コーパス検索結果 (1語後でソート)
通し番号をクリックするとPubMedの該当ページを表示します
1 or such applications at higher temperatures (liquid nitrogen).
2 and flow boiling) and two fluids (water and liquid nitrogen).
3 tion of 5 generations and 6-month storage in liquid nitrogen.
4 e local equilibrium above the temperature of liquid nitrogen.
5 r 0, 2, 10 and 30 minutes before freezing in liquid nitrogen.
6 y freezing the high-light-treated tissues in liquid nitrogen.
7 2 by air oxidation, after evaporation of the liquid nitrogen.
8 tures remain well below the boiling point of liquid nitrogen.
9 on into an isopentane solution surrounded by liquid nitrogen.
10 split at a 1:3 ratio and is cryopreserved in liquid nitrogen.
11 0 months of continuous culture or storage in liquid nitrogen.
12 iquid droplet comes into direct contact with liquid nitrogen.
13 mmobilized cell reactors and flash-frozen in liquid nitrogen.
14 than does the commonly used snap-freezing in liquid nitrogen.
15 culating perfusion (n=8), and snap frozen in liquid nitrogen.
16 by a slow-rate cooling medium and stored in liquid nitrogen.
17 above, and in some cases well above, that of liquid nitrogen.
18 50 degrees C for an hour or when immersed in liquid nitrogen.
19 nic light at 230 K, followed by quenching in liquid nitrogen.
20 y freezing the brains of a subset of pigs in liquid nitrogen.
21 nes were expanded, propagated, and stored in liquid nitrogen.
22 y rotating metal disk which was precooled in liquid nitrogen.
23 Brains were frozen in situ with liquid nitrogen.
24 ion procedure, filtered, and flash-frozen in liquid nitrogen.
25 h grinding in a mortar and pestle containing liquid nitrogen.
26 and rapidly frozen in isopentane chilled in liquid nitrogen.
27 ved in a cryoprotective medium and stored in liquid nitrogen.
28 memory effects at temperatures above that of liquid nitrogen.
29 t temperatures close to the boiling point of liquid nitrogen (77 kelvin), which is a record for the i
30 62 periampullary tumors were snap-frozen in liquid nitrogen and adjacent tissue was formalin-fixed f
36 ons were immersed in OCT media and frozen in liquid nitrogen and stored at -80 degrees C till further
37 of healthy mucosa (MC) were shock frozen in liquid nitrogen and underwent cryotomy after manual diss
38 e effect of freezing rates using direct (LF: Liquid nitrogen) and indirect (RF: Cryogenic refrigerato
39 , each group) were harvested, snap frozen in liquid nitrogen, and analyzed for CaR messenger ribonucl
40 ntly long-lived to be trapped by freezing in liquid nitrogen, and its electronic structure was invest
41 he tissue was placed in OCT, flash frozen in liquid nitrogen, and stored at -80 degrees C until RNA e
43 nterior segments were then quickly frozen in liquid nitrogen, and their TMs were dissected for RNA ex
45 erties, comparing direct freezing (DF) using liquid nitrogen at -196 degrees C with indirect freezing
47 is of 19 Xe laden crystals freeze-trapped in liquid nitrogen at selected times between 0 and 480 s wh
50 Today solid-state cooling technologies below liquid nitrogen boiling temperature (77 K), crucial to q
53 d bolometer as a detector and another with a liquid nitrogen cooled mercury cadmium telluride (MCT) d
55 mercury-cadmium-telluride photodetector and liquid nitrogen-cooled indium-antimonide photodetector,
60 ssues typically are extracted by grinding in liquid nitrogen followed by the stepwise addition of sol
61 on, even after vitrification, cryostorage in liquid nitrogen for 1 week, and nanowarming under an alt
62 3-4 days, samples were removed and frozen in liquid nitrogen for carbon-13 magnetic resonance spectro
63 ssion electron microscopy and by freezing in liquid nitrogen for light and confocal microscopy of imm
66 mable syringe pump plus a set of multiplexed liquid nitrogen freeze/thaw switching valves are employe
67 ens from this outbreak had been preserved in liquid nitrogen from the time of collection and were ava
68 ification) and the levitation of droplets on liquid nitrogen (i.e., Leidenfrost phenomenon) take plac
69 of silicon-tin nanocrystals by discharges in liquid nitrogen is studied using a Si-10 at % Sn sintere
70 he use of domestic freezers to storage under liquid nitrogen, is widely being used, but the implicati
72 s been correlated with the process of adding liquid nitrogen (LN(2)) to top off the dewar of a stainl
73 RA-96(TM)), freeze rates (2, 4 or 8 cm above liquid nitrogen; LN), thaw rates (37 degrees C for 1 min
75 of cell stocks routinely requires the use of liquid nitrogen (LN2), because commonly used cryopreserv
76 y cools tissues by spraying them with either liquid nitrogen or rapidly expanding carbon dioxide gas.
77 ed to different freezing methods (air blast, liquid nitrogen or walk-in freezer) and storage conditio
78 etector stability (especially in the case of liquid nitrogen- or liquid helium-cooled detectors) shou
80 re room-temperature drops are deposited on a liquid-nitrogen pool and levitate on a vapor film genera
81 ezer mill while the sample is deep frozen in liquid nitrogen, preventing degradation of DNA during th
83 ng argon gas (Galil Boston Scientific(R)) or liquid nitrogen (Prosense Ice Cure(R)) following a tripl
85 rid into liquid ethane at the temperature of liquid nitrogen, so that it is suitable for cryo-EM visu
88 rate is approximately 10(15) times slower at liquid nitrogen temperature than at room temperature.
89 heir magnetic memories from liquid helium to liquid nitrogen temperature thanks to a wise choice of t
92 or their persistent magnetic properties near liquid nitrogen temperature, well above alternative mole
97 ure of cubic insulin at room temperature and liquid-nitrogen temperature, under identical solvent con
99 idates for SMMs that show magnetic memory at liquid nitrogen temperatures, but the relaxation mechani
103 up quantum-mechanical circuits operating at liquid-nitrogen temperatures, as well as an avenue to co
104 on than was available with cryomicroscopy at liquid-nitrogen temperatures, matching expectations from
105 enhanced-yellow-fluorescent-protein spin at liquid-nitrogen temperatures, we measure a (16 +/- 2) mu
106 iation damage by cooling the specimen beyond liquid-nitrogen temperatures, yet all failed to realize
110 microcavity photons up to the temperature of liquid nitrogen, thereby integrating versatile control o
111 K, which is just above the boiling point of liquid nitrogen, they are respectively 10 mus and 1 mus,
112 tissue was rinsed and immediately frozen in liquid nitrogen to determine tissue levels of total and
113 f each movie, the labeled leaf was frozen in liquid nitrogen to stop metabolism, the leaf was lyophil
114 cribe our experience using cryoablation with liquid nitrogen to treat benign and malignant breast les
117 etup with a cylindrical ion trap cooled with liquid nitrogen, we measure fluorescence from the enol-l