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1 nary disease measured in a negative-pressure room.
2 rgan failure up on presentation to emergency room.
3 ies in a hot and in a normothermic operating room.
4 microscopic views of cancer in the operating room.
5 irm the presence or absence of bed bugs in a room.
6 Testing was conducted in a negative-pressure room.
7 h around the user in a simulated cylindrical room.
8 of a full-sized window installed on a mockup room.
9 t team outfitted with PPE in a dedicated CCL room.
10 llocation of ambulances and mobile operating rooms.
11 l to show thanks by providing nicer hospital rooms, 26.0% (95% CI, 21.9%-30.1%) by providing expedite
12                        Billing for operating room (41.8% [792 of 1895], surgery; 10.2% [277 of 2709],
13 st 7 days of life before being returned to a room air environment.
14 oxia for 72 h and then allowed to recover at room air for two weeks (at PND18), sacrificed, and lung
15 of low dose far-UVC lighting to disinfect in-room air has been proposed.
16 perimental BPD-PH model, rat pups exposed to room air or hyperoxia (85% O(2)) were randomly assigned
17  with PCR-confirmed SARS-CoV-2 infection and room air oxygen saturation <=94% whose clinicians reques
18 phase I, 2-minute resting state at baseline (room air); phase II, 6-minute maternal hyperoxia with 10
19 d the cost of clinical time in the operating room - all calculated for each procedure and its associa
20 lculations, we demonstrate HOFAs in both the room- (alpha) and intermediate-temperature (alpha") phas
21 by discrepant rates of billing for operating room and anesthesia use.
22 cterization of the mechanical losses both at room and cryogenic temperatures.
23 atterns during cued-retrieval of the learned room and during the image is lower when the image includ
24 15-20 mV mimics altering temperature between room and physiological in the largest axons.
25 obial surface coating was applied to patient rooms and common areas in 3 units at each hospital.
26 usions and antibiotics used in the operating room, and the cost of clinical time in the operating roo
27 nsultation rooms, laboratories, and dressing rooms, and categorised infection prevention and control
28  the iron core of ferritin molecules at both room- and cryo-temperature.
29 he grade of liver steatosis at the operation room as a fast, quantitative method, as an alternative t
30 ons in two conditions, together (in the same room at the same time) and separately (in different room
31  the same time) and separately (in different rooms at different times).
32 ere evaluated during one year storage at the room condition.
33 e particles of sizes >4 um and 1-4 um in two rooms, despite these rooms having 12 air changes per hou
34 s by almost eliminating the need for a clean-room environment for device fabrication.
35 ll droplets that may remain suspended in the room environment for extended periods and the dispersal
36 lithography, the only step for which a clean-room environment is still often necessary, to further su
37 ry distress syndrome (ARDS) in the emergency room (ER) is distinguishing between cardiac vs infectiou
38 nd 643 eyes (3.7%) returned to the operating room for a noncataract procedure.
39  2187 eyes (12.4%) returned to the operating room for cataract surgery, and 643 eyes (3.7%) returned
40          Overall, there is still significant room for development in macrophage-mediated immune modul
41 ear-old man was transferred to our emergency room for dyspnea and wheals on the entire body.
42                This suggests that there is a room for existing indicators to be improved.
43 rs have been reported so far, allowing ample room for further exploration.
44 China's protected area system still has much room for improvement [4, 5], including to support pandas
45  Preliminary results demonstrate substantial room for improvement in BP control (<140/90 mm Hg), whic
46 e predictability horizon suggest substantial room for improvement in delta-network modeling before fu
47                      There still seems to be room for improvement in international surveillance guide
48                                     There is room for improvement in the management of ICU-admitted s
49 to increase and there is certainly plenty of room for improvement in treatment options.
50  have demonstrated that there is substantial room for improvement with regards to diversity and inclu
51 atment groups", so of doubtful validity, or "Room for improvement".
52 ults show that these methods still have much room for improvement.
53 thodological quality of SMTs still have much room for improvement.
