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1  the median difference in change between the hypobaric and normobaric exposure was 0 ng/mL for thromb
2 icant differences between the changes in the hypobaric and the normobaric exposures.
3  induced hypoxia by maintaining animals in a hypobaric chamber at 0.5 atm for 24 hrs.
4 C57BL/6 mice were housed and maintained in a hypobaric chamber at 290 Torr (0.4 atm) for 21 days and
5 ingle-blind, crossover study, performed in a hypobaric chamber, to assess the effect of an 8-hour sea
6 cted a prospective, single-blind, controlled hypobaric-chamber study of adult volunteers to determine
7 ed rats kept under normobaric (640 Torr) and hypobaric conditions (380 Torr for 2-3 weeks).
8 ronmental thermal stress, and high altitude (hypobaric) conditions.
9 ing flight despite the challenges imposed by hypobaric environments.
10 duced partial pressure of oxygen inherent to hypobaric environments.
11 udy provides strong evidence that nonhypoxic hypobaric exposure may induce subcortical WMHs in a youn
12 ateral carotid artery occlusion and systemic hypobaric hypotension (HH) at the lower limit of cerebra
13                                              Hypobaric hypoxia also resulted in intense 3H-MISO reten
14     Adult male Wistar rats were subjected to hypobaric hypoxia at 0.5 atmosphere for periods of 4 day
15   The adult rat adapts to prolonged moderate hypobaric hypoxia by polycythemia, increased brain vascu
16 results demonstrate that exposure to chronic hypobaric hypoxia causes mild placental ER stress, which
17 kade with SU5416 in combination with chronic hypobaric hypoxia causes severe pulmonary hypertension a
18                                    Prolonged hypobaric hypoxia did not change the Em of nerve endings
19                    Wild-type mice exposed to hypobaric hypoxia during gestation readily adapt and mai
20  of hypoxia was studied in rats subjected to hypobaric hypoxia for 3 weeks and then allowed to recove
21                         Rats were exposed to hypobaric hypoxia for 3 weeks in the absence or presence
22                         Mice were exposed to hypobaric hypoxia for 6 h, and changes in immediate hypo
23 ased GC/NE and reduced GC/GC coupling during hypobaric hypoxia may be partly responsible for the incr
24                               The effects of hypobaric hypoxia might also provide new insights into t
25 24month old ("aged") C57BL/6 mice to chronic hypobaric hypoxia of 0.4atm (290torr).
26 n descent, are highly adapted to life in the hypobaric hypoxia of high altitude.
27 nders, studied before and during exposure to hypobaric hypoxia on a gradual ascent to Mount Everest B
28 s the effect of an 8-hour seated exposure to hypobaric hypoxia on hemostasis in 73 healthy volunteers
29             In both incisor and molar pulps, hypobaric hypoxia significantly increased 3H-MISO retent
30                                    Prolonged hypobaric hypoxia significantly tightened coupling modes
31                   The level of environmental hypobaric hypoxia that affects climbers at the summit of
32                In the present study, in vivo hypobaric hypoxia was used as an experimental tool to de
33                    Male rats were exposed to hypobaric hypoxia while treated with E2 (75 mug/kg/d) or
34 he effects of exposure to altitude (and thus hypobaric hypoxia) might provide a reproducible model fo
35  in the partial pressure of inspired oxygen (hypobaric hypoxia).
36  findings do not support the hypothesis that hypobaric hypoxia, of the degree that might be encounter
37 ntribute to the physiological adaptations to hypobaric hypoxia, possibly by altering lung function.
38  exposed alternately (> or =1 week apart) to hypobaric hypoxia, similar to the conditions of reduced
39                    After exposure to chronic hypobaric hypoxia, Tg+ mice have lower RVSP than do Tg-
40 onsequence of poor ventilatory adaptation to hypobaric hypoxia.
41 nders at sea level and following exposure to hypobaric hypoxia.
42 nderlie the myocardial dysfunction caused by hypobaric hypoxia.
43 ntially affected by exercise when exposed to hypobaric hypoxia.
44  may facilitate physiological adaptations to hypobaric hypoxia.
45 onary hypertension after exposure to chronic hypobaric hypoxia.
46 se physical activity, climatic extremes, and hypobaric hypoxia.
47                      Characterization of the hypobaric response can therefore provide data to guide s
48 The aims of this work were to understand how hypobaric stress modified the properties of the skin and
49          The local application of controlled hypobaric stress represents a novel means to facilitate
50 demonstrated that the topical application of hypobaric stress thinned the tissue (p<0.05), atomic for
51                                         When hypobaric stress was not applied to the rat there was no
52 ir follicles, when applied to the skin using hypobaric stress.

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