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1 ibiotics than those grown in MWP without the continuous flow.
2 been developed using photoredox catalysis in continuous flow.
3 ective acoustic impedance of single cells in continuous flow.
4 ual catalysis, has been developed for use in continuous flow.
5 DMSO allowed the protocol to be performed in continuous flow.
6 or 5 muL samples analyzed within 5 min under continuous flow.
7  L-proline derivative at room temperature in continuous flow.
8 13)C and heteronuclear NMR experiments under continuous flow.
9 es between the grains, preventing smooth and continuous flows.
10                             We demonstrate a continuous-flow acoustophoretic separation of 300 and 10
11                                              Continuous flow analysis (CFA) has become widely used fo
12                           The combination of continuous flow and a stationary magnet enables a degree
13                                          The continuous-flow and fully automated operation of this na
14 tion phage and host cells, the assembly of a continuous flow apparatus and the performance and analys
15 e describe the assembly and use of a modular continuous flow apparatus from readily available and aff
16 be introduced into a mass spectrometer via a continuous flow apparatus or through a pulsed inlet syst
17 namide as a catalytic cosolvent for biphasic continuous-flow applications.
18                                         This continuous flow approach overcomes catalyst deactivation
19 oligosaccharides (FOS) was developed using a continuous-flow approach based on an immobilized whole c
20 ked enzyme crystals (CLECs), able to work in continuous flow, as a highly sensitive, robust, reusable
21 ration factor of 10 in human blood plasma in continuous flow at a flow rate of 15 muL min(-1).
22  ITP-based surface hybridization to standard continuous flow-based hybridization and experimentally d
23  also experiments can easily be performed in continuous flow because of the stripline's favorable geo
24                                           In continuous flow biocatalysis, chemical transformations c
25 N(-) loadings, we established and operated a continuous-flow bioreactor fed increasing loadings of SC
26                                              Continuous-flow bioreactors were commissioned and tested
27 es into zones opens up new opportunities for continuous-flow biosynthesis.
28 platelet deposition and thrombus growth in a continuous flow blood pump and thereby replicate pattern
29 a centrifugal, fully magnetically levitated, continuous-flow blood pump engineered to enhance hemocom
30                        This work discloses a continuous flow carbonylation reaction using iron pentac
31 ts were performed in batch (dip-and-dry) and continuous (flow-cell) processes, and binding performanc
32 c scans may be predictive of mortality after continuous flow (CF) left ventricular assist device (LVA
33                       Increasingly, however, continuous flow (CF) mode is being used, in which reacta
34 ere we report the development of a multistep continuous-flow CGMP (current good manufacturing practic
35                                              Continuous flow chemistry has improved efficiency in the
36 d most relevant developments in the field of continuous flow chemistry with the focus on hazardous re
37 s light radiation to initiate reactions; and continuous flow chemistry, which is increasingly used to
38 ysiological effects of long-term exposure to continuous-flow circulatory support are highlighted, as
39                                         This continuous-flow cluster chip will enable further studies
40 a cryogenic purge and trap system coupled to continuous flow compound-specific stable carbon isotope
41 mides from sulfinamides under both batch and continuous flow conditions is described.
42 alytic N-arylation of alkynyl anilines under continuous flow conditions with a subsequent base-mediat
43 hat allows one to record transition times in continuous flow conditions without the necessity to stop
44  showed a dramatic drop after FI compared to continuous flow conditions.
45 esults were compared to those obtained under continuous flow conditions.
46 diborylarenes on gram scales under batch and continuous flow conditions.
47 hallenges by growing 2D COF thin films under continuous flow conditions.
48                                        Under continuous-flow conditions, highly controlled polymeriza
49  stress, adhesion to endothelial cells under continuous-flow conditions, increased permeability of en
50 ce of the three-dimensional structures under continuous-flow conditions.
51  aziridinations can be easily achieved under continuous-flow conditions.
52 ium triflates was achieved using a practical continuous-flow design.
53 chlorodifluoromethane (ClCF(2) H) gas in the continuous flow deuteriodifluoromethylation and gem-difl
54 er, knowledge about these differences in the continuous-flow device era is limited.
