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1 ping of xenon-rich gas mixtures (up to 2 atm partial pressure).
2 tion shows a strong dependence on the oxygen partial pressure.
3 tion at low temperature and moderate to high partial pressure.
4 hesion increased with ionic strength and CO2 partial pressure.
5 intervals of high atmospheric carbon dioxide partial pressure.
6 a function of growth temperature and oxygen partial pressure.
7 oxygen flux is directly detected rather than partial pressure.
8 structure depend on the surrounding hydrogen partial pressure.
9 <0.001% Re achieved by tuning the precursor partial pressure.
10 the case of absorbing R-134a at a high F-gas partial pressure.
11 ge 2.4 to 10 V, which also depends on oxygen partial pressure.
12 in neutrophils after exposure to high oxygen partial pressures.
13 leyi are significantly increased by high CO2 partial pressures.
14 perimental data over a wide range of acetone partial pressures.
15 s and zero-order kinetics at higher C(3)H(8) partial pressures.
16 t% near saturation while >50 wt% at very low partial pressures.
17 perimental apparatus based on changes of CO2 partial pressures.
18 egeneration), and reached 97 at ultralow CO2 partial pressures.
19 between 500 and 600 degrees C at low oxygen partial pressures.
21 ncy of CO formation is affected by the CO(2) partial pressure (0.1-0.5 bar) and the proton concentrat
22 s (~30 nm) but synthesized at various oxygen partial pressures: 10, 30, 50, 100, 150, 200 and 250 mTo
24 articularly challenging due to the low CO(2) partial pressure (~40 mbar), which necessitates that can
25 at moderate temperatures (90 degrees C) and partial pressures (90 bar H(2)/20 bar CO(2)) in the pres
26 g approximately 74 +/- 7% at 1000 Torr xenon partial pressure, a record value at such high Xe density
28 R) displays a first order dependence upon O2 partial pressure and a negative dependence upon the cove
29 sing microscopic imaging of intravascular O2 partial pressure and blood flow combined with numerical
31 ords of radiogenic isotopes, atmospheric CO2 partial pressure and the evolution of the Cenozoic sulph
32 rates were found to be first-order in N(2)O partial pressure and zero-order in C(3)H(8) partial pres
33 be obtained with (i) high methane and water partial pressures and (ii) maximizing Cu dimer formation
34 uscle QO2 and thus defend microvascular O(2) partial pressures and capillary blood-myocyte O(2) diffu
35 uptake capacities (>19.9 mmol g(-1) ) at low partial pressures and temperatures between 40 and 100 de
36 tics over Ga/H-MFI only at very low C(3)H(8) partial pressures and zero-order kinetics at higher C(3)
37 rmodynamic equilibrium with the measured CH4 partial pressure, and the fraction of dissolved methane
38 mospheric reaction conditions with a low CO2 partial pressure, and the oxidation state of the cluster
39 egeneration is fully achieved under high CO2 partial pressure at 900 degrees C in short residence tim
42 ree dominant forces: (a) the gradient of the partial pressure, (b) the electrostatic force, and (c) t
43 ty when varying the hydrogen/carbon monoxide partial pressures back and forth from overall reducing t
45 y to methanogens, but not to bacteria, at CO partial pressure between 0.25 and 1 atm under thermophil
46 etized animals, negligible intramyocyte O(2) partial pressure, binary open-closed capillary function)
47 tios are proportional to the carbon monoxide partial pressure but approximately independent of the hy
