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1                                              HFO at lower rates may be the optimal method of respirat
2                                              HFO distribution and spike onset were compared in cases
3                                              HFO frequency was also affected (p < 0.01).
4                                              HFO may extend the window of time available for removal
5                                              HFO may provide smaller tidal volumes and more complete
6                                              HFO power and frequency were compared between the condit
7                                              HFO rates were compared using a two-way repeated measure
8                                              HFO synchronization expresses individual frequency peaks
9                                              HFO synchronization is also characterized by a laminar p
10                                              HFO through the endotracheal tube is feasible and safe m
11                                              HFO was synthesized, labeled with (65)Cu to achieve a Cu
12                                              HFO-1234yf is volatile at ambient temperatures; however,
13                                              HFO-1336mzz(Z) has been detected in >90% of all measurem
14                                              HFO-IEDs were characterized by a pronounced pre-peak inc
15                                              HFO-PLV was initiated by instillation of perflubron at a
16                                              HFOs and HCFOs readily decompose in the atmosphere to fo
17                                              HFOs and spikes were only significantly spatially reliab
18                                              HFOs appear excellent markers for the epileptogenic zone
19                                              HFOs are a proposed biomarker of epileptic brain tissue
20                                              HFOs are composed of a myocardial layer lined by endocar
21                                              HFOs in ripple and fast ripple frequency ranges were eva
22                                              HFOs occurred spontaneously in extracellular field poten
23                                              HFOs show promise for improving surgical outcome and acc
24  The introduction of open, high-field, 1.0T (HFO) MR scanners offers advantages for examinations of o
25 o new substitution patterns from HFO-1234yf, HFO-1234ze, and HFO-1336mzz, previously inaccessible by
26 a total of 2,967 interictal spikes and 1,477 HFO events).
27 f iron and zinc was found in genotypes OS-6, HFO-638, HFO-915 & HFO-918, whereas, elevated levels of
28 d zinc was found in genotypes OS-6, HFO-638, HFO-915 & HFO-918, whereas, elevated levels of manganese
29  found in genotypes OS-6, HFO-638, HFO-915 & HFO-918, whereas, elevated levels of manganese and zinc
30 mpal high-frequency electrographic activity (HFOs) represents one of the major discoveries not only i
31                                Additionally, HFO/NIV RDV group had a lower risk of mortality at 14 da
32                Anesthesia selection affected HFO and sharp-spike rates.
33                                        After HFO analysis, centres provided the electrode contacts lo
34 th conditions combined, sharp-spikes and all HFO subtypes were increased in the SOZ (p < 0.01).
35                            During sleep, all HFOs, except fRonO, were larger in amplitude compared to
36                     AE varied slightly among HFO preparations, suggesting modest influences of NOM an
37 s to compare standard cMRI sequences from an HFO scanner and those from a cylindrical, 1.5T MR system
38         Standard cardiac MRI sequences in an HFO platform offer a high image quality that is comparab
39 on patterns from HFO-1234yf, HFO-1234ze, and HFO-1336mzz, previously inaccessible by transition metal
40 stent with As(V) sorption to both MnO(2) and HFO.
41 elated with increased locomotor activity and HFO power in the OB.
42               When compared with both CV and HFO at 10 Hz, the TGV in the HFO at 15 Hz group was sign
43 e reduced ketamine-induced hyperactivity and HFO power and frequency.
44  vessel operated on marine gas oil (MGO) and HFO, respectively.
45 ites revealed that z-score normalized MI and HFO rate were higher at seizure onset versus nonepilepti
46 C) in the STN was specific to beta phase and HFO amplitude, and this coupling was strongest at the do
47   Inter-group comparisons of spike-rates and HFO-rates were done by Mann-Whitney U test.
48 locarbons from CFCs through HCFCs, HFCs, and HFOs, the merits and challenges of each will be discusse
49 standing of the optimal approach to applying HFO in human studies.
50 ndicated that the majority of Cu ingested as HFO was assimilated (values >70%), implying that colloid
51 rly crystalline Fe(III) oxyhydroxides and As-HFO phases suggest a high As mobilization potential unde
52 rphous As(V)-rich hydrous ferric oxides ("As-HFO") with a reduced number of corner-sharing FeO6 octah
53 of the OB and naris blockade both attenuated HFO recorded locally and in the ventral striatum.
54  a variety of field and synthetic As-bearing HFO sludges, which is a critical first step to enable sl
55 agreement is clinically significant, because HFOs may be good markers of epileptogenic areas.