54 led understanding of OFR photochemistry left room for speculation that OFR chemistry may be generally
55 atible with the requirements of an operation room for the evaluation of the lipid contents in human l
56                          Defining and making room for the success of all partners, identifying and ad
57 ntions include designating areas for waiting rooms for influenza-like illnesses, altering staff sched
58 >4 um and 1-4 um in two rooms, despite these rooms having 12 air changes per hour.
59  surfaces (17%, n = 1170), non-COVID-patient-room healthcare facility surfaces (12%, n = 1429), and h
60  surfaces (21%, n = 83), followed by patient-room healthcare facility surfaces (17%, n = 1170), non-C
61 nebulizer (USN) on the basis of a commercial room humidifier demonstrating equivalent exemplary perfo
62 surrounding 3 COVID-19 patients in isolation rooms in a Singapore hospital.
63 ient interactions in outpatient consultation rooms, laboratories, and dressing rooms, and categorised
64 nd imaged by a corona camera in daylight and room light.
65 e workflow within our EHR, improve operative room metrics and user satisfaction.
66 5%]), office (n = 35 [56.5%]), and operating room (n = 35 [56.5%]) settings.
67 E, N95 masks were available in the emergency room (n = 40 [64.5%]), office (n = 35 [56.5%]), and oper
68                                    Isolation room numbers almost tripled and dedicated COVID-19 cohor
69 rototype a potential application for passive room occupancy monitoring.
70              Adverse events in the operating room (OR) are common contributors of morbidity and morta
71 c arm was integrated into a hybrid operating room (OR) equipped with an augmented reality surgical na
72 two sites were compared for conventional (in room order) versus novel (in decreasing order of acuity)
73 tween healthcare personnel (HCP) and patient room (PR) sinks.
74 9 is an opportunity to re-evaluate operating room protocols both for the purposes of this pandemic an
75 ngs are discussed with respect to the use of room-scale VE as a protocol for emotion induction and me
76    A virtual environment (VE) was created at room-scale wherein participants traversed a grid of ice
77 able in an operationally challenging surgery room setting.
78 t severity was associated with more accurate room size estimates.
79 increased auditory judgments of distance and room size.
80 presented here enables the reconstruction of room-sized scenes from non-confocal, parallel multi-pixe
81 cts during negative pressure testing, adding room-specific indoor air sampling to both negative and p
82 uded areas of antenatal management, delivery room stabilisation, invasive and non-invasive respirator
83 of viral particles and exposure of operating room staff to infection.
84 operated by a single person in the operating room suite within intraoperative time limits, while simu
85 3 degrees C and 37 degrees C) and reduced at room temperature (22 degrees C).
86 spin-crossover in solution with T(1/2) above room temperature (300-368 K).
87 stals, thereby reducing damage, has rendered room temperature (RT) data collection more practical and
88                                            A room temperature amorphous ferromagnetic oxide semicondu
89 ollably varied over 3 orders of magnitude at room temperature and 6 orders of magnitude from 10 to 30
90 rs of the migrants, whereas the temperature (room temperature and 60 degrees C) did not show signific
91  including a large exciton binding energy at room temperature and a very small piezoelectric coeffici
92 s is introduced, which gives good results at room temperature and above, and for mobilities as low as
93 ica-silicon conversion becomes reversible at room temperature and accessible within a narrow potentia
94 of the position accuracy below lambda/300 at room temperature and ambient conditions.
95 e bulk CuO, PbO, and Sb(2)S(3) precursors at room temperature and ambient pressure to generate an ink
96  nm crystalline imine-based COF particles at room temperature and ambient pressure.
97 hydrogenation of unsaturated hydrocarbons at room temperature and atmospheric pressure has been perfo
98 VE-1-Ni adsorbs propylene but not propane at room temperature and atmospheric pressure, whereas the i
99 ements, which are are routinely performed at room temperature and below, in materials with mobilities
100  using a universal reaction condition, i.e., room temperature and constant ionic concentration.
101           The reaction can be carried out at room temperature and employs readily available reagents;
102 that these manipulable defects are stable at room temperature and feature enhanced functionalities, a
103 407-CM-T solution is an injectable liquid at room temperature and gels near body temperature.