55 r-sized droplets with enzyme substrates in a continuous-flow device.
56 ces have been replaced with newer-generation continuous-flow devices.
57        We describe the benefits of an online continuous flow differential electrochemical mass spectr
58               Here we propose a barcode-free continuous flow droplet microfluidic platform to suit th
59                                 We present a continuous-flow droplet-based digital Enzyme-Linked Olig
60 y, we utilize Nernst-Planck based models for continuous flow ED and constant-current membrane capacit
61 perature in batch and flow, we conclude that continuous flow electrolysis is superior to batch, produ
62                                              Continuous-flow electrophoresis (CFE) separates a stream
63               Here we present a microfluidic continuous-flow electrotransfection device designed for
64                 This methodology operates in continuous flow, enhancing the potential to translate be
65  CI, 1.45-3.10; P<0.0001) but not during the continuous-flow era (1.18; 0.93-1.48; P=0.16).
66 46.9% versus 31.1%, P<0.0001) but not in the continuous-flow era (13.3% versus 12.1%, P=0.27; P for i
67 ophyllene), were investigated in a series of continuous flow experiments in a 10 m(3) indoor Teflon c
68                               We evaluated a continuous-flow external ventricular assist device (VAD)
69 ponse to a one unit pH shift in experimental continuous flow fermentors inoculated with human faecal
70                           Lab-scale test and continuous-flow field tests using real municipal wastewa
71 fined mode for a finite volume of liquid and continuous flow for scalability purposes.
72                      These results show that continuous flow has the potential to act as a new enabli
73                      This technique performs continuous-flow, high throughput affinity-separation of
74                      This technique performs continuous-flow, high throughput size based sorting of m
75                              In this work, a continuous-flow, high-throughput, automated C. elegans a
76 detection allows TDA to be carried out under continuous flow in the volume between the detection poin
77 rbon isotopic signatures were measured using continuous flow isotope ratio mass spectrometry.
78                                       Use of continuous flow leads to isolation of the desired compou
79 ective review of all patients supported by a continuous flow left ventricular assist device (Heart Ma
80            However, CRT management following continuous flow Left Ventricular Assist Device (LVAD) im
81 ce and management of AI in 232 patients with continuous flow left ventricular assist device at our in
82 d for at least 30 days and </=18 months by a continuous flow left ventricular assist device from June
83 In a population at risk, higher DOPBP during continuous flow left ventricular assist device support w
84 e substantial morbidity and mortality during continuous flow left ventricular assist device support y
85 or angiotensin receptor blocker usage during continuous flow left ventricular assist device support,
86 Hematologic adverse events are common during continuous flow left ventricular assist device support;
87 and in patients undergoing implantation of a continuous flow left ventricular assist device.
88 estinal bleeds (GIB) and AVM-related GIBs in continuous-flow left ventricular assist device (CF-LVAD)
89 on in pulsatility after implementing durable continuous-flow left ventricular assist device (CF-LVAD)
90 ist device (RVAD) use in patients undergoing continuous-flow left ventricular assist device (LVAD) su
91 trointestinal angiodysplasia develops during continuous-flow left ventricular assist device (LVAD) su
92 s one of the most common complications after continuous-flow left ventricular assist device implantat
93 s used to identify adult patients undergoing continuous-flow left ventricular assist device implantat
94 he setting of suspected device thrombosis in continuous-flow left ventricular assist device patients
95 ication of antithrombotic therapy identifies continuous-flow left ventricular assist device patients
96       A retrospective review of Heartmate II continuous-flow left ventricular assist device patients
97 icenter, retrospective analysis evaluated 51 continuous-flow left ventricular assist device patients
98  changes (200-400 revolutions per minute) in continuous-flow left ventricular assist device pump spee
99                                Patients with continuous-flow left ventricular assist device receiving
100 uality of life and survival of patients with continuous-flow left ventricular assist devices (CF-LVAD
101 botic and bleeding outcomes in patients with continuous-flow left ventricular assist devices (CF-LVAD
102                                              Continuous-flow left ventricular assist devices (LVADs)
103 e most common adverse event in patients with continuous-flow left ventricular assist devices (LVADs)
104 he structure of the aorta from patients with continuous-flow left ventricular assist devices (LVADs)
105          Conveying the complex trade-offs of continuous-flow left ventricular assist devices is chall
106           Estimated actuarial survival after continuous-flow left ventricular assist devices ranged f
107  3 women (54 +/- 14 years) with Heartmate II continuous-flow left ventricular assist devices underwen
108                          Among subjects with continuous-flow left ventricular assist devices, the res
109  49/367 patients implanted with Heartmate II continuous-flow left ventricular assist devices.