48 Ga/H-MFI is independent of C(3)H(8) and H(2) partial pressures but weakly dependent on temperature.
50 erebral blood flow, skeletal muscular oxygen partial pressure, cerebral oxygen partial pressure, skel
51 s have found (i) an increase in internal CO2 partial pressure (ci ) alongside acclimation of photosyn
53 Here, we performed an in vivo study on how partial-pressure CO(2)-driven seawater acidification imp
55 partial pressure and zero-order in C(3)H(8) partial pressure, consistent with DFT calculations that
60 ombination of greenhouse gases at a range of partial pressures find it challenging to simulate global
61 rogressive increase in the P/F (PaO2, oxygen partial pressure/FiO2, fraction of inspired oxygen) rati
62 akes vary substantially as a function of CO2 partial pressure for different primary and secondary ami
63 n defects mainly rely on reducing the oxygen partial pressure for the removal of product to change th
64 t] are primarily regulated by their relative partial pressures, [Formula: see text]/[Formula: see tex
65 lic Pt/Sn, showing 4.1 times higher CO2 peak partial pressure generated from EOR than commercial Pt/C
67 ed with (13)C-labeled CO2, "under controlled partial pressures", have been performed in this work, re
68 under harsh conditions, such as high oxygen partial pressure, high moisture (relative humidity = 90%
70 required only when R. albus grows at high H2 partial pressures, HydS could be a H2-sensing [FeFe]-hyd
71 e vicinity of the tumour increases its local partial pressure improving the possibility of ROS genera
73 nditions, which necessarily involve high CO2 partial pressure in the calciner and quick heating rates
74 7O47 nanowires is achieved due to low oxygen partial pressure in the flame products as a result of th
75 he temperature range of 283-353 K and at CO2 partial pressures in the range of 0.02-105 kPa, where th
76 lts demonstrate that exposure to high oxygen partial pressures increases synthesis of reactive specie
77 introduction of sulfur hexafluoride, at high partial pressure, into the source region also effectivel
78 results show that decarbonation at high CO2 partial pressure is notably promoted by decreasing solid
79 cation in response to rising atmospheric CO2 partial pressures is widely expected to reduce calcifica
83 aration materials bind CO(2) strongly at low partial pressures (<=4 mbar) to capture >=90% of the emi
84 annealing (at atmospheric pressure with a H2 partial pressure of 0.04 bar) and H2 high-pressure annea
86 Cu doped ZnO films deposited under an oxygen partial pressure of 10(-3) and 10(-5) torr on Pt (200 nm
87 in single-cell saturation peaks at an oxygen partial pressure of 2.9%, which corresponds to the maxim
90 a hyperventilation-mediated reduction in the partial pressure of arterial carbon dioxide (P aC O2) an
91 Cerebrovascular reactivity to changes in the partial pressure of arterial carbon dioxide (P(a,CO(2)))
92 rial pressure (MAP), cardiac output (CO) and partial pressure of arterial carbon dioxide (P(aCO2)) we
93 ressure, fraction of inspired oxygen (FiO2), partial pressure of arterial carbon dioxide (PaCO2), and
96 Clinical Trials Network recommends a target partial pressure of arterial oxygen (Pao(2)) between 55
98 r more of the following criteria: a ratio of partial pressure of arterial oxygen (PaO(2)) to fraction
100 not differ between groups based on baseline partial pressure of arterial oxygen (PaO2 ) obtained at
102 ients with severe ARDS or with ratios of the partial pressure of arterial oxygen (PaO2) to the fracti
103 sociated with cognitive impairment and lower partial pressure of arterial oxygen during the trial was
104 in pulmonary gas exchange as assessed by the partial pressure of arterial oxygen to fraction of inspi
105 xemic respiratory failure and a ratio of the partial pressure of arterial oxygen to the fraction of i
106 Severe ARDS was defined as a ratio of the partial pressure of arterial oxygen to the fraction of i
108 receive hydroxychloroquine (median ratio of partial pressure of arterial oxygen to the fraction of i
109 te-to-severe ARDS (defined by a ratio of the partial pressure of arterial oxygen to the fraction of i
110 The composite primary endpoint was death, partial pressure of arterial oxygen/fraction of inspired
111 Limitation of plant productivity by the low partial pressure of atmospheric CO2 (Ca ) experienced du
112 contributed to the relative stability of the partial pressure of atmospheric CO2 during the Cenozoic.
