These riders gather in Mount Everest at the time of recording. Has the inhaling xenon helped?
British riders recently reached the top of the Mount Everest to record time. Some inhaled xenon gas before the trip. But is that the decisive reason?
Part of Himalayan Mount, Mount Everest is considered the highest point in the world, which reached a height of over 8.8 kilometers.
Feng Wiei Photography / Getty Images
Last week a quartet of British listeners made it at the top of Mount Everest-And without a week of overall round trip from London. That’s weeks smaller than most commonly made to set up high heights, contrary to the highest peak of the world and head at home.
Their guidance, talked to New York Timescredited their success to a secret advantage: before the trip, the climbing inhaled Xenon Gasthat may have made their acclimatization at the lower oxygen environment of Everest. But medical use experts xenon is not sure it is a decisive reason.
“There may be something. We didn’t know,” said Andrew Subudhi, a physician of the Colorado’s physician of Colorado, who studied human activity in low-oxygen surroundings. “From science evidence, I do not see anything clear or even proof of concept.”
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How is Xenon movement in the body?
Xenon is a noble gas-colorless, odorless, bad. But it affects the body. It was used as an occasional anesthetist from the 1950s, as Robert Dickinson, a senior medicine lecturer in Imperial College London. Dickinson has long studied another fascinating aspect of Xenon: gas showed neuroprotective effects after brain injury such as a stroke or a tragedy blowing head. This quality protection is displayed mainly Animal studies and A few small person trialsDickinson said.
The anesthetic and potential neuroprotective effects occur because Xenon can close brain receptors called N-Methyyl-D-Aspartate (NMDA) receptors. Activating these receptors has an excitatory effect of neurons, but Xenon Tamps down NMDA activity. After brain injury, NMDA receptors can be overwhelmed, causing additional cell death, so stopping these receptors can prevent further damage.
Those are the best studied Xenon effects on human health. But gas also shocked interest in Worpericine World because it will increase to make the Erythropoietin (EPO)a hormone known to stimulate bone marrow to increase its production Red blood cells. Red blood cells carry oxygen, which is, in fact, in short supply of sloping slopes in Mount Everest.
Can Xenon be separated by someone at high height?
Before Try to summit the EverestReaters should hang out with Kathmandu, Nepal, and then Everest Base Camp for weeks, maybe it will fall victim to fatigue, headache, headache, nausea. In extreme cases, the lungs are filled with liquid or the brain that heals, which can easily lead to death. Everest Base Camp air consists of half oxygen as is at sea level, and the summit air consists of a minurgy.

Xenon, a noble gas, caught the attention of the worperinine World World for the potential to increase oxygen-having red blood cells.
Photo Deviceder / Alamy Stock Photo
Xenon’s potential to increase red blood cells, thus increasing blood capability leads to heights from the athletes climbing the highest peaks in the world. The problem is: No one knows when the EPO’s enthusiasm gives it enough to make a real difference how a handling of high heights. Davide Cattano, an anesthesiologist at McGovern Medical School at the University of Texas Health Science Center in Houston, showed Xenon Increases a blood factor called the hypoxia-inducible factor 1-alpha (HIF-1α), which in turn can increase the EPO. He hesitates that newly riding Everest have seen great benefit. “The HIF level you are indentation is not justifying the most human ability,” says Cattano.
A study of 2019 Published to Journal to Apply Physiology Tried 12 runners randomly assigned air breathing with 70 percent of xenon or a sham gas for two minutes per week. The runners who creeps exenon saw the increase in the EPO in their blood, but they did not show the development of fitness or athletic performance, as their recovery and their recovery.
Even people who have people with EPO directly to injections may not be able to prevent high heights or improve the display of high heights, says subudhi. In a study currently investigated for the publication of a science journal, he and his colleagues who tested the EPO injections to a small group of athletes that raise the EPO, and these subjects have no benefits found. It is possible a different dose or a long course of treatment can be with a difference, the subudhi says, but “my enthusiasm for chasing better good.”
Why did the newly riders reach the peak immediately?
It is possible that Xenon has improved the ability to carry oxygen-oxygen-oxygen-oxygen by extending their epo, experts say. It is also possible for analgesic and analgesic effects of gasping the torture and pain of the riders and fatigue from the highest, Cattano thought. Only the work of breathing a heavy gas like Xenon can also result in some change in lung capacity, he seems, even if the EPO effect is small.
But athletes also have something: they sleep with hypoxic tents before traveling to the mountain. These tents make a low-oxygen environment, surely increases the production of EPO and red bloodstream. This preacclimatization, in addition to the flowing regimes of climbing riders, the trick may have been made. Although xenon adds any good on top of hypoxic tents not clear, Dickinson says.
Xenon is expensive, with limited use of it as an anesthetic and athletes. But more people can go out for gas, given that the cost of climbing the mount is very much too much and the stakes are very high, says the subudhi.
“People literally fight for their lives in high heights, and if you do the things that can give you a little chance to develop your success rate, yes, it can be it to some people,” he can do it with some people, “he said. “Not everyone will sit there and make a perfect scientific decision about their lives.”