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1  that remain over 10-fold higher by 6 h post-submersion.
2 reasing 70-fold in roots within the 1st h of submersion.
3  water or improved medical treatment after a submersion.
4                                      Upon re-submersion, an additional rapid rise in DMSgas was obser
5                                              Submersion and hypoxic conditions impede AhR-dependent C
6                                              Submersion and the release of breath holding can activat
7       This was confirmed in A549 cells, plus submersion, and ALI culture of HBE cells.
8 ficant reduction in heart rate (f(H)) during submersion as compared while breathing at the surface.
9  >95% visible biofilm reduction during 8-day submersion at 1.01 +/- 0.55 mW/cm(2) power consumption.
10 possibility of ejection above the surface or submersion below the surface, a fate determined by their
11                                   Cold water submersion can induce a high incidence of cardiac arrhyt
12 y bronchial epithelial cells (HBEC) grown in submersion culture, and HBEC that were highly differenti
13 ith similar kinetics to primary HBE cells in submersion culture.
14         The addition of flt3L + IL-7 to lobe submersion cultures of murine fetal thymic lobes resulte
15 t was not as potent as interleukin 7 in lobe submersion cultures.
16 tudy analyses how temperature, moisture, and submersion duration contribute to the composite material
17 er dynamics and our results translate to the submersion dynamics of other passively floating particle
18 on, declined because of a decrease in severe submersion episodes rather than an increase in success o
19 Notably, specimens subjected to 90 degrees C submersion experience 6% reduction in tensile strength f
20                   Extensive testing involved submersion in high-temperature hydrocarbon fluid at 150
21 u-BTC could withstand high humidity and even submersion in water much better than unperturbed Cu-BTC.
22                                        After submersion in water, the polymers swell to equilibrium,
23 ble of preventing vision loss after repeated submersions in blood and mucus.
24 her found that (S)-IBD3540 protected against submersion-induced oxidative stress injury by decreasing
25 ood injury deaths are motor vehicle crashes, submersion injury, homicide, suicide, and fires.
26                                Entrapment by submersion makes the water strider poised to penetrate t
27 ond crater which determines the ejection and submersion of passive water striders.
28 ose from the Antarctic, possibly due to full submersion of sea-ice at the former.
29  from three key time intervals: prior to the submersion of the island, following re-emergence, and pr
30 the axon, resulting in the partial or total "submersion" of the axon within the myotube contours.
31 esses from initial respiratory arrest due to submersion-related hypoxia to cardiac arrest; thus, it c
32 ring air exposure but rapid recovery upon re-submersion, suggesting that DMS enhances coral tolerance
33 d in water heating chambers set to different submersion temperatures (40 degrees C, 70 degrees C, and
34  two groups at 40 degrees C and 70 degrees C submersion temperatures, a slight decline is noticeable
35 n in the bubbles decreases with experimental submersion time in living anoles, but not in mechanical
36      The girl was rescued after an estimated submersion time of at least 83 minutes in icy sea water.
37 iously reported human survival and prolonged submersion time.
38                Depletion in DMS following re-submersion was likely due to biologically-driven convers