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1 PEM acquisition geometry limits sampling statistics at t
2 PEM and bacteria deposition, and heavy metal influence,
3 PEM and MR imaging had comparable breast-level sensitivi
4 PEM decreased maternal and fetal urea concentration, whi
5 PEM had greater specificity at the breast and lesion lev
6 PEM had little measureable effect on maternal and fetal
7 PEM microchambers "cap" and "wall" thickness depend on t
8 PEM was used to map SVs in an African and in a putativel
9 PEM, the percentage of 2.5-second intervals containing p
10 PEMs from MARCO-deficient mice exhibited 2.7 times lower
13 used a 5-point confidence scale to score 232 PEM images for the presence of up to 3 malignant lesions
14 f sodium dodecyl sulfate (SDS) bilayers in a PEM comprising poly(diallyldimethylammonium chloride) (P
15 ssembly (MEA)-the power generation unit of a PEM fuel cell-or when PGM-free catalysts are integrated
19 ombe epistasis mapper' strategies, PEM-1 and PEM-2, which allow for high-throughput double mutant gen
23 ces in optimizing both cathode materials and PEMs as well as the future and peculiar challenges assoc
25 compared head to head with a platinum-based PEM under the same operating conditions (400 psi, 50 deg
27 Therefore, identifying relationships between PEM properties, water transport, and proton conductivity
28 calculated for PET/CT patients, and PUV/BGV (PEM uptake value/background value) was calculated for PE
31 of the 82 breasts were identified with both PEM and MR imaging; 21 (26%) breasts, with MR imaging on
34 itive predictive value of biopsy prompted by PEM findings (47 [66%] of 71 cases) was higher than that
37 f operating conditions of these conventional PEM materials, mesoporous functionalised SiO(2) additive
41 ic methods of patterning and controlling 3-D PEM architectures and selective particle depositions.
43 study suggests the feasibility of a low-dose PEM system in helping to detect invasive breast cancer.
45 This quantitative understanding will drive PEM design efforts towards optimal membrane transport, t
47 00 samples were analyzed for 34 gases during PEM-Tropics A, over 4,500 samples were analyzed for 58 g
49 boys and 3 girls aged 6-15 mo with edematous PEM and infection approximately 3 d after admission (stu
50 We assessed whether children with edematous PEM can mount a general APP response and compared the ki
53 were measured in 14 children with edematous PEM, aged 11.4 +/- 2 mo, and 9 children with nonedematou
55 ated GO can be built into a highly efficient PEM with a proton transfer rate of seven orders of magni
58 ore, the addition of exogenous IL-2 enhanced PEM Treg phosphorylated STAT5 signaling compared with PE
59 ork is to clarify the origin of the enhanced PEM-FC performance of catalysts prepared by the procedur
62 ransfer in polyelectrolyte multilayer films (PEM), as well as between biomolecules and redox centres,
64 R imaging and fluorine 18 fluorodeoxyglucose PEM in randomized order; resultant images were interpret
65 ially available polidocanol injectable foam (PEM, Varithena) and physician-compounded foams (PCFs).