56                         We found higher beta-HFO PAC near DBS lead contacts that were clinically effe
57 indings provide additional support that beta-HFO PAC may be central to the pathophysiology of PD and
58 omparing each unit's firing directly between HFO- and non-HFO-IEDs, we found that most cells had high
59 esidue samples from the 2007 M/V Cosco Busan HFO spill (San Francisco, CA).
60 s (PSs) from clusters of bursting cells, but HFOs in the ripple and the fast ripple range are vastly
61                            Event-specific co-HFO patterns that occur during event viewing reoccur fol
62 lated (values >70%), implying that colloidal HFO potentially represents a source of dietary Cu to ben
63 luoroolefins (HFOs), and blends that contain HFOs.
64                                 Beta-coupled HFOs and field-locked neurons had different preferred ph
65 sufficient for the emergence of beta-coupled HFOs.
66 sorbed to synthetic hydrous ferric oxide (Cu-HFO).
67 ssed randomization window (15%), and current HFO use (14%).
68             They were then randomized to CV, HFO at 10 Hz, or HFO at 15 Hz.
69           Consistent with ketamine-dependent HFO being driven by nasal respiration, unilateral naris
70 at nasal airflow entrains ketamine-dependent HFO in diverse brain regions, and that the OB plays an i
71  ipsilateral reduction in ketamine-dependent HFO power compared to the control side.
72                 Bursts of ketamine-dependent HFO were coupled to "fast" theta frequency sniffing.
73 s underlying wake-related ketamine-dependent HFO.
74  What determines the expression of different HFOs?
75                                       During HFO, 25 of 30 patients maintained acceptable gas exchang
76 rified the mechanisms of gas exchange during HFO, identified approaches to setting mean airway pressu
77          Comparing each unit's firing during HFO-IEDs to its baseline activity, we found many neurons
78 s (40%, p< .007) remained hypercarbic during HFO at 15 Hz.
79  achieve the lowest oxygenation index during HFO-PLV is between 5 and 15 mL/kg.
80 ound that most cells had higher rates during HFO-IEDs and, moreover, identified a distinct subset of
81 zapine, and the bursting pattern seen during HFO was abolished.
82 er of MHCs during T. potens growth on either HFO or AQDS, and that several MHCs are localized to the
83           We categorized ENE patients as ENE-HFO and ENE-CV based on receipt of HFO at any time.
84 atients in respective arms of the trial, ENE-HFO patients were younger and had worse lung injury, whe
85             The pathophysiology of epileptic HFOs is challenging, probably involving populations of n
86 al meaning, and pathophysiology of epileptic HFOs.
87              Laboratory experiments explored HFO-1234yf degradation by (i) microbial processes under
88 cy in predicting seizure outcome was 85% for HFO, 60% for Spikes, and 79% for Spike + HFO.
89 pplying a previously validated algorithm for HFO marking without the need for adjusting to new datase
90            Clinical management algorithm for HFO that minimized delivered tidal volumes by encouragin
91                    We provide guidelines for HFO in adults with acute respiratory distress syndrome t
92 f the fuel injection system is optimized for HFO operation.
93 rable to that determined in naturally formed HFO, and then aged.
94 restricted in the brain than lower-frequency HFOs.
95 om HFO-1225ye(Z), and (0.12-0.01+0.04)% from HFO-1234yf, while HCFO-1233xf ozonolysis produces CFC-13
96 % from HFO-1225ye(E), (1.02-0.05+0.05)% from HFO-1225ye(Z), and (0.12-0.01+0.04)% from HFO-1234yf, wh
97 d the PFC-14 yield is (1.04-0.05+0.07)% from HFO-1225ye(E), (1.02-0.05+0.05)% from HFO-1225ye(Z), and
98 bar, the HFC-23 yield is (7.9-0.2+0.4)% from HFO-1234ze(E) ozonolysis, and the PFC-14 yield is (1.04-
99                 Mass transfer of (65)Cu from HFO to the diatom was less than 1%, indicating that HFO
100 minated diet and assimilation of (65)Cu from HFO was determined following 1-3 days of depuration.
101 te that even the fine particles emitted from HFO based combustion can have a significant effect on cl
102 ition metals) were significantly higher from HFO than from DF operation, at all engine loads.
103  that lead to new substitution patterns from HFO-1234yf, HFO-1234ze, and HFO-1336mzz, previously inac
104 ncentrations indicates that Pb released from HFO and PbS is retained by POM.
