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1 sical barrier allowed detection of AFB1 with high sensitivity.
2 e use of relatively large sample volumes for high sensitivity.
3 gths of MPI are high temporal resolution and high sensitivity.
4 cations because of their low energy loss and high sensitivity.
5 fts as well as distant organ metastases with high sensitivity.
6 teps, rapid detection, high flexibility, and high sensitivity.
7 and saliva was detected quantitatively with high sensitivity.
8 levels of TETS from biological samples with high sensitivity.
9 a42, and to be able to identify AD sera with high sensitivity.
10 tifies B. anthracis directly from blood with high sensitivity.
11 ere thoroughly studied in order to achieve a high sensitivity.
12 experimental sessions can be identified with high sensitivity.
13 nucleic and non-nucleic acid biomarkers with high sensitivity.
14 ly activated by hot or cold temperature with high sensitivity.
15 ltiple myeloma lines consistently exhibiting high sensitivity.
16 ruses and the seasonal viruses with similar (high) sensitivity.
18 ity toward oxygen reduction in addition to a high sensitivity (-0.16 +/- 0.02 nA muM(-1)) and a low l
20 GO/VS-PANI/LuPc2/GOx-MFH biosensor exhibited high sensitivity (15.31muAmM(-1)cm(-2)) for the detectio
21 nd conducting ionic liquid matrix to achieve high sensitivity (2.4 +/- 0.24 mA cm(-2) mM(-1)) for H2O
22 LuPc2)PANI(PVIA)-CNB/GOx biosensor exhibited high sensitivity (38.53microAmM(-1)cm(-2)) towards the d
23 identified, a panel of 25 metabolites showed high sensitivity (84%) and specificity (86%) in predicti
24 us pressure-deflection responses with a very high sensitivity (89.3 nm Pa(-1) ), which is three order
25 0.73%; prespecified 1-sided P = .04), while high sensitivity (93%) was preserved for aggressive pros
26 lignant and nonmalignant stroma spectra with high sensitivity (93.56%) and specificity (85.64%) for a
28 of high-order modulation formats and offers high sensitivities, achieving a four-fold increase in th
30 development of non-immunological assays with high sensitivity, affinity and specificity for human cho
31 detect specific metabolites of interest with high sensitivity, allows for correction of targeted info
33 of previous techniques with the benefits of high sensitivity and accuracy comparable to the best exi
34 the state-of-the-art tool HMMER has achieved high sensitivity and accuracy in domain annotation, the
36 an be detected in human stool specimens with high sensitivity and can therefore be used to determine
39 e tumor can be quantitatively evaluated with high sensitivity and high spatial resolution in in vivo
40 DNAzyme, the proposed immunosensor exhibited high sensitivity and it holds great promise for clinical
42 can be rapidly performed in real time, with high sensitivity and less labor and without assays or fl
44 ugh surface-enhanced Raman scattering offers high sensitivity and multiplicity, it cannot be readily
46 etermine an appropriate cutoff (ie, one with high sensitivity and negative predictive value) of the M
47 tative hyperspectral lifetime imaging with a high sensitivity and paves the way for many important bi
48 ployed, providing accelerated throughput and high sensitivity and permitting a lateral image resoluti
49 timodal, noninvasive biological imaging with high sensitivity and potential for molecular targeting.
50 indicate that our developed sensor exhibits high sensitivity and reproducibility to determine DA eve
54 with a linear range between 0 mM and 0.9mM, high sensitivity and selectivity, and a low limit of det
55 assium, in the range of 1 mM to 100 mM, with high sensitivity and selectivity, by ISPAO based measure
56 biosensor revealed an extended linear range, high sensitivity and selectivity, fast response time and
63 s for early detection of plant diseases with high sensitivity and specificity at the point-of-care.
64 has high diagnostic accuracy and moderate to high sensitivity and specificity for detection of underl
65 od smears or corresponding blood pellets had high sensitivity and specificity for malaria diagnosis,
68 ntifying rapid decliners in one study showed high sensitivity and specificity in the second study.