71 r the first hour, the FGF2 concentration for PEMs assembled at pH = 4 ranged from 2.67 ng/mL to 5.76
72 s layering approaches currently employed for PEMs, reducing the production time from ~2 days down to
75 ged from 2.67 ng/mL to 5.76 ng/mL, while for PEMs assembled at pH = 5, the concentration ranged from
81 e useful as a marker for isolating the human PEM gene, which has been impervious to cloning by conven
84 ndicate that immobilizing silver-impregnated PEMs on the wound-contact surface of Biobrane significan
86 BCG-mediated protection was abrogated in PEM derived from A1-a(-/-) mice, indicating a requiremen
87 PAR mRNA or protein or both were apparent in PEM from transgenic and control mice, even at a ratio of
90 nesulfonate) (PSS) resulted in a decrease in PEM thickness, increase in pore size, and a smoother and
94 el cells, oxygen evolution reaction (OER) in PEM based water electrolysis and metal air batteries rem
99 ulating the PE deposition mass and layering, PEM membranes with tunable pore radii (0.40-0.56 nm) and
100 BRAF wild-type advanced melanoma, first-line PEM every 3 weeks followed by second-line IPI or first-l
103 n with LPS, peritoneal-elicited macrophages (PEM) from mammary tumor-bearing mice display a diminishe
104 ride (LPS), peritoneal-elicited macrophages (PEM) from mice bearing mammary tumors display alteration
108 oglycollate-elicited peritoneal macrophages (PEMs) with immobilized mAb costimulated IL-12 production
109 an elevated risk of post-exertional malaise (PEM), an acute exacerbation of symptoms and other relate
112 loss induced by protein-energy malnutrition (PEM) has been well documented, it is unclear whether the
115 nd the edema of protein-energy malnutrition (PEM) were investigated by measuring the plasma concentra
118 rpretation of positron emission mammography (PEM) images and compared image interpretation between 2
123 h-throughput and massive paired-end mapping (PEM), a large-scale genome-sequencing method to identify
124 primarily based on paired-end read mapping (PEM) as reported previously by Tuzun et al. and Korbel e
126 aliana, yellow poplar proembryogenic masses (PEMs) were transformed with three modified merA construc
129 construct a position-specific energy matrix (PEM) that allowed a reliable prediction of ArcA-P bindin
131 the ability of pediatric emergency medicine (PEM) physicians to perform a wide array of diagnostic an
135 e conventional polymer electrolyte membrane (PEM) materials for fuel cell applications strongly rely
137 such as in acidic proton exchange membrane (PEM) electrolyzers and photoelectrochemical cells (PEC).
138 energies, such as proton exchange membrane (PEM) electrolyzers and solar photoelectrochemical (PEC)
139 nce of OER-related proton exchange membrane (PEM) electrolyzers, ORR-related PEM fuel cells, NRR-driv
140 In a mainstream proton exchange membrane (PEM) fuel cell, platinum-group-metal (PGM)-based catalys
141 e devices, such as proton-exchange membrane (PEM) fuel cells (PEMFCs) and redox flow batteries (RFBs)
142 AAEM fuel cells to proton-exchange membrane (PEM) fuel cells and elucidate the sources of various ove
143 reaction (ORR) in proton exchange membrane (PEM) fuel cells, oxygen evolution reaction (OER) in PEM
146 fuel cells a novel proton exchange membrane (PEM) using inorganic phosphotungstic acid (HPW) as proto
147 e catalyst and the proton exchange membrane (PEM), have proven to be particularly demanding to overco
151 dely used polymer for electrolyte membranes (PEMs) in fuel cells, consists of a fluorocarbon backbone
153 M), ionomers, polymer electrolyte membranes (PEMs), and electrode structures designed for use in next
156 , using the phasic electromyographic metric (PEM), in relation to clinical features of idiopathic Par
162 ssemblies in the polyelectrolyte multilayer (PEM) can lead to significant performance enhancement of
164 modified using a polyelectrolyte multilayer (PEM) coating procedure in open-tubular capillary electro
166 ayer assembly of polyelectrolyte multilayer (PEM) films represents a bottom-up approach for re-engine
167 x (PPC) within a polyelectrolyte multilayer (PEM) was developed as the test line by complexing polyst
169 e compared with polyelectrolyte multilayers (PEM) thin films having array of hollow microchambers pro
170 itosan-alginate polyelectrolyte multilayers (PEM) with and without adsorbed Br(2)Y were analyzed by l
171 nanometer-thick polyelectrolyte multilayers (PEMs) impregnated with silver nanoparticles have been sh
172 Photoreactive polyelectrolyte multilayers (PEMs) that dissolve upon UV irradiation are described.
173 port the use of polyelectrolyte multilayers (PEMs) to alter the surface charge and control the direct
174 e, we have used polyelectrolyte multilayers (PEMs) to alter the surface of microchannels fabricated i
176 le, nanoscale 'polyelectrolyte multilayers' (PEMs) on the luminal surfaces of flexible catheters, and
177 Children with edematous and nonedematous PEM had higher plasma concentrations of 4 of 5 APPs in p
179 4 +/- 2 mo, and 9 children with nonedematous PEM, aged 10.1 +/- 1.4 mo, at 3 times: approximately 2 d
184 s work presents a 3D culture model and novel PEM coating procedure that enhances viability, maintains
186 the first successful in vivo application of PEM-engineered cells, which maintained viability and fun
193 s have addressed the potential influences of PEM on the immunogenicity and protective efficacy of avi
195 and "wall" thickness depend on the number of PEM bilayers, while the "cap" and "wall" of the PEC micr
201 t the rational engineering of a new class of PEMs with modular biological functionality and tunable p
203 disruption and facilitates the deposition of PEMs on cell surfaces that are tailorable in composition
204 nal Institutes of Health, the readability of PEMs in intensive and critical care societies is relativ
207 he created m-dPEG acid monolayer patterns on PEMs act as resistive templates, and thus further deposi
211 ptive statistics were used to compare online PEMs by organization based on national guidelines for re
216 d by only MR findings in five women, by only PEM findings in one, and by PEM and MR findings in five.
