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1 p participants received warm (37 degrees C), humidified (98% relative humidity) CO(2) gas insufflatio
2 tive clouds in the tropics and midlatitudes, humidified aerosols freeze to form ice, which upon expos
4 e cleaner HOPG surface that is exfoliated in humidified air and covered with a nanometer-thick water
6 y responses to isocapnic hyperventilation of humidified air at hot (49 degrees C; HA) and room temper
7 sure was supplied with controlled amounts of humidified air from a test atmosphere generator to creat
11 blot hybridization in normoxic (5% CO2, 95% humidified air) and hypoxic (1% O2, 5% CO2, 94% N2) cult
12 contained 1 mM bicarbonate (atmosphere:100% humidified air) rather than 25 mM bicarbonate (atmospher
16 he nasal morphology and/or function aimed to humidify and warm the air before it reaches the lungs ar
17 was prevented by occlusion or exposure to a humidified atmosphere (179 +/- 13 versus 441 +/- 34 micr
18 PBMC suspensions were incubated upright in a humidified atmosphere at 37 degrees C with 5% CO2 for 24
20 thermal reactions after illumination of 100% humidified bacteriorhodopsin films was followed with FTI
24 aic efficiency, whereas a conventional water-humidified CO(2) feed only operated stably for ~80 hours
26 we demonstrate a flow electrolyzer that uses humidified CO(2) to produce CH(4) in a 700-h process und
27 ell as long-term ultrastability under highly humidified CO2 environments and exceptional chemical sta
29 s greater under dry (28.8 to 39%) than under humidified conditions (15.9 to 20.2%) (p < 0.005 in all
30 performance for transient operation and low humidified conditions, as well as improved durability ag
32 sample can be determined under conditions of humidified flow where there may be a simultaneous ingres
33 tudies aimed at predicting clay expansion in humidified fluids with varying ratios of CO(2) and CH(4)
34 lastic bag or plastic wrap along with heated humidified gas for resuscitation or for initiating respi
35 on PEEP (7.5 cm H2O), and ventilated with a humidified gas mixture; and (4) LPS + PEEP + Sf (n = 6),
37 ag or wrap with a plastic cap or with heated humidified gas was associated with lower risk of major b
41 ing 5% (v/v) glycerin in the solutions and a humidified headspace to control evaporation of the small
43 positive airway pressure (NCPAP) and heated humidified high-flow nasal cannula (HHHFNC) are the most
45 g.Conclusions: Oxygen delivery modalities of humidified high-flow nasal cannula and noninvasive posit
46 ignificantly increase with the use of either humidified high-flow nasal cannula or noninvasive positi
47 idified nasal cannula, face mask, heated and humidified high-flow nasal cannula, and noninvasive posi
49 degrees C, respectively) when operated with humidified hydrogen as the fuel and air as the cathode g
50 er 2 watts per square centimetre of power in humidified hydrogen gas, and a current of 2.75 amps per
52 f substrate-deposited, isolated particles to humidified nitrogen inside a sample cell followed by mic
54 N(2) gas was bubbled through water, and the humidified output containing undetectable concentrations
55 etrograde persufflation whereby filtered and humidified oxygen is bubbled through the vasculature; un
56 ancies were randomized to receive either 60% humidified oxygen or medical compressed air (room air) b
57 m both measurements of CCN activity and from humidified-particle light extinction, and varied from 0.
58 the sample broadly agreed with those of the humidified particles, indicating the potential to infer
59 me of lung transplantation were mounted in a humidified perfusion chamber and the mucosal surface was
61 .28-1.38 C), plastic bag or wrap with heated humidified respiratory gas (MD, 0.76 C; 95% CrI, 0.38-1.
62 are alone, a plastic bag or wrap with heated humidified respiratory gas was associated with less risk
63 d carbonation of forsterite (Mg(2)SiO(4)) in humidified scCO(2) (50 degrees C and 90 bar), which serv
65 carbonation of divalent silicates exposed to humidified scCO(2) occurs in angstroms to nanometers thi
66 bulk and surface properties of anhydrous and humidified spray-dried milk protein concentrate (MPC) po
67 , the optimized automatic sprayer method and humidified sublimation method resulted in double the num
68 is not affected by a sequential exposure to humidified synthetic air (60% r.h.) with a flow rate of
70 factors, densities, and compositions using a humidified tandem differential mobility analyzer that is
75 Results show inhaled air was both heated and humidified up to 90% of alveolar conditions at the poste
76 the in vitro delivery of 16.2% achieved in a humidified ventilator circuit, the resulting value (16.2
78 e lower respiratory tract was decreased in a humidified versus a dry circuit (16.2 versus 30.4%, resp