113 ice permit ocean-atmosphere exchange only if partial pressure of atmospheric O2 is larger than 0.02 b
115 f atmospheric oxygen and in turn reflect the partial pressure of carbon dioxide (P(CO2)) in the past
116 or (i.e., the "biological pump"), lowers the partial pressure of carbon dioxide (pCO(2)) in the upper
118 ge for ~2.75 to 2.4 Ma ago, when atmospheric partial pressure of carbon dioxide (pCO(2)) ranged from
119 ch is further supported by the lower DIC and partial pressure of carbon dioxide (pCO2) associated wit
120 h), minute volume of ventilation (Vmin), and partial pressure of carbon dioxide (PCO2) in men with he
123 N(2) deficits calculated from changes in the partial pressure of carbon dioxide in surface water indi
124 d changes in atmospheric temperature and the partial pressure of carbon dioxide in the atmosphere--pr
126 ne in pH, increased lactic acid and arterial partial pressure of carbon dioxide, and thickened left v
130 ges in the ratio of leaf internal to ambient partial pressure of CO(2) (chi) - an index of adjustment
133 of leaf internal (c(i) ) to ambient (c(a) ) partial pressure of CO(2) , defined here as chi, is an i
134 onal biogeochemistry as evidenced by the low partial pressure of CO(2) and the nearly complete deplet
137 thermocline waters with elevated pCO(2) (the partial pressure of CO(2)) and nutrients into the surfac
138 whether these neurons detect changes in the partial pressure of CO(2), and hence function as central
139 Additionally, biochemical oxygen demand, partial pressure of CO(2), and organic carbon all increa
142 oach to derive a prediction equation for the partial pressure of CO2 (pCO2 ) in lakes as a function o
143 reacting serpentinite with a relatively low partial pressure of CO2 (pCO2) close to flue gas conditi
144 Rover Curiosity to estimate the atmospheric partial pressure of CO2 (PCO2) coinciding with a long-li
145 sues, however, little is known about how the partial pressure of CO2 (pCO2) in freshwater will be aff
148 For earlier periods in Earth's history, the partial pressure of CO2 (pCO2) is much less certain, and
150 shells, which suggests that the atmospheric partial pressure of CO2 (pco2) was relatively stable bef
151 ent a 2.1-million-year record of sea surface partial pressure of CO2 (Pco2), based on boron isotopes
152 cenario of ocean acidification [800 microatm partial pressure of CO2 (pCO2)] during the development a
153 ved inorganic carbon (DIC, 929-3223 muM) and partial pressure of CO2 (pCO2, 50-1313 muatm) observed o
155 hyll a, production to respiration ratio, and partial pressure of CO2 ), DOC concentration and composi
156 housand, and was strongly correlated to both partial pressure of CO2 and to the estimated contributio
157 cing intracellular pH at a constant level of partial pressure of CO2 Bafilomycin A1, a specific inhib
160 a is clinically defined as an arterial blood partial pressure of CO2 of above 40 mmHg and is a featur
161 ependence of the rate of CO formation on the partial pressure of CO2 that is consistent with experime
162 ere ~8 degrees C warmer than today, when the partial pressure of CO2 was ~400 parts per million.
163 examines the effects of an increase in pCO2 (partial pressure of CO2) on groundwater chemistry in a s
164 ry conditions (ice sheet extent, atmospheric partial pressure of CO2) were different from those today
169 gh altitude is associated with a fall in the partial pressure of inspired oxygen (hypobaric hypoxia).