70 c assisted immunosensing systems inherit the high sensitivity and specificity properties due to the p
71 ated and real data show that COSINE achieves high sensitivity and specificity under a wide range of r
72 ously identify multiple genetic markers with high sensitivity and specificity without individual opti
73 sensor is capable of detecting bacteria with high sensitivity and specificity, and can serve as a pro
74 ause it assesses bone damage with relatively high sensitivity and specificity, and detects extramedul
75 enables global screens of gene function with high sensitivity and specificity, but off-target effects
76 can infer dominance of candidate genes with high sensitivity and specificity, making it a useful com
78 he development of brief screening tools with high sensitivity and specificity, such as the 3-Minute D
79 d it discriminated between these groups with high sensitivity and specificity, with an area under the
91 lectrochemical assay was optimized to obtain high sensitivity and the method was applied to monitor c
92 ced in fluorescence microscopy settings with high sensitivity and time resolution and it demonstrates
95 ategorize vertebral compression fractures at high sensitivity and with a low false-positive rate, as
96 sessing biomolecular recognition events with high sensitivity and without the use of exogenous reagen
102 e to its excellent molecular specificity and high sensitivity as well as the capability of SERS to be
103 n this study, we report the development of a high sensitivity assay for the detection of cardiac trop
108 g assay combining high-throughput with ultra-high sensitivity based on single-molecule molecular inve
110 ficities, RefFreeCellMix in general produced high sensitivities but specificities tended to be low wh
111 al and non-neuronal subtype composition with high sensitivity but also enables in-depth analysis of t
112 ests, especially mammalian cell assays, have high sensitivity but suffer from low specificity, leadin
113 mmation and pain were determined using serum high sensitivity C-reactive protein (hs-CRP) and a visua
114 as SF <12 mug/L in the absence of infection (high-sensitivity C-reactive protein <10 mg/L) and VDD as
118 her reductions in the inflammatory biomarker high-sensitivity C-reactive protein (hsCRP) correlate wi
119 diagnosed cancer, and had concentrations of high-sensitivity C-reactive protein (hsCRP) of 2 mg/L or
120 ined unconfounded estimates of the effect of high-sensitivity C-reactive protein (hsCRP) on BMD at th
121 Exploratory end points included change in high-sensitivity C-reactive protein (hsCRP), FMDBA after
122 carotid intima-media thickness and levels of high-sensitivity C-reactive protein and asymmetric dimet
123 ed with circulating inflammatory biomarkers (high-sensitivity C-reactive protein and IL-6) and activa
124 e then measured two markers of inflammation, high-sensitivity C-reactive protein and interleukin-6, w
125 V-infected men with higher interleukin 6 and high-sensitivity C-reactive protein and lower free testo
126 stment for potential risk factors, including high-sensitivity C-reactive protein concentration, the a
128 emographic data, metabolic profiles, hs-CRP (high-sensitivity C-reactive protein) levels, oxidative s
129 sity lipoprotein cholesterol, triglycerides, high-sensitivity C-reactive protein, and 10-year Framing
130 non-high-density lipoprotein cholesterol and high-sensitivity C-reactive protein, and use of nonstero
131 s c702 and Meso Scale Discovery V-Plex Plus: high-sensitivity C-reactive protein, interferon-gamma, i
132 g measurements were obtained: interleukin 6, high-sensitivity C-reactive protein, soluble receptors f
135 egment elevation myocardial infarction using high-sensitivity cardiac troponin (hs-cTn) concentration
136 a paucity of data on the association between high-sensitivity cardiac troponin (hs-cTn) levels and ou
138 of the High-STEACS pathway incorporating low high-sensitivity cardiac troponin concentrations rules o
139 ule-out of acute myocardial infarction using high-sensitivity cardiac troponin I (hs-cTnI) have been
141 describe the relationship between changes in high-sensitivity cardiac troponin I (hsTnI) and cardiova
142 ts with suspected acute coronary syndrome, a high-sensitivity cardiac troponin I concentration of les
144 ry syndrome, we evaluated the performance of high-sensitivity cardiac troponin I in those with and wi
145 d acute coronary syndrome (n=1218) underwent high-sensitivity cardiac troponin I measurement at prese
148 stroke within the anterior circulation and a high-sensitivity cardiac troponin T (hs-cTnT) acquired o
149 ro-brain natriuretic peptide (NT-proBNP) and high-sensitivity cardiac troponin T (hs-cTnT) concentrat
150 The authors hypothesized that any detectable high-sensitivity cardiac troponin T (hs-cTnT) level is a
151 pro-B-type natriuretic peptide (NT-proBNP), high-sensitivity cardiac troponin T (hs-cTnT), and low-d
152 matic screening using serial measurements of high-sensitivity cardiac troponin T in clinical routine.