217 ntact printing of m-dPEG acid molecules onto PEM films to determine the optimal conditions for these
222 rmation of three-dimensional (3-D) patterned PEM films or selective particle depositions atop the ori
223 he formation of three-dimensional, patterned PEMs with high fidelity, micron-scale features by using
224 immune checkpoint inhibitors-pembrolizumab (PEM), nivolumab (NIVO), and ipilumumab (IPI)-demonstrate
226 yses indicate that both elicited peritoneal (PEMs) and bone marrow-derived macrophages (BMDMs) from t
230 ipotent erythrocyte-megakaryocyte precursor (PEM) population, and a CID-independent macrophage popula
232 ge membrane (PEM) electrolyzers, ORR-related PEM fuel cells, NRR-driven ammonia electrosynthesis from
235 When subjects are in the fed state, severe PEM induces a marked reduction in whole-body protein syn
236 A corollary is that children with severe PEM do not mount a protein catabolic response to infecti
237 proton migration within the HPW-meso-silica PEM and to determine the mechanism of proton hopping, we
242 ent two 'pombe epistasis mapper' strategies, PEM-1 and PEM-2, which allow for high-throughput double
243 rom mice bearing D1-DMBA-3 mammary tumors (T-PEM) are deficient in inflammatory functions and that th
249 es of this water-binding and anion-tethering PEM enable enhanced electrochemical performance without
258 whether the presence of infection alters the PEM-induced reduction in whole-body protein metabolism.
260 antification of whole air samples during the PEM-Tropics missions, along with an analysis of the anal
263 artitioned into heterogeneous regions of the PEM and Overhauser dynamic nuclear polarization relaxome
265 luate the chromatographic performance of the PEM coating as a chiral stationary phase, the separation
266 ia mesoporosity, favouring rigid link of the PEM on the sensor and improving the device sensitivity.
268 stimated difference in the mean score on the PEM at 2 years was 7.2 points (95% CI, 4.2 to 10.9).
271 produce NO and lyse targets and, unlike the PEM, was not able to upregulate these functions even whe
273 condition had higher cells counts, while the PEM assembled at pH = 5 and PEM with no FGF2 showed incr
274 capture of ROS generated in situ within the PEM for a period of about 7 h and the incorporation of C
278 brane electrode assemblies (MEAs) from these PEMs resulted in fuel cells that outperformed those base
282 atures associated with ME/CFS in response to PEM induction and reports microRNA expression patterns a
285 -endothelium (postendothelial migrated Treg [PEM Treg ]) and the effect of subsequent interactions wi
286 2.4 and 1.8 times more IL-12 than wild-type PEMs in response to LPS or LPS and IFN-gamma, respective
287 r-operating-characteristic (ROC) study using PEM images reconstructed with different count levels exp
288 adjuvanted vaccination in populations where PEM is endemic may be one strategy to boost vaccination-
289 er, 279 (91.2%) were correctly assessed with PEM compared with 264 (86.3%) that were correctly assess
290 with MR imaging only; 14 (17%) breasts, with PEM only; and seven (8.5%) breasts, with mammography and
291 ematous and seven nonedematous children with PEM by using constant intragastric infusions of [2H3]leu
292 pletion of the albumin pool of children with PEM is not mediated by changes in the FSR, and the edema
298 epared in both PS and PETG are modified with PEMs, they demonstrate very similar electroosmotic mobil
299 ion could only detect Br(2)Y adsorbed within PEMs when using either higher photon energies or matrix
300 mote health literacy, the demands of written PEMs must match the literacy capacities of the target au