BeidlemanBA, FulcoCS, StaabJE, AndrewSP, MuzaSR. (2014). Cycling performance decrement is greater in hypobaric versus normobaric hypoxia. Extrem Physiol Med, 3:8.
2.
DillonME, DudleyR. (2014). Surpassing Mt. Everest: Extreme flight performance of alpine bumble-bees. Biol Lett, 10:20130922.
3.
GoodallS, TwomeyR, AmannM, RossEZ, LoveringAT, RomerLM, SubudhiAW, RoachRC. (2014). AltitudeOmics: Exercise-induced supraspinal fatigue is attenuated in healthy humans after acclimatization to high altitude. Acta Physiol (Oxf), 210, 875–888.
HawkesLA, ButlerPJ, FrappellPB, et al. (2014). Maximum running speed of captive bar-headed geese is unaffected by severe hypoxia. PLoSOne, 9:e94015
6.
HeoK, KangJK, ChoiMS, et al. (2014). Prophylactic effect of erythropoietin injection to prevent acute mountain sickness: An open label randomized controlled study. Rehab Sports Med, 29:414-22.
7.
MairerK, WilleM, GranderW, BurtscherM. (2013). Effects of exercise and hypoxia on heart rate variability and acute mountain sickness. Int J Sports Med, 34, 700–706.
8.
NespouletH, RuppT, BachassonD, et al. (2013). Positive expiratory pressure improves oxygenation in healthy subjects exposed to hypoxia. PLoSOne, 8:e85219
9.
PickerodtPA, FrancisR, HoehneC, et al. (2014). Pulmonary vasodilation by acetazolamide during hypoxia: Impact of methyl group substitutions and administration route in conscious, spontaneously breathing dogs. J Appl Physiol, 116:715-7-23.
10.
RobachP, BonneT, FluckD, BurgiS, ToigoM, JacobsRA, LundbyC. (2014). Hypoxic Training: Effect on mitochondrial function and aerobic performance in hypoxia. Med Sci Sports Exerc.
11.
RuppT, JubeauM, MilletGY, PerreyS, EsteveF, WuyamB, LevyP, VergesS. (2013). The effect of hypoxemia and exercise on acute mountain sickness. J Appl Physiol, 114, 180–185.
12.
SchommerK, HammerM, HotzL, MenoldE, BärtschP, BergerMM. (2012). Exercise intensity typical of mountain climbing does not exacerbate acute mountain sickness in normobaric hypoxia. J Appl Physiol, 113, 1068–1074.
13.
SharmaM, SinghSB, SarkarS. (2014). Genome wide expression analysis suggests perturbation of vascular homeostasis during high altitude pulmonary edema. PLoSOne, 9:e85902
14.
SubudhiAW, BourdillonN, BucherJ, DavisC, ElliottJE, EutermosterM, EveroO, FanJL, Jameson-Van HoutenS, JulianCG and others. (2014). AltitudeOmics: The integrative physiology of human acclimatization to hypobaric hypoxia and its retention upon reascent. PLoS One, 9, e92191.
15.
SwensonER. (2014). The lungs in acute mountain sickness: Victim, perpetrator or both?. Am J Med 2014. DOI: 10.1016/j.amjmed.2014.06.014. [Epub ahead of print]
16.
Venemans-JellemaA, SchreijerAJ, Le CessieS, EmmerichJ, RosendaalFR, CannegieterSC. (2014). No effect of isolated long-term supine immobilization or profound prolonged hypoxia on blood coagulation. J Thromb Haemost, 12:902–909.
17.
VossJD, AllisonDB, WebberBJ, et al. (2014) Lower obesity rate during residence at high altitude among a military population with frequent migration: A quasi-experimental model for investigation spatial causation. PLoSOne, 9:e93493.
18.
ZhengCR, ChenGZ, YuJ, et al. (2014). Inhaled budesonide and oral dexamethasone prevent acute mountain sickness: A double-blind randomized study. Am J Med. DOI: 10.1016/j.amjmed.2014.04.012. [Epub ahead of print]