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Viagra may help severe altitude sicknessViagra altitude. Es Exposure: Sara Carlson See All Galleries share-content sharecontentmenu .bd ul li.yuimenubaritem sharelinks .bd li.sharesitesitem sharecontentmenu .bd ul li.yuimenubaritem-selected img.sharecontentimg Outside Magazine, September 2007 Lab Rat Elevated Can Viagra really improve high-altitude performance? By Nick Heil (Illustration by John Cuneo) SO THERE I WAS, climbing Mount Everest with what might fairly be described as one righteous stiffy. Not that I was particularly excited about the climbing& 151;just the opposite: I was nervous and felt like crap, hence my decision to pop a Viagra, which purportedly would make me feel better and climb faster. I was fit enough, but that hardly ensured success. My goal was to make it to Everest's North Col. At 23,182 feet, it's well shy of the 29,035-foot summit but more than 5,000 vertical feet higher than I'd ever been before. Viagra has been in largely experimental use among mountaineers for a few years now, mostly for cases of high-altitude pulmonary edema, a dangerous condition in which the lungs fill with fluid. Viagra's active ingredient, sildenafil citrate, has the impressive (and, to some, life-changing) ability to prompt blood flow to specific parts of the body, including the genitals, lungs, and brain. It has also been shown to increase aerobic endurance at elevation. In 2004, German researchers conducted a study& 151;using mountaineers and trekkers who spun stationary bikes at Nepal's 17,600-foot Everest Base Camp& 151;in which sildenafil was one of the first drugs found to actually improve cardiovascular performance at al![]() |
Viagra beneficial to high-altitude athletes ( researchers haveS, ice-cold recovery, bike fitting, stretching, post-activation potentiation, whole-body vibration, and massage. Altitude: Viagra for performance at high altitude; the live-high train-low mechanism debate; effects of adaptation to artificial altitude. Mechanisms: maximum effort is related to a critical fatigue level in muscle; hard training stimulates EPO; evidence that muscle pH limits intense exercise. Nutrition: training on low carbohydrate; galactose vs other carbs and caffeine; milk protein, amino acids and cherry juice for recovery; colostrum for training; vitamin C and fish oil for asthmatics; echinacea stimulates EPO; caffeine for team-sport and tennis performance; effects of mild hypohydration. Performance Genes: minor findings. Tests and Technology: using modeling to optimize cycling performance; soccer tests; mountain-bike suspensions. Training: big gains with respiratory-muscle, core-stability and high-resistance training; nothing new on overtraining. Reviewer's Comment: a balanced view of train-low compete-high on carbohydrate. KEYWORDS: elite athletes, ergogenic aids, nutrition, tests, training. Reprint pdf · Reprint doc · Commentary by Stephen Seiler The 53rd annual meeting of the American College of Sports Medicine was held this year in Denver, May 31 through June 3. There were nearly 3000 presentations on health, injury and performance aspects of physical activity and sport in multiple parallel sessions. So many people reported so much good research that I consider it an obligation and privilege to write this report. I have limited it to my own resear |
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