104 ility, is present and substantial already at room temperature and grows by an order of magnitude upon
105 ntegration, flexibility, good workability at room temperature and in severe environments, etc.
106 This material can be facilely synthesized at room temperature and is water stable, highlighting FeNi-
107 nd in body-centered cubic (Bcc) metals under room temperature and slow strain rates.
108 ormed from the cubic phase during cooling to room temperature and subsequently deforms in compression
109  of the phenylene ring at temperatures above room temperature and thus may be considered the first cr
110 tion of biologically diverse 2H-indazoles at room temperature and under ambient air.
111  with respect to amorphous silica at pH = 9, room temperature and under anoxic conditions.
112 ation or protein enzymes, while operating at room temperature and with single base-pair resolution.
113 onal redox probe in the aqueous solution (at room temperature and without addition of surfactant) is
114 btained shortly after deposition was kept at room temperature and yielded 3.760 L of water, which was
115 endent PL linewidth and PL lifetime (between room temperature and ~5 K).
116 s remain isolated because microwave links at room temperature are noisy and lossy.
117 m light-emitting diodes, affords radicals at room temperature as observed by electron paramagnetic re
118 ws access to both traditional C-N adducts at room temperature as well as a large range of previously
119 nductor optomechanical resonator >20 K below room temperature based on the emission of upconverted, a
120 hibit higher thermoelectric performance near room temperature by eliminating grain boundary resistanc
121 mage viscous Dirac fluid flow in graphene at room temperature by measuring the associated stray magne
122 ot only determined during growth but also at room temperature by post-processing.
123 to show large anomalous Hall effect (AHE) at room temperature comparable to ferromagnets.
124                                          The room temperature electric polarization is comparable to
125 ata transfer between cryogenic (0.1-4 K) and room temperature environments is essential for the reali
126 ))(0.5)((Bi,Sm)(2)O(3))(0.5), we demonstrate room temperature ferroelectricity and ferromagnetism wit
127           Our recent discovery of the strong room temperature ferromagnetism in single layers of VSe(
128 ring real-time storage in dark conditions at room temperature for 22 months.
129  high internal quantum efficiency of ~52% at room temperature for emission at 295 nm.
130 ](2) , which is stable in the solid state at room temperature for extended periods (48 h).
131 elds remarkable device performance featuring room temperature high sensitivity (NEP of 82 pW[Formula:
132 l presented here allows to synthesize GeH at room temperature in a significantly shorter time (a few
133 ursor quantities and short reaction times at room temperature in a wide range of solvents while also
134 design to oxidise an L-proline derivative at room temperature in continuous flow.
135 ide range of chloroarenes with B(2)pin(2) at room temperature in excellent yields and with high selec
136                  Magnetoelectric coupling at room temperature in multiferroic materials, such as BiFe
137  experiments pave the way for more ambitious room temperature in situ dynamic nuclear polarisation st
138 ooling, the TADF mechanism takes over around room temperature in solution when the aggregates dissolv
139 alization of tree-like conductance states at room temperature in strongly correlated perovskite nicke
140 olymerize under visible-light irradiation at room temperature in the absence of a catalyst.
141 king it possible to realize quantum gates at room temperature in these systems.
142 ange that stabilizes sub-100 nm skyrmions at room temperature in zero field.
143                 Multiplexed gas detection at room temperature is critical for practical applications,
144 luoromethylation of beta-ketodithioesters at room temperature is reported.
145 oach to measure site-specific dynamics using room temperature lineshape analysis.
146 e deep-eutectic K-Na alloying approaches for room temperature liquid anodes.
