prone areas of Tampa Bay, home to more than 3 million people, at risk.

As the storm developed, record warmth in the Gulf of Mexico helped the storm intensify. He then underwent an eyewall replacement process to increase in size.

Explain how Milton developed into such a serious threat.

Pacific influence

Hurricanes approaching the United States typically follow similar paths. Tropical cyclones form off the west coast of Africa, gain strength as they cross the Atlantic Ocean and enter the warm waters of the Caribbean Sea.

But part of Milton's origin story lies in the eastern Pacific. This hurricane formed when the remnants of a tropical cyclone in the Pacific Ocean pushed eastward across the Yucatan Peninsula and encountered a stationary front in the Gulf of Mexico. The most recent storm to hit Florida after forming in the same area, Mexico's Bay of Campeche, occurred in 1867.

Follow live updates about Hurricane Milton

Chris Slocum, a physical scientist at the National Oceanic and Atmospheric Administration's Satellite Applications Center, said that when the tropical storm entered the Gulf Coast, it created “a little bit of a vortex, some rotation” in the thunderstorm system there.

Milton was then organized and kept away from other star systems.

“By being isolated from other thunderstorms, the pressure increases and the winds increase,” Slocum said. Milton began to draw air toward its center, drawing energy from the warm ocean.

small but strong

Milton started out as a very small storm, which conserved its angular momentum and rotated tightly and rapidly around a narrow eye.

The Gulf Coast experienced record high ocean temperatures and moist, warm air. These are the necessary elements to strengthen your power. On Monday, the central pressure in Milton's core decreased at a constant rate. A scientist was described as “crazy” As Milton grows stronger. The value of central pressure is closely related to storm strength and wind speed.

“This is absolutely terrifying,” NBC South Florida hurricane expert John Morales said, choking on the air as he talked about the importance of the pressure drop.

Milton's wind speed is 92 mph in about 24 hoursAccording to the nonprofit research organization Climate Central. This far exceeded a milestone that scientists consider rapid intensity: an increase of 35 mph in 24 hours.

“It's unusual that it went from a tropical storm to a Category 5 hurricane in less than two days,” said Kartik Balaguru, a climate scientist at the Pacific Northwest National Laboratory.

Jonathan Lin, an atmospheric scientist at Cornell University who specializes in hurricane forecasting and modeling, called Milton “one of the fastest-strengthening hurricanes we've ever seen in the Atlantic.” There is.

The hurricane's wind speeds exceeded 175 miles per hour, unprecedented for an October storm. Milton is the strongest Gulf hurricane since Hurricane Rita in 2005.

new eyewall

In the Northern Hemisphere, hurricanes wrap counterclockwise around a central, mostly cloudless eye.

Bands of rain began falling outside of Milton Monday night into Tuesday. These storms merged to form a second ring, creating a replacement eyewall and tripling the radius where maximum wind speeds were recorded, Slocum said.

This phenomenon, known as eyewall displacement, typically causes storms to widen but reduce wind speeds somewhat, and it happened to Milton. As the storm develops, it may occur several times. Once this process is complete, and conditions permit, the hurricane may begin to gain strength again.

“You can think of it as molting. Once it molts, it can intensify again. That's exactly what we saw in Milton,” Lin said.

wobble

According to the National Hurricane Center, Milton “wobbled” Tuesday afternoon, changing its expected path and moving its expected landfall south.

Wobble results from instability due to complex mechanics inside the eyeball.

Lin explained the dynamics of a hurricane by comparing it to a top or a dreidel.

“Sometimes you'll see the top spinning. If you push it a little bit or give it a little push, it wobbles a little bit and then it starts spinning again,” Lin said. “It redirects itself.”

Large shakes can change the course of the storm and determine which locations receive the brunt of the hurricane.

Forecasters are expecting storm surge of up to 13 feet. If the storm were to change course slightly to the south, it could avoid the worst of the flooding in especially vulnerable Tampa Bay. In 2017, Hurricane Irma changed course to the east, helping Tampa Bay avoid a predicted storm surge of more than 12 feet.

Once the storm reaches the coast, areas south of Milton's Eye should experience strong wind gusts, pushing water onto shore and resulting in storm surge.

That's because of the angle at which the storm approaches the Florida peninsula and the counterclockwise rotation of the winds around its center.

what happens next

Milton weakened during her final approach to the Florida Peninsula. The main reason for this is that they encountered vertical wind shear, which refers to changes in wind speed and direction in the upper layers of the atmosphere.

But Lin said, “That doesn't make it any less dangerous.”

Even with weaker winds, Milton is expected to remain a major hurricane until it makes landfall Wednesday night.

