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1 clinically important tracheal obstruction to air flow.
2 rounding fruiting bodies to reach dispersive air flows.
3  condition (23 C, 45% relative humidity, and air flow 0.10 m/s) and a controlled adverse condition th
4 ting stress (23 C, 5% relative humidity, and air flow 0.10 m/s).
5 al end of the trachea results in respiratory air flow abnormalities and increases rates of pulmonary
6 e of forest floor plans that maximize ground-air flow access, the proportionality between the length
7 st on a glass slide in the presence of moist air flowing across the surface.
8  predict clinically important obstruction to air flow after prolonged mechanical ventilation.
9  possibilities, we achieve transparent, high air flow and highly effective air filters of ~90% transp
10 nt directions of arista deflection caused by air flow and project to different regions of the antenna
11  occur during human sweating thus permitting air flow and reducing both the humidity level and the ap
12  feature structural modifications to enhance air flow, and forced draft (FD) stoves, which additional
13 Compliance, maximal transpulmonary pressure, air flow, and gas exchange were normal in all heterozygo
14 ualitative, high-speed digital images of the air flow around their wings.
15                                The resulting air flow causes the expulsion of a pollen jet and the de
16 a piezoresistive sensitivity of 1.3% per m/s air-flow change.
17                   The sensors demonstrate an air-flow detection threshold of less than 1 m/s with a p
18          Tree bats may respond to streams of air flowing downwind from trees at night while searching
19 a linear filter to identify the wave-induced air flow from the measurements and find that its structu
20  thought to occur by Helmholtz resonance via air flowing from the lungs into the upper respiratory sp
21 ce of direct in situ measurement of internal air flows has precluded a definitive mechanism for this
22 model, both symmetry and laterality of nasal air flow have been reported to be incomplete in rats.
23 predicts clinically important obstruction to air flow in patients requiring prolonged mechanical vent
24 pressure, plateau airway pressure, isovolume air flow, internal lung pressure, and intrinsic PEEP wer
25             Baseline ozone concentrations in air flowing into Texas from the Gulf of Mexico have not
26 rom footsteps, heartbeats, ambient noise and air flow, it is important to explore innovative technolo
27 t by slowing sedimentation out of dispersive air flows, it also causes spores to decelerate rapidly a
28               During mechanical ventilation, air flows may play a role in mucus transport via two-pha
29 e primary outcome indicator, peak expiratory air flow measured in the morning, did not change signifi
30  onset of lung disease in PCD, with abnormal air flow mechanics by age 6-8 years that is similar to c
31 ould alert health care providers to residual air flow obstruction despite decreases in overall dyspne
32  effective than anti-LT therapy in improving air flow obstruction.
33  on the specific biosensing under continuous air flow of DMMP, which is commonly used as a simulant a
34 aluate the effect of drying temperatures and air flows on their color and phenolic composition.
35 membrane tube, (heated) drying gas (nitrogen/air) flows outside it to remove the solvent.
36    We show that these sounds are produced by air flowing past a feather, causing it to aeroelasticall
37 idity (<40%), injections of scopolamine, and air flow produced by a fan.
38 n of aeration was increased while decreasing air flow rate (10.9 +/- 3.2% DeltaN2O/DeltaTN).
39 n was increased while maintaining a constant air flow rate (from >6 to 1.7% DeltaN2O/DeltaTN).
40 nder the same test conditions (25 degrees C, air flow rate of 1 cm(3) min(-1)).
41 rations of DEHP versus time were measured at air flow rate of 450 mL.min(-1) and five different tempe
42 e, air flow rate through the mixing chamber, air flow rate through the evaporation chamber, and type
43 ance (i.e., evaporation chamber temperature, air flow rate through the mixing chamber, air flow rate
44 ivered through the nebulizer and the diluent air flow rate.
45                              Due to the high air flow rates used in the filter, both a plug flow mode
46 re were used to investigate the influence of air flow rates, stove geometry, fuel type, and operating
47 s was performed with varied temperatures and air flow rates.
48     Intraparenchymal airways are involved in air flow regulation.
49 atory pulses of near-field sound and laminar air flow, respectively.
50 e, season, and transplant outside of laminar air flow rooms were associated with significant risk for
51  for their performance under three different air flow settings and three target air exchange rates: 0
52                          By using supersonic air flow, the nebulator produces drops that are so small
53                                          The air flow through each of the collection devices was main
54 somatosensory stimulation that is induced by air flow through the nostrils.
55  C, 45% relative humidity (RH) and 1.5m/s of air flow to dehydrate the berries up to 40% of loss of i
56 nt role in controlling bronchomotor tone and air flow to the lung.
57                           Here, we show that air flows unidirectionally through parabronchi in the lu
58                                Two different air flow velocities across the filters were explored: 0.
59                                              Air flow was assessed with self-recorded serial peak exp
60                    We then showed that nasal air flow was symmetric over an entire day in awake rats.
61  Here we show that mere changes in laryngeal air flow yield several non-linear effects on sound produ

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