110                                              Continuous-flow left ventricular assist systems increase
111               In this Letter, we demonstrate continuous-flow liquid microjunction mass spectrometry i
112          Mass spectrometry imaging by use of continuous-flow liquid microjunction sampling at discret
113                                              Continuous-flow liquid phase oxidation chemistry in micr
114 tion of noninvasive pressure-volume loops in continuous-flow LV assist device patients and demonstrat
115 ment of left ventricular (LV) recovery under continuous-flow LV assist device therapy is hampered by
116 Assisted Circulatory Support) who received a continuous flow LVAD after 2012.
117  CRT versus turning off CRT pacing following continuous flow LVAD implantation.
118                                    Of 11 544 continuous flow LVAD recipients, 1199 (10.4%) received p
119 an age, 58.3+/-8.0 years), 7 patients with a continuous-flow LVAD (HF+LVAD group: mean, 57.7+/-5.6 ye
120 sed humans, cows, and sheep supported with a continuous-flow LVAD (n=9 LVAD, n=11 control).
121                                        Among continuous-flow LVAD patients without aortic valve openi
122         Of the 16 362 patients who underwent continuous-flow LVAD placement, 906 (5.5%) required prei
123                            A total of 15 403 continuous-flow LVAD recipients were included.
124 gh-volume implantation centers, totaling 295 continuous-flow LVAD recipients with >/=2 cholesterol va
125                                Initiation of continuous-flow LVAD support was associated with signifi
126 gastrointestinal vascularity develops during continuous-flow LVAD support.
127 NICM, n = 93) requiring durable support with continuous-flow LVAD were prospectively evaluated with s
128 ifty-eight male patients-18 implanted with a continuous-flow LVAD, 16 patients with LVAD explanted (r
129 n patients, cows, and sheep supported with a continuous-flow LVAD.
130 indings in multiple species supported with a continuous-flow LVAD.
131                  METHODS AND A single-center continuous flow-LVAD database (n=354) was used to identi
132                  Of 9976 patients undergoing continuous-flow-LVAD implantation, 386 patients (3.9%) r
133 ed Circulatory Support who underwent primary continuous-flow-LVAD surgery were examined for concurren
134               With the introduction of newer continuous flow LVADs, with lower morbidity, neurologica
135 nts of adult patients implanted with durable continuous-flow LVADs as bridge to transplant, destinati
136 models are derived in cohorts implanted with continuous-flow LVADs exclusively and exhibit modest dis
137 8%) were conducted in cohorts implanted with continuous-flow LVADs exclusively.
138  Circulatory Support who were implanted with continuous-flow LVADs from 2008 to 2016.
139 ization protocol employed a phase separation/continuous flow manifold whose advantages include cataly
140 C was loaded into the injection valve of the continuous flow manifold.
141 isecting single Stentor coeruleus cells in a continuous-flow manner.
142           So it can be beneficial to perform continuous flow measurements in this setup for analysis
143  Persistent low-level hemolysis (LLH) during continuous-flow mechanical circulatory support is associ
144 analysis (1 measure every 2 s), the CF-MIMS (Continuous Flow Membrane Inlet Mass Spectrometer) is an
145  inter-reaction solvent exchange achieved by continuous flow membrane units.
146  exposure to CO2, we demonstrate a scalable, continuous flow, membraneless particle filtration proces
147                                            A continuous-flow method for the regioselective arylation
148                                   The use of continuous-flow methods has allowed the deprotonation of
149 s B core and surface antigens in cascades of continuous flow microbial fuel cells.
