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1 ties as a function of growth temperature and oxygen partial pressure.
2 tion for resistance to stepwise increases of oxygen partial pressure.
3  imply short-term variability in atmospheric oxygen partial pressure.
4 tion for resistance to stepwise increases of oxygen partial pressure.
5 composition shows a strong dependence on the oxygen partial pressure.
6 talysts between 500 and 600 degrees C at low oxygen partial pressures.
7 lation in neutrophils after exposure to high oxygen partial pressures.
8                         The normalization of oxygen partial pressure accelerated the degradation of C
9 uate oxygen delivery by maintaining arterial oxygen partial pressure and hemoglobin levels.
10 dependent relationship between mitochondrial oxygen partial pressure and oxygen supply rate is then d
11 in oxidation and NO generation at a range of oxygen partial pressures and found that the deoxy-reacti
12 esponse to rising cyclic AMP levels, falling oxygen partial pressure, and the flux of carbon through
13 ulmonary damage (respiratory rates, arterial oxygen partial pressures, and intra-alveolar albumin con
14 g polarographic signal is interpreted as the oxygen partial pressure at the anterior corneal surface.
15                                              Oxygen partial pressure (AT pO2) and AT temperature in a
16                 Direct measurement of tissue oxygen partial pressure by surgical insertion of a fiber
17                                     Arterial oxygen partial pressure can increase during inspiration
18 tput, cerebral blood flow, skeletal muscular oxygen partial pressure, cerebral oxygen partial pressur
19 tmospheric pressure increases with increased oxygen partial pressure, concurrently hyperdense conditi
20                         We measured arterial oxygen partial pressure continuously with a fast intra-v
21 phases could be modulated by controlling the oxygen partial pressure during sample preparation.
22                               By eliminating oxygen partial pressure from these two expressions, we m
23 ormance under harsh conditions, such as high oxygen partial pressure, high moisture (relative humidit
24 ual nanosensors for imaging of pH values and oxygen partial pressure in cells.
25 ity Mo17O47 nanowires is achieved due to low oxygen partial pressure in the flame products as a resul
26 des simultaneous colocalized measurements of oxygen partial pressure in tissue (tissue oxygen) and mu
27    Results demonstrate that exposure to high oxygen partial pressures increases synthesis of reactive
28       Fractional saturation as a function of oxygen partial pressure is calculated as the ratio of ox
29 tionship between oxygen consumption rate and oxygen partial pressure is determined.
30 quency (spikes s-1), P(a,O2) is the arterial oxygen partial pressure (mmHg) and r2 is the correlation
31 in the Cu doped ZnO films deposited under an oxygen partial pressure of 10(-3) and 10(-5) torr on Pt
32 bility in single-cell saturation peaks at an oxygen partial pressure of 2.9%, which corresponds to th
33 d reactor, in anaerobic conditions, under an oxygen partial pressure of 40 kPa.
34  positioning increased the ratio of arterial oxygen partial pressure over inspired oxygen fraction, t
35 que opportunity to explore the intracellular oxygen-partial-pressure [p(O2)] interaction in Arenicola
36                In moderate hypoxia (arterial oxygen partial pressure, Pa,O2 approximately 48 mmHg).
37 ansplantation definition, combining arterial oxygen partial pressure (PaO2)/inspired fraction of oxyg
38 d radiation can lower tumor IFP and increase oxygen partial pressure (pO (2)) in some patients.
39                              Measurements of oxygen partial pressure (pO(2)) with high temporal and s
40 maging of spatial and temporal variations in oxygen partial pressure (pO(2)) would be useful.
41     However, the relationship between tissue oxygen partial pressure (pO(2))/pH and VEGF transcriptio
42 ocyte-associated transients, fluctuations of oxygen partial pressure (Po2) associated with individual
43 semi-quantitative constraints on atmospheric oxygen partial pressure (pO2) before 2.2 Gyr ago.
44 sively studied, but the impact of changes in oxygen partial pressure (pO2) on the state of signaling
45                                          The oxygen partial pressure, pO2 , at which blood is 50% sat
46 ntitatively as a function of temperature and oxygen partial pressure published data obtained by in si
47  (FEV(1): r = 0.68, P = 0.001), and arterial oxygen partial pressure (r = 0.68, P = 0.001).
48 the dependence of electrical conductivity on oxygen partial pressure, resolving a long-standing contr
49                               These arterial oxygen partial pressure respiratory oscillations can be
50            Here we demonstrate that arterial oxygen partial pressure shows respiratory oscillations i
51 l muscular oxygen partial pressure, cerebral oxygen partial pressure, skeletal muscular, and cerebral
52                                       Tissue oxygen partial pressure (TCO2) levels < 40 mm Hg predict
53 n state of sulfur, implying that atmospheric oxygen partial pressures were low and that the roles of
54                                Intravascular oxygen partial pressures were lower in tumors relative t
55                                Intravascular oxygen partial pressures were measured noninvasively by

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