105 icate that although both hippocampi generate HFOs with similar features that probably reflect non-pat
106           Removal of brain tissue generating HFOs has been related to better postsurgical outcome tha
107 DNAs encoding histone H2A (HTA), histone H4 (HFO), and histone H3-11 (HTR11) displayed increased tran
108                               We studied how HFOs and spikes in combined pre- and postresection ECoG
109 nce in aquifers should be expected; however, HFO-1234yf is not inert and a biomolecule may mediate re
110 ne expression was observed when histone HTA, HFO, or HTR11 overexpression constructs were cotransfect
111                          Hydrofluoroolefins (HFOs) and hydrochlorofluoroolefins (HCFOs) are fluorinat
112                          Hydrofluoroolefins (HFOs) and hydrochlorofluoroolefins (HCFOs) are the leadi
113                          Hydrofluoroolefins (HFOs) constitute the newest generation of fluorocarbon r
114 inated olefins, known as hydrofluoroolefins (HFOs), and blends that contain HFOs.
115  of high-frequency oscillations (130-180 Hz, HFO) and behavioral activation after ketamine in freely
116  cellular correlates of interictal and ictal HFO events.
117                                 Importantly, HFO synchronization is both transiently enhanced and sup
118                                           In HFO-IEDs, many neurons are moderately activated, and som
119 ested to be explained by the metals found in HFO contributing to metal oxide particles catalyzing the
120 that single-unit firing rates were higher in HFO- than in non-HFO-IEDs.
121 ndent increases in fast sniffing and instead HFO coupling to slower basal respiration.
122                                   Interictal HFOs were recorded from hippocampal microelectrodes in 1
123    These results demonstrate that interictal HFOs are organized in networks and indicate a possible n
124         However, most research investigating HFO in humans comes from microwire recordings, whose rel
125                                     Ketamine-HFO was of larger magnitude and was phase-advanced in th
126 esults reveal the OB as a source of ketamine-HFO which can contribute to HFO in the ventral striatum,
127        It also reduced the amplitude of late HFO.
128 tality overall and for patients on NSO, LFO, HFO/NIV, and IMV/ECMO.
129                  We, retrospectively, marked HFOs, divided into fast ripples (FRs; 250-500 Hz) and ri
130                                    We marked HFOs during 1 hour of recordings.
131                                   While most HFOs were limited to single channels, approximately 10%
132 summary, our study reveals that HFO- and non-HFO-IEDs have different single-unit correlates.
133  unit's firing directly between HFO- and non-HFO-IEDs, we found that most cells had higher rates duri
134 underlying mechanisms are distinct from 'non-HFO-IEDs'.
135 ferential occurrence of HFOs, whereas in non-HFO-IEDs, there was only a mild pre-peak increase follow
136 firing rates were higher in HFO- than in non-HFO-IEDs.
137 , the utility and translation of noninvasive HFOs, although highly desirable, is impeded by the diffi
138 trials, is needed to confirm the benefits of HFO in apnea testing.
139 ygroscopic even as fresh and, in the case of HFO+LFO emulsion, the hygroscopic growth of the particle
140 ch may leak to the atmosphere-in the case of HFO-1336mzz(Z), for example, the ozone-depleting CFC-113
141                            Theta coupling of HFO bursts were also found in the prefrontal cortex and
142  especially during the first several days of HFO.
143 , we applied a fully automated definition of HFO that was independent of the dataset.
144       Sequential reductive defluorination of HFO-1234yf to 3,3,3-trifluoropropene and 3,3-dichloropro
145 y range, compared to a broad distribution of HFO frequencies recorded from microwires.
146                          The distribution of HFO frequencies recorded from the macroelectrodes was co
147 term study of the lung-protective effects of HFO-PLV.
148 water emulsion of HFO, and water emulsion of HFO mixed with light fuel oil (LFO).
149 he studied fuels were HFO, water emulsion of HFO, and water emulsion of HFO mixed with light fuel oil
150 y bulb (OB) is a locus for the generation of HFO following a subanesthetic dose of ketamine.
151 ume recruitment with HFOV, the initiation of HFO-PLV was best tolerated with the two lower doses in o
152                         Early institution of HFO at 15 Hz in meconium aspiration may exacerbate air t
153 ts as ENE-HFO and ENE-CV based on receipt of HFO at any time.
154  was consistent with the OB as the source of HFO.