150 cused study of bead magnetophoresis inside a continuous-flow microchannel in order to provide a detai
151 driven Ru(bpy)3(PF6)2 catalyzed photocascade continuous flow microfluidic approach that involves the
152 we present an interactive tool for designing continuous flow microfluidic devices.
153 e apply these principles toward developing a continuous flow microfluidic platform that enables trans
154                          Here, an integrated continuous-flow microfluidic assay is developed to effec
155                                        Using continuous-flow microfluidic mixing, we have now observe
156                                              Continuous-flow, microfluidic reactions in capillary tub
157 e of a microfluidic NMR chip hyphenated to a continuous-flow microreactor and is based on the capabil
158 se in miniaturized stirred batch reactors or continuous flow microreactors.
159 pects of liquid phase oxidation chemistry in continuous-flow microreactors is given.
160  evaluated the effect of an industrial scale continuous flow microwave volumetric heating system in c
161 de (alpha-MoC(1-x)) nanoparticles (NPs) in a continuous flow millifluidic reactor.
162                         The development of a continuous flow multistep strategy for the synthesis of
163                Monitoring is enabled using a continuous-flow nanoelectrospray (CF-nESI) probe contain
164 id structures from different precursors, and continuous-flow nanomanufacturing with the potential for
165  flexible particle focusing and switching in continuous flow of a microfluidic system.
166 h single- and double-analyte solutions under continuous flow of buffer.
167 gas is transferred through the membrane to a continuous flow of high purity nitrogen, which is then m
168  and the elongation of these fibrils under a continuous flow of monomer solution (rate approximately
169  being routinely updated to keep up with the continuous flow of new data in GenBank and RefSeq.
170 rs incubation with fresh nutrients in MWP or continuous flow of nutrients in DFR.
171 terized by the absence and the presence of a continuous flow of nutrients, respectively.
172 Xe production and should allow for on-demand continuous flow of purified and highly spin-polarized (1
173 ion of perception.SIGNIFICANCE STATEMENT The continuous flow of sensory input is not processed in an
174                 The plasmonic signals from a continuous flow of single-cell droplets are collected by
175 an ambient ionization technique based on the continuous flow of solvent using an in situ microextract
176 uction of the platform is designed such that continuous flow of sweat can pass through an array of fl
177 nected to commercial technical pens to allow continuous flow of the ink, thereby increasing the print
178 l flow rate of 10 muL/min was selected for a continuous flow of warm media,and 10 muM drug administra
179 are fractionated into numerous droplets in a continuous flowing oil phase.
180 y a vinylogous Mannich reaction performed in continuous flow on chip.
181                 However, achieving efficient continuous-flow operation and size-based fractionation o
182 s required for its seamless integration with continuous flow organic synthesis in flow chemistry.
183 the functionalized bicyclo[2.2.2]octenone, a continuous-flow oxa-di-pai-methane rearrangement for bui
184 ile outside the home and require >3 L/min of continuous-flow oxygen during exertion (very-low-quality
185    Implementation of the PBT-2 catalyst in a continuous-flow packed-bed reactor achieved nearly 60000
186 nished charge transfer resistance, the all-V continuous-flow PESC was capable of producing 20% gain i
187  to high budget thermal one, stability under continuous flow, pH dependency and bias stress effects o
188               In addition, the advantages of continuous-flow photochemistry are pointed out and a tho
189                                              Continuous-flow photochemistry in microreactors receives
190 Here we demonstrated an all-vanadium (all-V) continuous-flow photoelectrochemical storage cell (PESC)
191  nanocrystalline suspension in water using a continuous flow photoreactor shows that the large-scale
192                                    The first continuous flow pinacol coupling reaction of carbonyl co
193 agnetic bead actuation for DNA analysis in a continuous flow platform with minimal technical requirem
194 ecipe files, which are executed by a modular continuous-flow platform that is automatically reconfigu
195                                     Although continuous flow platforms are commercially available, sy
196    The translation of batch chemistries onto continuous flow platforms requires addressing the issues
197                            The employment of continuous-flow platforms for synthetic chemistry is bec
198  is a growing interest in the development of continuous-flow procedures aiming at increasing the perf
199 h process was successfully translated into a continuous flow process allowing efficient preparation o
200                         The development of a continuous flow process for the multistep synthesis of a
201                                            A continuous flow process is presented, which directly con
202       The reaction is also demonstrated in a continuous flow process to afford the rearranged product
203 e reagents, an efficient and high-throughput continuous flow process was developed to perform a dual
204   This KR procedure was also translated to a continuous-flow process using a polymer-supported varian
205 he polymer morphology, a relevant metric for continuous flow processes.