147             A rapid metal- and additive-free room temperature method for C(sp(2))-H thiocyanation of
148  species can be densely covering surfaces at room temperature only when in equilibrium with a suffici
149 uality factor (Q(E) ~ 7.4) and off resonant, room temperature operation, we are able to parametrize s
150                                   Long-lived room temperature phosphorescence from organic molecular
151  dots were designed and fabricated, enabling room temperature phosphorescence material with simultane
152             However, it is hard to achieve a room temperature phosphorescence material with simultane
153                                              Room temperature photolysis of the bis(azide)cobaltate(I
154 rganic perovskite CsPbI(3) to be unstable at room temperature remain mysterious, especially since man
155 in basal activity and agonist sensitivity at room temperature than the Pro to Gln substitution in the
156 pulsion of dinitrogen (N(2)) was observed at room temperature to afford a ligand functionalized produ
157 turn undergo spontaneous C-C homocoupling at room temperature to furnish symmetrical (bis)aryls in go
158  diradicaloid 4 readily splits dihydrogen at room temperature to yield the elusive bis-hydridogermyle
159                     These reactions occur at room temperature under visible light irradiation and are
160 e, light-induced tuning of ferromagnetism at room temperature using a halide perovskite/oxide perovsk
161 non modes with previous measurements made at room temperature using inelastic X-ray scattering and ne
162  classes that are not effectively coupled at room temperature using previous catalysts, led to the de
163   Here we report the structure of TbIMPDH at room temperature utilizing free-electron laser radiation
164 f pectin fractions respectively extracted by room temperature water, 90 degrees C-water, CDTA and Na(
165 lfate (CH(3)OSO(3)H) at ambient pressure and room temperature with a molecular catalyst of vanadium (
166 The charges are found to be highly stable at room temperature with a trapping energy barrier of ~2 eV
167 ) and a specific activity of 9.3 mA/cm(2) at room temperature with only 15.9% loss of mass activity a
168 ition step occurred in less than a minute at room temperature with total regioselectivity toward indo
169 ructures capable of maintaining 3D shapes at room temperature without the need for any actuation are
170                           Here we report the room temperature X-ray structure of unliganded SARS-CoV-
171 provides a measurement of the high-pressure, room temperature Xe and CO(2) sorption isotherms.
172 escence detection of sulfur mustard (SM) at "room temperature".
173  universal hydrodynamic description, even at room temperature(1,2).
174 in charge-neutral, high-mobility graphene at room temperature(4).
175 lly in diamond anvil cells (up to 157 GPa at room temperature) or dynamically by laser-generated shoc
176 D1, T1 and Q1 vs 48% for [Ru(bpy)(3)](2+) at room temperature).
177 7](2+)) under mild conditions (observable at room temperature).
178 ime periods characterized herein (45 days at room temperature).
179 v), using dichloromethane as the solvent, at room temperature, 4-methylene-3-(organoselanyl)-selenoch
180 mate a detection limit of 700 nT Hz(-1/2) at room temperature, 80 nT Hz(-1/2) at 4.2 K, and 3 muT Hz(
181 gnetization of 3.5 emu/cm(3) was observed at room temperature, and it retains ferromagnetic ordering
182 ability to withstand heat stress, storage at room temperature, and three freeze-thaw cycles.
183 an intramolecular, benzylic C-H amination at room temperature, chemical reduction of ((tBu)dmx)Cu(2)(
184  isotropic first-order phase transition near-room temperature, corresponding to a 4% volumetric chang
185 toriously difficult-to-study drug targets at room temperature, has now been adapted for use in synchr
186 ection, with no signal loss after 14 days at room temperature, in contrast to PCR that showed signifi
187                                In storage at room temperature, it presents a short shelf life due to
188 mal conductivity of about 4 W m(-1) K(-1) at room temperature, one order of magnitude smaller than Ga
189 t Hall sensors reported in the literature at room temperature, outperform other Hall sensors at 4.2 K
190 al DMI in TI/ferrimagnet heterostructures at room temperature, resulting in small-size (radius ~ 100
191 ow as 6 x 10(-5) RIU) in bulk RI of gases at room temperature, using a high-resolution LSPR spectrosc
192  charge carriers on phonon heat transport at room temperature, using a modified transient thermal gra
193 i-metallic transport behavior is observed at room temperature, whereas at low temperature, the pGNRs
194 ts contribute to this breadth in solution at room temperature, which raises the question as to what t
195            Pentoses are readily converted at room temperature, while hexoses and their oligosaccharid
196 ing peptides underwent conjugate addition at room temperature, while Z-DeltaAbu- and DeltaVal-contain
197 dband sensitive photoresponse is realized at room temperature, with excellent stability without degra
198  the direct detection of thermal neutrons at room temperature.