170 d to 30 min of acute hypoxia (fetal arterial partial pressure of O(2) ( ) reduced by ca 50%) before a
171 ygen and Plt12 mutant mice exhibited reduced partial pressure of O(2) in the blood, accompanied by er
172 , but was unrelated to ventilation, arterial partial pressure of O2 (PaO2) or pulmonary diffusing cap
173 3)) contain a severely hypoxic core [</=0.1% partial pressure of O2 (pO2)] whereas smaller tumors pos
174 t to an induction time that depends upon the partial pressure of O2 indicative of a direct interactio
175 Here we discuss the advances in a variety of partial pressure of oxygen ( PO2 ) measurements and imag
177 istic of SpO(2) in discriminating HPS with a partial pressure of oxygen (PaO(2) ) <60 mm Hg (eligible
179 ent blood gas conditions, with the end-tidal partial pressure of oxygen (PETCO2) ranging from 40-500
180 tion process by longitudinally mapping tumor partial pressure of oxygen (pO(2)) and microvessel densi
181 his study was to investigate correlations of partial pressure of oxygen (pO(2)) in the ocular anterio
183 olid tumors by increasing tumor oxygenation [partial pressure of oxygen (pO(2))] via a decrease in ox
184 not sensitive to regional CNS differences in partial pressure of oxygen (PO2 ) that reflect variable
186 ed a noninvasive technique for measuring the partial pressure of oxygen (pO2) in alginate microcapsul
188 nous angiotensin-II (AngII) can decrease the partial pressure of oxygen (PO2) in the renal cortex of
189 (64)CuCl2 in tumor tissue were compared with partial pressure of oxygen (pO2) probe measurements.
190 d simulations showing that modulation of the partial pressure of oxygen (pO2), as a result of its con
193 iotensin II AT(1) receptor restored cortical partial pressure of oxygen by improving oxygen delivery.
195 Specifically, hypoxia, which occurs when the partial pressure of oxygen falls below 5%, plays a pivot
196 tionship between blood flow and the arterial partial pressure of oxygen has not been quantified and m
197 e-limiting illness, refractory dyspnoea, and partial pressure of oxygen in arterial blood (PaO(2)) mo
198 ered for allocation but exhibited hypoxemia (partial pressure of oxygen in arterial blood to fraction
200 normobaric hypoxia chamber by decreasing the partial pressure of oxygen in inhaled air stepwisely (pO
201 rements of intracortical (depth) EEG (dEEG), partial pressure of oxygen in interstitial brain tissue
202 m-based electrochemical sensor for measuring partial pressure of oxygen in intramuscular tissue (in-v
203 d gas abnormalities on multiple days and for partial pressure of oxygen in the alveolar gas of <35.
205 involving the specific targeting of arterial partial pressure of oxygen or arterial hemoglobin oxygen
207 nation response (change in ratio of arterial partial pressure of oxygen to fraction of inspired oxyge
208 ients with moderate to severe ARDS (ratio of partial pressure of oxygen to fractional inspired oxygen
213 alues, which are inversely related to tissue partial pressure of oxygen, were determined in the corte
216 haoborus spp. utilize the high dissolved gas partial pressure of sediment methane to inflate their tr
218 re reacted for 27 days with water and CO2 at partial pressures of 0.01 and 1 bar, representing natura
220 O2 ), which ranged between 276-548 mmHg, and partial pressures of arterial carbon dioxide ( PaCO2 ),
221 ormance and EEG were similar across observed partial pressures of arterial oxygen ( PaO2 ), which ran
223 lorophyll a (Chl-a) under present and higher partial pressures of atmospheric CO2 (pCO2 = 400 and 100
224 e anomalies to marine sediments requires low partial pressures of atmospheric O2 (p(O2); refs 2, 3),
225 and at ambient (PCO2 = 10(-3.5)) or reduced partial pressures of carbon dioxide (PCO2 = 10(-4.5)).