206 olutions were used in two distinct multistep continuous-flow processes (amidation and Mg-I exchange/n
207 was shown to be a transformation amenable to continuous flow processing allowing for a dramatic reduc
208 of this synthesis expand the capabilities of continuous-flow processing, including a Friedel-Crafts a
209 ated excellent stability during five days of continuous-flow processing.
210        Towards multi-step transformations in continuous flow, proteins were arrayed as ordered zones
211                                            A continuous flow protocol for the direct stoichiometric e
212                                 An efficient continuous flow protocol has been developed for bond C-H
213                       To address this, a new continuous flow protocol was developed that eliminates t
214       The demonstrated detection range under continuous flow proved compatible with interstitial flui
215 ailure to receive either the new centrifugal continuous-flow pump or a commercially available axial c
216                        Recent innovations in continuous-flow pump technology have not only contribute
217  of a new magnetically levitated centrifugal continuous-flow pump that was engineered to avert thromb
218 -flow pump or a commercially available axial continuous-flow pump.
219                                 We develop a continuous-flow Raman electrochemical cell that enables
220 ching were addressed by designing a suitable continuous flow reaction setup for both types of transfo
221              Process intensification through continuous flow reactions has increased the production r
222               Smaller batch and larger-scale continuous-flow reactions require only a limited amount
223 ene and propene) or higher hydrocarbons in a continuous flow reactor below 375 degrees C over H-SAPO-
224                                            A continuous flow reactor is described that allows efficie
225  reaction can be successfully adapted into a continuous flow reactor which is applicable for large-sc
226 d Phoenix high-temperature and high-pressure continuous flow reactor.
227 ntal precursor concentrations (2.4 ppb) in a continuous flow reactor.
228      The intensification of the process in a continuous-flow reactor increases the products' yields u
229 n of methane to methanol over Cu-SSZ-13 in a continuous-flow reactor.
230 ctions to industrial-production scales using continuous-flow reactors has become a topic of increasin
231          Finally, the scale-up potential for continuous-flow reactors is described.
232 hly active organic catalysts with programmed continuous-flow reactors to rapidly generate libraries o
233 RP, the combination of PC, implementation of continuous-flow reactors, and promotion of deactivation
234 is given of photochemical transformations in continuous-flow reactors, including applications in orga
235 kocytes from platelet-rich plasma (PRP) in a continuous flow regime.
236                                              Continuous flow requires local remodeling through crossl
237                        Focus was placed on a continuous-flow sand-packed column in which a uniform di
238 iscovery scale vial-based batch reactions to continuous flow scale-up conditions.
239  performing this decarboxylative reaction in continuous flow, scale-up of the reaction could be achie
240  from simple starting blocks by a convergent continuous flow sequence involving seven (7) chemical tr
241  tested under highly resistive media using a continuous flow set up, as well as when subjecting it to
242          Application of the methodology in a continuous-flow setup achieves comparable yields to thos
243 onditions, cascade processes in one-pot, and continuous flow setups.
244                      We demonstrate herein a continuous-flow shape-based separation of spherical and
245   The model was then transposed to long-term continuous flow simulations using the software PHREEQC.
246 nfinity-corrected reflective objective and a continuous flow solvent probe coupled to a Fourier trans
247                      We propose the use of a continuous-flow sorting strategy to facilitate future co
248        Because silent gaps are not common in continuous flowing speech, the cognitive/linguistic rest
249 e significantly reduced compared to standard continuous flow spotting technologies as well as in comp
250                         The phase separation/continuous flow strategy afforded similar yields at 100-
251                           A phase separation/continuous flow strategy employing an oxidative Glaser-H
252 imization to enable the rapid development of continuous-flow syntheses of small molecules in high yie
253         The adoption of and opportunities in continuous flow synthesis ('flow chemistry') have increa
254                                              Continuous flow synthesis enables the safe handling of d
255 eduction of CO2 for the photoredox-catalysed continuous flow synthesis of alpha-amino acids.
