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1 moglobin were recorded at baseline and after inhaling 1, 5, 10, and 20 ppm of nitric oxide.
2                                              Inhaling 100 ppm NO increased FEV1 to 2.66 +/- 0.18 L (p
3      Normobaric hyperoxia treatment involved inhaling 100% oxygen at a flow rate of 10 L/min through
4                                         Rats inhaling 2,3-pentanedione developed necrotizing rhinitis
5 cxr-knockout mice than in wild-type controls inhaling 200 ppm diacetyl, further implicating the alpha
6                  An additional group of rats inhaling 270 ppm 2,3-pentanedione for 6 hours 41 minutes
7 11.1 yrs) at baseline (B), immediately after inhaling 40 ppm NO (NO-1), 10 min after inhaling NO (NO-
8 an FEV1 >/= 90% of their baseline even after inhaling 41.5 micrograms of LPS.
9 GF (60 mug/kg) or placebo for 3 days, before inhaling 50 mug LPS.
10 had at least 20% decline in their FEV1 after inhaling 6.5 micrograms or less of LPS, whereas 11 "hypo
11          These observations demonstrate that inhaling 80 ppm NO inhibits neointimal formation after b
12 n nicotine accumulation compared with NDS by inhaling a larger volume of smoke.
13 it increase in specific airway resistance on inhaling an SO2 concentration of < or = 4 ppm (PC8SRaw).
14 c hypothesis of face masks protection during inhaling and exhaling, our simulations demonstrate that
15 In contrast to OPN wild-type mice (OPN(+/+)) inhaling asbestos, OPN null mice (OPN(-/-)) exposed to a
16  distal bronchiolar epithelial cells of mice inhaling asbestos.
17    Inhalational anthrax, a disease caused by inhaling Bacillus anthracis spores, leads to respiratory
18 were all oxidized, supporting the concept of inhaling burned metals.
19              The potential health effects of inhaling carbon nanotubes are important because of possi
20 ey fever, is an infectious disease caused by inhaling Coccidioides fungal spores.
21                                              Inhaling fine particles (particulate matter with diamete
22 er ramp-up or triangular (time to reach peak inhaling flow (PIF) = 0.42 s) inhalation pattern.
23 icularly among never smokers unaccustomed to inhaling free-base nicotine.
24 s believed to be hereditary or contracted by inhaling 'miasma,' or corrupted air, and patients were n
25  little is known about the health effects of inhaling microcystins and the factors contributing to mi
26    People with higher OC exposure are likely inhaling more fresh OC2 and OC3, since secondary OC4 and
27 smokers underwent 3.0-T MRI before and after inhaling nicotine-free e-cigarette aerosol.
28                                   Conclusion Inhaling nicotine-free electronic cigarette aerosol tran
29 fter inhaling 40 ppm NO (NO-1), 10 min after inhaling NO (NO-10), and after inhalation of a standard
30                                With subjects inhaling NO, blood flow fell during L-NMMA infusion by o
31  classrooms, the average risk of an occupant inhaling one MTB RD9 copy was estimated as 0.71% during
32                            Roughly 2 h after inhaling OT, monkeys increased the frequency of prosocia
33 were treated with the CCR3 antagonist before inhaling ovalbumin.
34 iomer; however, enantiomer disposition after inhaling racemic albuterol with a metered-dose inhaler (
35                                              Inhaling radon and its progeny is associated with advers
36 gh catalytic generation of ROS in vivo after inhaling redox-active PM species (oxidative potential, O
37 ad in the closed space) and susceptible ones inhaling the contaminated air.
38 e observed over Zoom videoconferencing while inhaling their product or remaining sober and then were
39 of indoor operation than that resulting from inhaling typical U.S. ambient PM(2.5) (8 mug/m(3)) over
40 al CBD 1000 mg or placebo three hours before inhaling vaporised cannabis (containing Delta(9)-tetrahy