155                                 The study of HFO in large animal models has been essential to our und
156     Modification of the goals and tactics of HFO use may better protect against ventilator-associated
157 ffects on patient outcome of the best use of HFO compared to the most protective use of conventional
158       This contrasts with the typical use of HFO in adults, in which frequencies generally do not exc
159 , we show that the consistent concurrence of HFOs with epileptiform spikes (pHFOs) provides a tractab
160                 However, the distribution of HFOs during seizures remains undefined.
161 l extent, classification and distribution of HFOs using a dense 4 x 4 mm(2) two dimensional microelec
162 derlying the emergence of these two forms of HFOs by combining multisite, single-cell and paired-cell
163  and effects of normal and abnormal forms of HFOs have been controversial.
164 ion results in the emergence of two forms of HFOs reminiscent of ripples and fast ripples recorded in
165 nical and pathophysiological implications of HFOs within the frontal cortical region are unclear and
166 is was supported by optogenetic induction of HFOs in LS.
167 oincided with the preferential occurrence of HFOs, whereas in non-HFO-IEDs, there was only a mild pre
168 reviously been reported, and the presence of HFOs during absence seizures is a novel finding.
169               Furthermore, the production of HFOs involves climate-active substances, which may leak
170  to resecting channels with highest rates of HFOs.
171  a cognitive task, significant reductions of HFOs rates were found in epileptic hippocampi.
172 wed us to validate the clinical relevance of HFOs to plan the surgical resection.
173                            The similarity of HFOs properties recorded at rest in epileptic and non-ep
174             Despite such clinical utility of HFOs, the spatial context and neuronal activity underlyi
175 spectively evaluated the predictive value of HFOs for developing epilepsy in scalp electroencephalogr
176 ine engine, operated on both heavy fuel oil (HFO) and distillate fuel (DF), was studied under various
177 2 +/- 0.04 gkW(-1) h(-1) for heavy fuel oil (HFO) containing 2.51 wt % sulfur.
178                              Heavy fuel oil (HFO) is a commonly used fuel in industrial heating and p
179 nd to be more effective with heavy fuel oil (HFO) than with light fuel oil.
180  Furthermore, switching from heavy fuel oil (HFO) to ultra-low-sulfur fuel oil (ULSFO) greatly reduce
181 nvestigated, namely, diesel, heavy fuel oil (HFO), and very low sulfur fuel oil (VLSFO).
182 by the unintended release of heavy fuel oil (HFO).
183 nents abundant in crude and heavy fuel oils (HFOs) as well as transformation products.
184 ironmental impacts of scrubbers operating on HFO to those of low-S fuels across various categories, t
185 vestigated the impact of a cognitive task on HFOs with the aim of improving differentiation between e
186 en volunteers underwent cMRI both in an open HFO and in a cylindrical MR system.
187 ile the association between HA and SiO(2) or HFO inhibited U desorption.
188 were then randomized to CV, HFO at 10 Hz, or HFO at 15 Hz.
189 und that interactions between HAs and ZnO or HFO greatly inhibited the sorption of U onto colloids in
190 n promoted crystallization of poorly ordered HFO and decreased particle specific surface area, with s
191 , three-dimensional heart-forming organoids (HFOs) by embedding human pluripotent stem cell aggregate
192 urces within the high-frequency oscillation (HFO) bandwidth (70-150Hz) localized primarily to the fro
193 ntial utility of high-frequency oscillation (HFO) has been acquired in animal studies.
194  between LFP and high-frequency oscillation (HFO) signals closely resembled the relationships between
195 CILLATE trial of high-frequency oscillation (HFO) versus conventional ventilation (CV) in adults with
196    The timing of high-frequency oscillation (HFO), which was sometimes present in the correlations, w
197                 High-frequency oscillations (HFO) characteristic for the adult inspiratory nerve acti
198 mplitude of the high frequency oscillations (HFO) seen during the expulsion phase were markedly reduc
199 h suggests that high-frequency oscillations (HFO), in the ripple (80-250 Hz) and fast ripple (250-100
200 and the area of high-frequency oscillations (HFO).
201 -frequency neuronal population oscillations (HFO, 130-180 Hz) are robustly potentiated by subanesthet
202 rally locked to high-frequency oscillations (HFOs) (120-180 Hz) in LS, with strongest coupling during
203                 High-frequency oscillations (HFOs) are a promising biomarker for localizing epileptog
204                 High frequency oscillations (HFOs) are bursts of neural activity in the range of 80 H
205 pileptic spikes high frequency oscillations (HFOs) are important biomarkers of epileptogenic tissue.