256                          A rapid and modular continuous flow synthesis of highly functionalized fluor
257 rolysis is participating in the trend toward continuous flow synthesis, and this has led to a number
258 sive experience of single-step and multistep continuous flow synthesis, we also describe solutions to
259  an alternative approach, we report here the continuous-flow synthesis and formulation of active phar
260                                            A continuous-flow synthesis of aziridines by palladium-cat
261 pproach are substantial enabling advances in continuous-flow synthesis, complex multistep sequence te
262 tative PCR of mRNA from biofilms from a 24-h continuous flow system demonstrated a significantly incr
263 his protocol, a nonspecialist can assemble a continuous flow system from reactor coils, syringes, pum
264  Cl(-), NO3(-) and SO4(2-) in a melter-based continuous flow system separating the three analytes in
265 ion denuder (CWEDD) and analyzed online by a continuous flow system with a fluorescence detector (FLD
266 y of stainless-steel syringes, assembly of a continuous flow system with multiple junctions, and yiel
267 ic plate sensor (PEPS) in conjunction with a continuous flow system with two temperature zones.
268 mm; feed rate, 0.4 L/d; current, 5 mA), in a continuous flow system, the CaCO(3) packed electrochemic
269    In contrast to a traditional steady-state continuous flow system, which requires upward of 5x the
270 o detect a model compound, metergoline, in a continuous flow system.
271 monstrate the dynamic monitoring of ATP in a continuous-flow system exhibiting a fast response time,
272 echanism, enabled by a specifically designed continuous-flow system for non-invasive, direct H(2) pro
273 kinetics of immune complexes' formation in a continuous-flow system using commonly available software
274                                            A continuous-flow system with timed injections was used to
275 tive medicinal chemistry strategies based on continuous flow systems coupled with automation and bioa
276                                              Continuous flow systems provide improved reaction safety
277      Although single-step transformations in continuous-flow systems are common, multi-step transform
278 ers now choose to mediate transformations in continuous-flow systems given the many benefits over rou
279       Utilizing this methodology, multi-step continuous-flow systems have improved the syntheses of a
280 ess concepts that fall under the umbrella of continuous flow technology and that could change the fut
281                        The implementation of continuous flow technology is critical towards enhancing
282 preparation, photoresponsive gel design, and continuous flow technology, are summarized.
283           In addition, the safety aspects of continuous-flow technology are discussed.
284 rol of the metalation step, made possible by continuous-flow technology, allowed for the efficient pr
285                                              Continuous flow tests are performed in two fixed-bed col
286 monstrates regeneration ability in long-term continuous flow tests.
287 nique for size fractionation of particles in continuous flow that has shown great potential for biolo
288                              We show that in continuous flow the pulse delay is determined by the rep
289 s been considered a promising technology for continuous flow thermal processing of fluid foods due to
290 dy-functionalized PANI/SPE was used in batch-continuous flow-through fashion.
291 pounds but should also be able to operate in continuous flow-through mode.
292 of alkynylanilines proceeds efficiently in a continuous flow to afford the desired products in modera
293 f (hetero)aromatics has been developed using continuous flow to generate a variety of aryl iodides.
294 tion intermediates, we have also developed a continuous flow variant of this method that is capable o
295                                              Continuous flow ventricular assist devices (cfVADs) prov
296 nal standards and reference materials run by continuous flow versus an elemental analyzer.
297                                            A continuous-flow, visible-light-promoted method has been
298  spatially segregating attached enzymes in a continuous-flow, vortex fluidic device (VFD).
299                It enables cell transfer in a continuous flow, which aids the development of an automa
300 of distinct reaction steps ever performed in continuous flow without conducting solvent exchanges or

 
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