227 al yields when cultured with growth-limiting partial pressures of CO, demonstrating a role for CmtA d
230 rements on the mass spectrometer reflect the partial pressures of dissolved gases in the water flowin
231 ity of this multicomponent hydride system to partial pressures of H(2) has not been investigated prev
233 ystem ("miniRuedi") for quantificaton of the partial pressures of He, Ne (in dry gas), Ar, Kr, N2, O2
234 iments) have shed light on the effect of low partial pressures of hydrogen on the decomposition of th
238 the extreme microscopic heterogeneity of the partial pressures of oxygen (pO(2)) between the capillar
239 ndent effect of carbon monoxide and hydrogen partial pressures on regioselectivity and enantioselecti
241 detecting gas-phase analyte molecules at low partial pressures out of a gas flow of time-varying comp
242 oning increased the ratio of arterial oxygen partial pressure over inspired oxygen fraction, the intr
243 tribution and the resulting pulmonary venous partial pressure oxygen level during systemic inflammato
245 heat stress reduces arterial carbon dioxide partial pressure (P(aCO2)) as reflected by 3 to 5 Torr r
247 eline alveolar-arterial difference in oxygen partial pressure (PA-aO(2)) was 50.9 and decreased signi
248 n, body temperature, arterial carbon dioxide partial pressure (Paco2), and other clinical data were r
249 tation definition, combining arterial oxygen partial pressure (PaO2)/inspired fraction of oxygen (FiO
250 silicate weathering cycle, atmospheric CO(2) partial pressure (pCO(2)) responds to changes in surface
254 ure (28 and 31 degrees C) and carbon dioxide partial pressures (pCO(2); 650 and 1050 uatm) using a fu
255 blood flow can result in fluctuations of CO2 partial pressure (pCO2) that disturb cytoplasmic CO2-HCO
258 year record of steady average carbon dioxide partial pressures (Pco2) but declining Po2 provides dist
259 ted versus temperature, the narrow (3)He net partial pressure peak reveals at least three sharper emb
262 maging of resting-state microvascular oxygen partial pressure (PO(2)) and flow in the whisker barrel
263 tumor models, but the impact of reduced O(2) partial pressure (pO(2)) on expression and biologic func
266 they show a more stable pH, a higher oxygen partial pressure (pO(2)), and a lower carbon dioxide par
267 to discriminate states with different oxygen partial pressures (pO(2)) for ex-vivo (blood) following
268 ssociated transients, fluctuations of oxygen partial pressure (Po2) associated with individual erythr
269 Previously, we reported the first oxygen partial pressure (Po2) measurements in the brain of awak
270 studied, but the impact of changes in oxygen partial pressure (pO2) on the state of signaling network
271 e.METHODSWe evaluated subcutaneous AT oxygen partial pressure (pO2); liver and whole-body insulin sen
275 e found that concentrations as low as 1% (in partial pressure) produce mobility variations as high as
276 ely adsorbing high amounts of benzene at low partial pressures, promising for future investigations i
277 vely as a function of temperature and oxygen partial pressure published data obtained by in situ X-ra
278 he range of 0.02-105 kPa, where the ultralow partial pressure range is relevant for the direct captur
279 nocrystals is structure insensitive when the partial pressure ratio p(O2)/p(CO) is close to or less t
280 rametric study of temperature, pressure, and partial pressure ratio revealed that temperatures in exc
282 Mn(5)O(8) layered topologies at low H(2)/CO partial pressure ratios, and MnO at high such ratios.
283 dent EPR signal increased with increasing N2 partial pressure, reaching a maximum intensity of approx
285 Here we demonstrate that arterial oxygen partial pressure shows respiratory oscillations in the u
286 in the presence of N2 and H2O at equilibrium partial pressures similar to those expected in a carbon
287 lar oxygen partial pressure, cerebral oxygen partial pressure, skeletal muscular, and cerebral inters
288 in anhydrous milk fat (AMF) as functions of partial pressure, temperature, chemical composition and
290 ss on room air or a ratio of arterial oxygen partial pressure to fractional inspired oxygen of 300 mm
291 tion, the algorithm controlled O(2):H(2) gas partial pressures to approach a target average Cu oxidat
297 CO(2)/g of sorb was achieved at 15 kPa CO(2) partial pressure, which shows superior performance in co
298 ontinue to respond to rising atmospheric CO2 partial pressures, which has important implications for
299 s strongly depends on temperature and oxygen partial pressure while they remain optically transparent
300 stomatal conductance so as to allow the CO2 partial pressure within stomatal cavities and their intr