154 , N-terminal pro B-type natriuretic peptide, high-sensitivity cardiac troponin T, and high-sensitivit
156 ut of Acute Myocardial Infarction) evaluated high-sensitivity cardiac troponin-T (hs-cTnT) in a 1-hou
157 pressure monitoring, and cardiac biomarkers (high-sensitivity cardiac troponins, NT-proBNP [N-termina
158 n oxide (MPIO) have the potential to provide high sensitivity contrast for molecular magnetic resonan
162 or with excellent mechanical flexibility and high sensitivity demonstrates the applicability of this
165 N carbon nanofiber-based immunosensor showed high sensitivity (detection limit of 0.75pg/ml) and sele
167 the distribution of elements by implementing high sensitivity energy dispersive X-ray (EDS) mapping a
168 olecular detection platform, termed Specific High-Sensitivity Enzymatic Reporter UnLOCKing (SHERLOCK)
169 nge from visible to near-infrared light with high sensitivity, fast response, and good stability is r
170 ptides in the enriched fraction as glycated, high sensitivity for detection of glycated peptides with
173 a label-free electrochemical biosensor with high sensitivity for PoC applications to detect CVD biom
177 ty for odor detection, and particularly, the high sensitivity for the detection of odorants that cont
179 llent assay performance metrics that include high sensitivity, good linearity, and low variation.
180 advantages in terms of simplicity, rapidity, high sensitivity, good reproducibility and long-term sta
181 llent binding affinity, low detection limit, high sensitivity, good stability and specificity suggest
182 pecific scFvs as receptor molecules onto our high-sensitivity graphene-coated IDE-arrays with identic
185 (alpha4)3(beta2)2, which are referred to as high-sensitivity (HS) and low-sensitivity (LS) nAChRs, r
186 ggestive of AMI, concentrations of cMyC, and high-sensitivity (hs) and standard-sensitivity cTn were
187 rformed in ELISA with excellent recovery and high sensitivity, IC50 = 0.28 mug/L, with a limit of det
190 lower, maize, peanut and coconut) and showed high sensitivity in a broad linear dynamic range (LOD an
191 dation of the Myotonometry technique and its high sensitivity in examination of spasticity in stroke.
192 99m)Tc-trofolastat SPECT/CT detects PCa with high sensitivity in patients with intermediate- and high
193 ltaneous two-mode detection, consisting of a high-sensitivity in situ channel with signal-to-noise of
195 phosphothreonine-231) and T-tau using ultra-high sensitivity laser-based immunoassay multi-arrayed f
197 nd rapid "on-the-fly" detection (2 min) with high sensitivity (limits of detection of 7 and 0.4 ng/mL
198 c tail peptide pulldown assays combined with high sensitivity liquid chromatography/mass spectrometry
199 The as-produced BP biosensor showed both high sensitivity (lower limit of detection 10ng/ml) and
200 unosensors present high selectivity and very high sensitivity, making them very attractive for many a
201 quid chromatography-quadruple time-of-flight high-sensitivity mass spectrometry (UPLC-QTOF/HSMS) show
202 ases, glycan microarray, siRNA, and advanced high sensitivity matrix-assisted laser desorption/ioniza
203 lucose intervals, 50-150 mg/dL) demonstrated high sensitivity (mean = 95.2%, SD = +/- 0.02) and speci
204 e-free electrochemical sensors enable rapid, high sensitivity measurements without the limitations as
206 nsects, context-dependent increased costs of high sensitivity might lead to plasticity in sensillum r
209 ome a popular research topic recently, where high-sensitivity, noise proof sensing mechanisms with lo
211 gential and radial strain fields, leading to high sensitivities of a 0.0835 kPa(-1) change in output
213 ml(-1) and 2-75ngml(-1) were obtained with a high sensitivity of 0.14muAng(-1)ml and a very low detec
215 PCR assay on the LOC platform demonstrated a high sensitivity of 1.6 copies/microL, comparable to off
216 TNF-alpha in 100pg/ml to 100ng/ml range with high sensitivity of 119nA/(ng/ml), with negligible inter
217 he low detection limit of 0.001ngmL(-1), and high sensitivity of 12.044microA (ng per mL cm(-2))(-1)
218 -1), limit of detection of 0.065nM and ultra-high sensitivity of 16 times that of a conventional SPR
220 showed excellent analytical performance with high sensitivity of 25.7AmicroM(-1)cm(-1), a very low de
221 amic linear range from 1nM to 8microM with a high sensitivity of 340.8microAmicroM(-1) and limit of d
227 ll internalization pathways, pinpointing the high sensitivity of stability-activity relations to mino
232 ce of the MF and this leads to the desirable high sensitivity of the structure to the applied magneti
237 orm for analytical measurements due to their high sensitivity, portability and fast response time.