199  PhINTs as a nitrene (NT) source in water at room temperature.
200 y of (4.2 +/- 1.2) x 10(-27) N m Hz(-1/2) at room temperature.
201 avior with a remarkably high conductivity at room temperature.
202 Seebeck coefficient 390 (+/-10) muV K(-1) at room temperature.
203 c C-H bonds and alpha-C-H bonds of ethers at room temperature.
204 nductivities of less than 1 W.m(-1).K(-1) at room temperature.
205 nce with 2% quantum yield in acetonitrile at room temperature.
206 .020) starch with 3% OSA and 4-h reaction at room temperature.
207  synthesize Pt NPs in an aqueous solution at room temperature.
208 unced upon increasing the temperature toward room temperature.
209 urate quality assessment of meat spoilage at room temperature.
210 ss dehydrogenation of tetrahydroquinoline at room temperature.
211 50 are achieved on TEMPOL/H(2)O solutions at room temperature.
212 ew macroscopic quantum phenomena observed at room temperature.
213 o 1:5 (Z) for the monoacetylated products at room temperature.
214  of >4 kb at a rate of ~200 bp per second at room temperature.
215 lexes (n != 10) show sizable luminescence at room temperature.
216 emical catalysis facilitates the reaction at room temperature.
217 s well as thermal initial state evolution at room temperature.
218 2) upon exposure to mTorr pressures of CO at room temperature.
219  macroscopic quantum phenomena observable at room temperature.
220 n of injectable PEDOT:PSS hydrogel fibers at room temperature.
221 ent value of ~0.3 at 10 kHz were obtained at room temperature.
222 l Hg(0) concentration of 260-300 mug/m(3) at room temperature.
223 he subthreshold swing of 60 mV decade(-1) at room temperature.
224 100 ppm) and reaction temperatures as low as room temperature.
225 implified storage and shipping conditions at room temperature.
226 etic Weyl semimetal candidate, Co(2)MnAl, at room temperature.
227 up to 18% under continuous-wave condition at room temperature.
228 ing for the fixation of a temporary shape at room temperature.
229 1 and 2) display a bowl-to-bowl inversion at room temperature.
230 ered substrates, the reaction can proceed at room temperature.
231 and antiferromagnetic phases are bistable at room temperature.
232 and that they are stable for up to 5 days at room temperature.
233 ncluding melting point and physical state at room temperature.
234 namics contribute to Lithium-ion mobility at room temperature.
235 he transition can be tuned to occur close to room temperature.
236 anol (1:1 v/v) and 0.2 m KHCO(3) solution at room temperature.
237 6.5 x 10(10) cm Hz(1/2) W(-1) at 1.55 mum at room temperature.
238 F, and moderate activity toward C-F bonds at room temperature.
239  Switching behavior persists from 15 K up to room temperature.
240 ic separation of all three xylene isomers at room temperature.
241 ed, even 90 min in the presence of oxygen at room temperature.
242 d mutual isomerization or remained intact at room temperature.
243   This manipulation could be accomplished at room temperature; hence this opens avenues for magnetoop
244                                        Here, room-temperature (RT) diffusion coefficients of 3.4 x 10
245  successful structure solution achieved from room-temperature 3D-ED data with a resolution as low as
246 , when doped into the commercially available room-temperature achiral liquid crystal host 5CB, which
247        The two catalysts had similar initial room-temperature activities per Rh atom for ethylene con
248 eport the demonstration of an aqueous-phase, room-temperature approach to CdS MSCs, together with an
249 ur findings show there is a viable avenue to room-temperature aqueous-phase formation of CdS MSCs.
250 tures up to 242 degrees C and a 7500-oersted room-temperature coercivity.