206                 High frequency oscillations (HFOs) are newer biomarkers for epileptogenesis.
207     Hippocampal high-frequency oscillations (HFOs) are prominent in physiological and pathological co
208 that 100-400 Hz high-frequency oscillations (HFOs) may be synchronized between widely distributed bra
209                 High-frequency oscillations (HFOs) may synchronize neural activity during these proce
210 at pathological high-frequency oscillations (HFOs), called fast ripples (FR, 150-500Hz), reflect abno
211      Interictal high frequency oscillations (HFOs), in particular those with frequency components in
212 ptic spikes and high-frequency oscillations (HFOs).
213    In epilepsy, high-frequency oscillations (HFOs, >80Hz) have proven particularly important and usef
214       Transient high-frequency oscillations (HFOs; 150-600Hz) in local field potentials generated by
215 ral dynamics of high-frequency oscillations (HFOs; 200-500 Hz) and single neurons, potentially compro
216                 High-frequency oscillations (HFOs; 80-500 Hz) are thought to mirror the pathophysiolo
217                 High-frequency oscillations (HFOs; 80-500 Hz) seem better biomarkers for epileptogeni
218 ition to adsorption to hydrous ferric oxide (HFO) and clay.
219 f Fe(II) adsorbed onto hydrous ferric oxide (HFO) has been studied using ferrocene (bis-cyclopentadie
220 tion to coprecipitated hydrous ferric oxide (HFO) in the binuclear, bridging ((2)C) complex.
221 colloidal SiO(2), ZnO, hydrous ferric oxide (HFO) or humic acids (HAs) as well as heterogeneous suspe
222 e (P) and the reactive hydrous ferric oxide (HFO) sorbent.
223 to synthetic colloidal hydrous ferric oxide (HFO) was evaluated from the assimilation of (65)Cu by tw
224 solutions by means of hydrated ferric oxide (HFO)-treated sugarcane bagasse (SCB-HFO) (Saccharum offi
225 n to the reduction of hydrous ferric oxides (HFO) or anthraquinone-2,6-disulfonate (AQDS), an analog
226 g compounds increased relative to the parent HFO, likely from bio- and photodegradation.
227                                 Pathological HFOs, such as FR, may provide a reliable surrogate marke
228 e difficulty in differentiating pathological HFOs from nonepileptiform high-frequency activities and
229 s a tractable means to identify pathological HFOs automatically, and this in turn demarks an epilepti
230 ptic correlates of two types of pathological HFOs in humans and have important implications for clini
231 ction overlap in frequency with pathological HFOs.
232 OM, coupled with the formation of PbS and Pb-HFO, maintains dissolved Pb concentrations below 17 ug L
233 ditions, Pb-bearing Fe(III)-(hydr)oxides (Pb-HFO) and sulfides (PbS) are dissolved and (re)precipitat
234               They differ from physiological HFOs in not being paced by rhythmic inhibitory activity
235 owever, has been the fact that physiological HFOs associated with normal brain function overlap in fr
236                                    To record HFOs, the intracranial EEG needs to be sampled at least
237                            Here, we recorded HFOs in slices of the subiculum prepared from human hipp
238 OB, current source density analysis revealed HFO current dipoles close to the mitral layer and unit f
239 , supporting the hypothesis that fast-ripple HFO are primarily generated by highly localized, sub-mil
240                       Ripple and fast-ripple HFO recorded from both microwires and clinical macroelec
241                                  Fast-ripple HFO were most often recorded on a single microwire, supp
242              The average frequency of ripple HFO recorded from macroelectrodes was lower than that re
243 while a bulk carrier vessel was burning 3% S HFO, 0.1% S marine gas oil (MGO), and 0.5% S very low-S
244                  We propose that large-scale HFOs, rather than the more frequent highly focal events,
245 c oxide (HFO)-treated sugarcane bagasse (SCB-HFO) (Saccharum officinarum L.) was investigated.
246               The adsorption capacity of SCB-HFO for As(V) was found to be 22.1 mg/g under optimum co
247 m the solution phase onto the surface of SCB-HFO.
248 ion influenced the removal efficiency of SCB-HFO.
249  defining the neuronal correlate of specific HFO frequency bands could improve electroencephalographi
250 for HFO, 60% for Spikes, and 79% for Spike + HFO.