After landing, it is expected to cross the peninsula and head out to sea. The time on land robs the storm of the energy it draws from the ocean's heat, and the storm will weaken rapidly, just as the coma slows down, Lin said.

break the eerie silence

A new report from the World Weather Attribution Group on Hurricane Helen, which made landfall in Florida on September 26, shows that climate change has caused the storm's wind speeds to increase by 11% and total precipitation to increase by approximately It was found that there was a high possibility of an increase of 10%.

Researchers said they expect Milton to behave similarly, but even worse because of climate change.

Warmer-than-normal ocean conditions in the North Atlantic and Gulf of Mexico and the emergence of a hurricane-related La Niña weather pattern led forecasters to predict a very active hurricane season this spring.

But even in mid-September, the typical peak of hurricane activity, the season remained eerily quiet, leaving researchers perplexed, despite the ocean heat that fuels hurricanes. , making us wonder if their positive predictions were wrong.

The eerie calm was broken in late September as Hurricanes Helen and Milton roared into view. If Milton makes landfall, it will be the second-highest number of hurricane landfalls in a year on the Gulf Coast.

“This makes 2024 the second-highest number of Gulf hurricane landfalls on record, along with 2005 and 2020, after 1886,” meteorologist Philip Klotzbach said. I wrote to X.

Source: www.nbcnews.com

Bitcoin sees continued strength in ETF inflows

Bitcoin (BTC) ended the week at around $52,150, marking a notable 7.9% increase from the previous week’s closing price of around $48,300. The week started with solid price gains, with BTC reaching a high trading price of around $52,800 on Thursday, but it stabilized within the $51,000-$52,000 range over the weekend, ending at just above $52,000. The transaction was completed.

marked last week Bitcoin returns to trading above $50,000 For the first time in over two years, the BTC ETF Spot has shown strong momentum following approval. The last time BTC traded above $50,000 was in December 2021, just after hitting an all-time high of $69,000 in November of the same year. This period was retrospectively recognized as the beginning of a significant downward trend that continued throughout 2022, with prices falling to around $16,000 by the end of the year.

Market momentum continued to be driven by high demand for BTC ETF Spot. Over the last week, cumulative net inflows into BTC ETFs totaled approximately $2.3 billion, nearly double the $1.2 billion recorded the previous week and nearly half of the total net inflows since inception, which currently stands at approximately $5 billion. Occupied.

Net inflows have remained consistently positive for 16 consecutive business days since January 26th. However, outflows from the Grayscale Bitcoin ETF (GBTC) increased slightly last week, reaching approximately $625 million, compared to the cumulative outflows of $415 million recorded the previous week. % increase. This suggests that investors are actively taking profits following the recent surge in BTC prices.

Among the nine ETFs launched on January 11th, the BlackRock Bitcoin ETF (IBIT) remains in the lead with more than $5 billion in assets under management (AUM), and currently has a total of approximately $6.2 billion. It becomes. Fidelity BTC ETF (FBTC) follows in second place with approximately $4.5 billion in assets under management, while 21Shares & ARK Bitcoin ETF (ARKB) secures third place with approximately $1.5 billion in assets under management. Last week, a fourth ETF passed the $1 billion AUM milestone, with the Bitwise Bitcoin ETF (BITB) reaching approximately $1.2 billion in assets under management.

Trading volumes remain strong, with cumulative trading volume for BTC ETFs reaching approximately $9.6 billion last week, with average daily trading volume exceeding $1.9 billion. Since January 11th, the cumulative trading volume has reached $45.3 billion, with an average daily trading volume of approximately $1.7 billion. These numbers represent above-average trading volume for the week, highlighting the strong buying pressure and activity surrounding these ETFs.

Analyzing the macroeconomic situation reveals that Federal Open Market Committee (FOMC) Meeting There are 30 days left. Market expectations are that there is a 90% chance that interest rates will remain unchanged, with the first 25 bps rate cut still expected for some time from the end of the second quarter to the beginning of the third quarter of this year. This expectation increases expectations for more accommodative monetary policy from the Fed and increases the risk exposure that market participants are willing to take. This has contributed to solid momentum in risk assets such as BTC, cryptocurrencies, and stocks, which recently pushed the S&P 500 to new all-time highs.

Source: the-blockchain.com

New ways to assess hurricanes may be necessary as their strength increases

Satellite image of Typhoon Surigae over the Pacific Ocean in 2021

European Union/Copernicus Sentinel-3 images

In the past decade, five tropical cyclones have recorded wind speeds strong enough to be classified as Category 6 storms. Analysis suggests hurricane sizes may need to be updated as rising temperatures strengthen storms.