251 ide electrochemical stability window, a high room-temperature conductivity of 1.5 x 10(-4) S cm(-1) ,
252  We argue that the primary amine facilitates room-temperature decomposition of thiourea when CdCl(2)
253 es integrated on flexible polymers, enhanced room-temperature dielectric permittivity with large mech
254                        Notably, however, the room-temperature emission efficiency and the fluorescenc
255 le quantum wells (IO-MQWs) show utility from room-temperature exciton emission features (binding ener
256                      However, no spontaneous room-temperature ferroic property has been observed to d
257 cyclic double bond is hindered, resulting in room-temperature fluorescence.
258 icon-based manufacturing methodologies, this room-temperature gas sensing array can be fabricated rep
259  one thousand bending cycles and exceptional room-temperature gas sensing performance.
260 DOT:PSS hydrogels by taking advantage of the room-temperature gelation property of PEDOT:PSS.
261 mpregnated 2D and 3D COFs show a significant room-temperature ion conductivity of 1.8 x 10(-4) S/cm a
262                         Correspondingly, the room-temperature magnon BEC differs essentially from oth
263 nsition-metal oxide that demonstrates a near-room-temperature metal-insulator transition that may be
264 e kinetically trapped, enabling atomic-scale room-temperature observations.
265 ic, large-scale, color tunable, and low-cost room-temperature OLPL applications become possible.
266                             However, present room-temperature OLPL emitters are mainly based on a bim
267 trical conductivity of up to 10(-2) S/cm and room-temperature paramagnetic behavior with a spin conce
268 mally activated delayed fluorescence (TADF), room-temperature phosphorescence (RTP), mechanoluminesce
269 cal predictions show that upconversion-based room-temperature receivers can outperform state-of-the-a
270  and silicon oxide are used to obtain stable room-temperature responses to ammonia (NH(3) ), hydrogen
271 in H(3) S at 203 K marked an advance towards room-temperature superconductivity and demonstrated the
272 enable the preservation of the properties of room-temperature superconductivity at lower pressures.
273 n experimental physics is the observation of room-temperature superconductivity(1,2).
274                                              Room-temperature synthesis of 2D graphitic materials (2D
275                                      Here, a room-temperature technique for the synthesis of a variet
276      This paper presents a study of noise in room-temperature THz radiometers that use THz-to-optical
277 s can outperform state-of-the-art cooled and room-temperature THz receivers based on low-noise amplif
278 emonstrated exciting properties such as near-room-temperature topological insulation in bismuthene, e
279 -assembled molecular-electronic films, whose room-temperature transport properties are controlled by
280                         Here, we demonstrate room-temperature voltage-driven nitrogen transport (i.e.
281 vantages of the reaction include metal-free, room-temperature, mild reaction conditions and broad fun
282       Finally, it is demonstrated that these room-temperature-formed PEDOT:PSS hydrogels (RT-PEDOT:PS
283 sent the synthesis and characterization of a room-temperature-stable compound with two separated two-
284 ow a reversible structural transformation at room-temperature.
285 gence and development of the elephant in the room, that is, technical cognition.
286  follows: net scan (actual imaging), active (room time), idle, and system-on and system-off states (n
287 a, this review aims at pointing out there is room to promote organic-based electrochemical energy sto
288                                    Operating room use and anesthesia services were major drivers of h
289                                    Emergency room visits (2.4% [n/N = 7/296] vs 33.5% [n/N = 779/2322
290 mains one of the leading causes of emergency room visits and is still associated with high morbidity
291  no differences in readmissions or emergency room visits at 30 or 90 days.
292 amily visits inside or outside the patient's room were possible for 36 patients (80.0%); 13 patients
293 ion on the rack, and rack orientation in the room were significant risk factors predicting fighting.
294 multaneously with another person in the same room) while EEG signals were measured.
295  relevant history presented to the Emergency Room with acute right flank pain.
296 ble, because all patients left the operating room with complete retinal reattachment.
297 sent a rare case presenting to our emergency room with the complaint of bloody vomiting, at the 36th
298 f biocontamination in controlled environment rooms with HEPA filters in a hospital.
299 erformed in different controlled environment rooms with HEPA filters.
300 f biocontamination in controlled environment rooms with HEPA filters.

 
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