238 n (40%), all codes were also found to have a high sensitivity (range, 87.6%-100%) and a high specific
239 pattern was achieved in simple protocol with high sensitivity, reduced analysis time, and minute star
242 adout and the magnetic actuation enables the high sensitivity, resulting in a rapid, inexpensive, rob
245 sors have widely been appreciated due to its high sensitivity, selectivity, robustness, and miniaturi
246 ical detection offers additional benefits of high sensitivity, selectivity, simplicity of instrumenta
247 Stable, ultralow power consumption, and high-sensitivity sensors are significant for miniaturize
248 and low-cost approach for DNA detection with high sensitivity, showing great promise for clinical app
249 trode array recordings to show that a single high-sensitivity source of glutamate is processed differ
250 his process is carried out with particularly high sensitivity, specificity and rapidity, which can be
251 n solution and clinical serum samples depict high sensitivity, specificity and wide dynamic range (0.
255 t the new method has the advantages of fast, high sensitivity (the detection limit was 1.2ng/ml), goo
258 1.8 GHz K(-1) and can be configured as ultra-high sensitivity thermal sensors for a broad range of ap
259 thological diagnoses, clinical diagnosis had high sensitivity to AD and high specificity to dementia
260 s demonstrated value for SPNs diagnosis with high sensitivity to detect malignant SPNs, but lower spe
261 eq has high specificity for mature tRNAs and high sensitivity to detect most isoacceptors from minute
267 etina to the brain that exhibits exquisitely high sensitivity to high spatial frequency patterns pres
269 otoreceptors, thus enabling them to maintain high sensitivity to light and high temporal resolution.
270 the light rearing conditions, thus enabling high sensitivity to light and high temporal resolution.
271 e and gram negative bacteria and demonstrate high sensitivity to multiple bacterially-secreted chemoa
272 +) current with slow inactivation and confer high sensitivity to nifedipine and to internal EGTA, are
274 yridine scaffold led to the discovery of its high sensitivity to silver ions (Ag(+)) over other metal
276 heoretical results validate that, due to its high sensitivity to the spatial proximity of phospholipi
277 lity and morphology are controlled, offering high-sensitivity to various biological/biochemical speci
278 BSI), a free-solution label-free method with high sensitivity, to quantify the interaction of neurona
279 roduced during neutron irradiation provide a high-sensitivity tool for the determination of heavy hal
281 e respiratory distress syndrome using modern high-sensitivity troponin assays, which can detect tropo
282 To determine the association of circulating high-sensitivity troponin I (Abbott ARCHITECT), with acu
283 pro-B-type natriuretic peptide (NT-proBNP), high-sensitivity troponin I (hsTnI), soluble (s)ST2, and
284 omparing the fifth to the first quintiles of high-sensitivity troponin I was 1.61 (95% CI, 1.11-2.32;
286 tory distress syndrome outcomes, we measured high-sensitivity troponin I within 24 hours of intubatio
287 evels of B-type natriuretic peptide, hs-TnI (high-sensitivity troponin I), CRP (C-reactive protein),
288 imaging (CMR, as part of an ongoing study), high-sensitivity troponin I, and B-type natriuretic pept
289 pathway developed in the High-STEACS study (High-Sensitivity Troponin in the Evaluation of Patients
290 st pain." It is unknown if evaluation with a high-sensitivity troponin T (hsTnT) assay affects progno
291 as diagnosed based on clinical presentation, high-sensitivity troponin T, and cardiac magnetic resona
292 ed cardiac and inflammatory markers included high-sensitivity troponin T, creatine kinase, myoglobin,
295 such HL-chain swapped reaction products with high sensitivity, we developed cysteine-stable isotope l
296 SNVs and indels could be detected with very high sensitivity were 2.5 ng on the Ion Torrent platform
297 earity, in all cases higher than 98.65%, and high sensitivity whose detection limits ranged between 0
299 der optimal conditions, this system exhibits high sensitivity with a limit of detection (LOD) of 21.1
300 1.0x10(-6) with good linearity (R =0.9927), high sensitivity with low detection limit of 4.3x10(-12)
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