If carbon emissions continue at their current pace, a “Category 7” storm is even possible. 'It's certainly possible in theory if we keep warming the planet,' says climate scientist james cossin at the First Street Foundation, a nonprofit research organization in New York.

Officially, there is no such thing as a Category 6 or Category 7 hurricane. According to the Saffir-Simpson hurricane scale used by the National Hurricane Center (NHC) in the United States, storms with sustained wind speeds of 252 kilometers per hour or higher are categorized as Category 5.

But as the wind speeds of the strongest storms increase, Kossin and his colleagues say using this scale becomes increasingly problematic. michael wehner That's because a study at California's Lawrence Berkeley National Laboratory does not convey the increased risk posed by increasingly severe storms.

“The situation is bad and it's getting worse,” Kossin said. “As the climate changes, these storms will become stronger.”

They say there are three pieces of evidence that global warming is causing the wind speeds of the strongest storms to increase. First, the basic theory of hurricanes as a type of heat engine says that a hotter world should produce stronger storms.

Second, high-resolution climate models produce storms with faster winds as the Earth's temperature rises.

And finally, the real-world storm is getting stronger. Of the 197 Category 5 tropical cyclones between 1980 and 2021, half occurred in the 17 years ending in 2021, with the five fastest occurring in the last nine years of this period. It occurred on.

If the Saffir-Simpson hurricane scale were expanded to rank storms with wind speeds over 309 km/h as Category 6, all five of these storms would fall into that category. The five are Typhoon Haiyan in 2013, Hurricane Patricia in 2015, Typhoon Meranti in 2016, Typhoon Goni in 2020, and Typhoon Surigae in 2021.

However, Cossin and Wehner are not suggesting that the NHC formally adopt the Category 6 definition. Cossin says using a scale based on wind speed is fundamentally flawed, given that flooding and storm surges can pose a greater threat to life and buildings. .

Instead, they believe the NHC needs to implement an entirely new system to better communicate the overall risk posed by the storm. For example, 2008's Hurricane Ike was a massive storm that caused massive flooding and damage, but Kossin said it was only a Category 1 or 2 storm when it made landfall in the United States.

kelly emmanuel at the Massachusetts Institute of Technology agree that a new scale is needed. “While I think it's important to recognize that hurricane intensity is increasing, we should also point out that most of the damage, injuries, and loss of life from hurricanes comes from water, not wind.” he says.

“I have been an advocate of replacing the venerable but outdated Saffir-Simpson scale with a new scale that reflects the totality of risk from a particular storm,” Emanuel says.

Another hurricane expert, Jeff Masters, now semi-retired, doesn't think the NHC intends or should change the Saffir-Simpson scale. “But it's important to understand how devastating these new superstorms could be, so talking about a hypothetical Category 6 storm is a valuable communications strategy for policymakers and the public. ” he says.

Masters said wind damage increases exponentially with wind speed, with a Category 6 storm with wind speeds of 314 km/h causing four times more damage than a Category 5 storm with wind speeds of 257 km/h. It is said that there is a possibility.

topic:

  • climate change/
  • Abnormal weather

Source: www.newscientist.com

Increasing proof suggests that consuming a daily multivitamin can aid in maintaining strength as you grow older

It is unclear which components of multivitamins are involved in improving cognitive function.

Asia Vision/Getty Images

Studies have shown that taking a daily multivitamin slows the rate of memory decline in older adults.

This study is the third randomized trial to yield such results, and adds to a growing body of evidence that multivitamins can slow age-related cognitive decline.

“The result is the equivalent of delaying cognitive aging by two years, which is huge,” he says. joan manson from Harvard Medical School was involved in all three clinical trials. These were part of a larger study, funded by the makers of cocoa supplements, to examine whether taking multivitamins and cocoa extract supplements could help prevent heart disease and cancer in people over 60.

Some participants also took a memory test designed to measure whether any of the supplements were having a psychological effect.

The latest trial compared both types of supplements with a placebo pill in 573 people who took in-person memory tests at the start of the study and two years later. Those who took a multivitamin called Centrum Silver performed slightly better on memory tests than those who took a placebo pill.

This is similar to the results of two other arms of a large study that administered memory tests to people online or over the phone.

“The results of this study suggest that multivitamins hold promise as a safe and affordable strategy to protect memory and slow cognitive aging in older adults,” Munson says.

It is unclear which components of multivitamins are responsible for their effects.

Duane Mellor The British Dietetic Association says the trial was not designed to investiage memory effects and further research specifically set up to study this issue is needed. “The results need to be treated with caution,” he says. “It's not a definitive study.”

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Source: www.newscientist.com