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1 the median difference in change between the hypobaric and normobaric exposure was 0 ng/mL for thromb
4 C57BL/6 mice were housed and maintained in a hypobaric chamber at 290 Torr (0.4 atm) for 21 days and
5 nite element method modeling showed that the hypobaric chamber in the patch opened the skin appendage
6 report the use of a skin patch containing a hypobaric chamber that induces skin dome formation to en
8 completed two identical 4-day sojourns in a hypobaric chamber, one in normoxia (NX) and one in hypob
9 ingle-blind, crossover study, performed in a hypobaric chamber, to assess the effect of an 8-hour sea
11 cted a prospective, single-blind, controlled hypobaric-chamber study of adult volunteers to determine
17 udy provides strong evidence that nonhypoxic hypobaric exposure may induce subcortical WMHs in a youn
19 er normoxic and hypoxic (normobaric (NH) and hypobaric (HH)) conditions, at real and simulated altitu
20 acute normobaric (NH, decreased FiO(2)) and hypobaric (HH, 4200 m ascent) hypoxia exposures compared
21 ateral carotid artery occlusion and systemic hypobaric hypotension (HH) at the lower limit of cerebra
27 Adult male Wistar rats were subjected to hypobaric hypoxia at 0.5 atmosphere for periods of 4 day
29 The adult rat adapts to prolonged moderate hypobaric hypoxia by polycythemia, increased brain vascu
31 results demonstrate that exposure to chronic hypobaric hypoxia causes mild placental ER stress, which
32 kade with SU5416 in combination with chronic hypobaric hypoxia causes severe pulmonary hypertension a
36 ession on more complex adaptive responses to hypobaric hypoxia evolved by populations of Tibetan/Sher
37 of hypoxia was studied in rats subjected to hypobaric hypoxia for 3 weeks and then allowed to recove
41 ased GC/NE and reduced GC/GC coupling during hypobaric hypoxia may be partly responsible for the incr
45 nders, studied before and during exposure to hypobaric hypoxia on a gradual ascent to Mount Everest B
46 s the effect of an 8-hour seated exposure to hypobaric hypoxia on hemostasis in 73 healthy volunteers
52 he effects of exposure to altitude (and thus hypobaric hypoxia) might provide a reproducible model fo
54 on the environmental conditions, notably the hypobaric hypoxia, at moderate altitudes influence the p
55 ation in subterranean burrows and experience hypobaric hypoxia, including both hypoxia (low oxygen co
56 findings do not support the hypothesis that hypobaric hypoxia, of the degree that might be encounter
57 an groups to cope with challenges imposed by hypobaric hypoxia, offering new insights into the tangle
58 ntribute to the physiological adaptations to hypobaric hypoxia, possibly by altering lung function.
59 exposed alternately (> or =1 week apart) to hypobaric hypoxia, similar to the conditions of reduced
61 nary vascular responses to acute and chronic hypobaric hypoxia, the haematological and cardiopulmonar
75 The aims of this work were to understand how hypobaric stress modified the properties of the skin and
77 demonstrated that the topical application of hypobaric stress thinned the tissue (p<0.05), atomic for