251         In patients with propagating spikes, HFO rate was maximal at the onset of spike propagation.
252  imaging in 2,081 individual events (spikes, HFOs, and seizures) from a cohort of 42 fDRE patients, c
253                                  In summary, HFO morphology is altered by anesthesia.
254 med brain death via the standard apnea test, HFO yielded consistent diagnostic results while maintain
255 ydrofluoroolefin 2,3,3,3-tetrafluoropropene (HFO-1234yf) has been introduced to replace 1,1,1,2-tetra
256 rated higher elemental carbon emissions than HFO at typical load points (50% and 75%) for marine oper
257       These investigations demonstrated that HFO-1234yf was recalcitrant to microbial (co)metabolism
258 the diatom was less than 1%, indicating that HFO was the source of (65)Cu to the grazers.
259 olecular-level characterizations reveal that HFO interacted with HAs by electrostatic interactions, a
260           In summary, our study reveals that HFO- and non-HFO-IEDs have different single-unit correla
261                     These findings show that HFO synchronization constitutes a functionally significa
262 es, given identical compliance, suggest that HFO at 15 Hz resulted in greater large airway obstructio
263  Taken together, these findings suggest that HFO-1234yf recalcitrance in aquifers should be expected;
264  in the current study supports the fact that HFOs might significantly improve the presurgical assessm
265                  Additionally, we found that HFOs were commonly associated with widespread interictal
266 ving the seizure onset zone, indicating that HFOs may mark cortex that needs to be removed to achieve
267 the two structures were low, suggesting that HFOs are generated locally within the LS GABAergic popul
268  segments were recorded: 6/960 (0.6%) by the HFO and 17/960 (1.8%) segments by the cylindrical system
269 urons with a significant increase during the HFO component or ascending part, but almost none with a
270 rt, both power and deltaP were higher in the HFO at 15 Hz group (p< .001).
271 ith both CV and HFO at 10 Hz, the TGV in the HFO at 15 Hz group was significantly higher following ra
272 ine sequence was significantly higher in the HFO platform compared to the 1.5T MR scanner (0.685+/-0.
273           SNR was significantly lower in the HFO scanner (all p<0.001).
274 ke propagation, the spike onset included the HFO area.
275             Among seizure-free patients, the HFO area was completely resected in 31 and not completel
276  Among patients with recurrent seizures, the HFO area was completely resected in 14 and not completel
277                               Therefore, the HFO frequency band reflects a range of firing dynamics o
278 ghly focal events, are the substrates of the HFOs detected by clinical depth electrodes.
279 ver multiple epochs, they were labelled the 'HFO area'.
280 f channels as the median delay between their HFOs and constructed a time line of the delay of each ch
281             Here, we aimed to dissect these 'HFO-IEDs' at the single-neuron level, hypothesizing that
282 l spikes with HFO had comparable accuracy to HFO.
283 urce of ketamine-HFO which can contribute to HFO in the ventral striatum, known to project diffusely
284 g of mitral/tufted cells was phase locked to HFO.
285 each steady-state when switching from MGO to HFO and approximately 84 min in the opposite direction.
286 r epileptogenic zone compared to traditional HFOs.
287 leptogenic zone when compared to traditional HFOs.
288 ) indicating that biomolecules can transform HFO-1234yf at circumneutral pH and at ambient temperatur
289 ll yield a smaller tidal volume than typical HFO settings where frequency is limited to 6 Hz or less
290 lts can maintain adequate gas exchange using HFO frequencies well above 5-6 Hz.
291  for high-frequency oscillatory ventilation (HFO) in adults provide acceptable gas exchange but may n
292 ], high-flow oxygen/noninvasive ventilation [HFO/NIV], and invasive mechanical ventilation/extracorpo
293                       The studied fuels were HFO, water emulsion of HFO, and water emulsion of HFO mi
294  < 0.001), spike-gamma (P < 0.001), wideband HFOs (P < 0.001), ripples (P = 0.009) and fast ripples (
295 0.12), spike-gamma (69%, P = 0.12), wideband HFOs (63%, P = 0.03), ripples (45%, P = 0.01) or fast ri
296 ue better than spikes, spike-gamma, wideband HFOs, ripples and fast ripples.
297                                         With HFO's inherent low tidal volumes, progression of meconiu
298 with the T-piece and 71.3 +/- 6.0 mm Hg with HFO.
299             Combining interictal spikes with HFO had comparable accuracy to HFO.
300 stribution matrixes, electrode contacts with HFOs and VHFOs were detected and analyzed.

 
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