BakkerE, EnganH, PatricianA, SchagatayE, KarlsenT, WisloffU, and GaustadSE. (2015). Acute dietary nitrate supplementation improves arterial endothelial function at high altitude: A double-blinded randomized controlled cross over study. Nitric Oxide, 50:58–64.
2.
BenedettiF, and DogueS. (2015). Different placebos, different mechanisms, different outcoms: Lessons for clinical trials. PLoS One, 10:e0140967.
3.
BourdillonN, FanJL, UvaB, MullerH, MeyerP, and KayserB. (2015). Effect of oral nitrate supplementation on pulmonary hemodynamics during exercise and time trial performance in normoxia and hypoxia: A randomized controlled trial. Front Physiol, 6:288.
4.
GuoL, TanG, LiuP, LiH, TangL, HuangL, and RenQ. (2015). Three plasma metabolite signatures for diagnosing high altitude pulmonary edema. Sci Rep, 5:15126.
5.
HauserA, SchmittL, TroeschS, SaugyJJ, Cejuela-AntaR, FaissR, RobinsonN, WehrlinJP, and MilletGP. (2015). Similar hemoglobin mass response in hypobaric and normobaric hypoxia in athletes. Med Sci Sports Exerc [Epub ahead of print]; DOI: 10.1249/MSS.0000000000000808.
6.
KottkeR, Pichler HeftiJ, RummelC, HaufM, HeftiU, and MerzTM. (2015). Morphological brain changes after climbing to extreme altitudes—A prospective cohort study. PLoS One, 10:e0141097.
7.
LawleyJS, LevineBD, WilliamsMA, MalmJ, EklundA, PolanerDM, SubudhiAW, HackettPH, and RoachRC. (2015). Cerebral spinal fluid dynamics: Effect of hypoxia and implications for high-altitude illness. J Appl Physiol (1985), 120:251–262.
8.
PuthonL, BouzatP, RuppT, RobachP, Favre-JuvinA, and VergesS. (2015). Physiological characteristics of elite high-altitude climbers. Scand J Med Sci Sports [Epub ahead of print]; DOI: 10.1111/sms.12547.
9.
RexhajE, RimoldiSF, PrataliL, BrennerR, AndriesD, SoriaR, SalmonCS, VillenaM, RomeroC, AllemannY, LovisA, HeinzerR, SartoriC, and ScherrerU. (2015). Sleep disordered breathing and vascular function in patients with chronic mountain sickness and healthy high altitude dwellers. Chest [Epub ahead of print]; DOI: 10.1378/chest.15-1450.
10.
VinnikovD, BlancPD, and SteinmausC. (2015). Is smoking a predictor for acute mountain sickness? Findings from a meta-analysis. Nicotine Tob Res [Epub ahead of print]; DOI: 10.1093/ntr/ntv218.
11.
WangK, SmithZM, BuxtonRB, SwensonER, and DubowitzDJ. (2015). Acetazolamide during acute hypoxia improves tissue oxygenation in the human brain. J Appl Physiol (1985), 119:1494–1500.
12.
WeitzCA, GarrutoRM, and ChinCT. (2015). Larger FVC and FEV1 among Tibetans compared to Han born and raised at high altitude. Am J Phys Anthropol [Epub ahead of print]; DOI: 10.1002/ajpa.22873.
13.
WuAL, XiongYS, LiZQ, LiuYG, QuanQ, and WuLJ. (2015). Correlation between single nucleotide polymorphisms in hypoxia-related genes and susceptibility to acute high-altitude pulmonary edema. Genet Mol Res, 14:11562–11572.
14.
ZarndtR, PilitoS, PowellFL, HaddadGG, BodmerR, and OccorK. (2015). Cardiac response to hypoxia and reoxygenation in Drosophila. Am J Physiol, 309:R1347–R1357.