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1 nuated by indomethacin and SC-236 (P= 0.0001 cf. vehicle-treated AIA; n= 5-6 per group), indicating t
2  (viz., 9H(+)) is very strong: pK(a) = 3.08 (cf. Et(3)NH(+) pK(a) = 10.7).
3 se rates 10 acres are needed to infiltrate 1 cfs (100 m(3) h(-1)) of flood flows.
4 s up to 3 times higher for E-1 than for Z-1 (cf. parameter beta).
5 n their high maximum open probability (99.1% cf. 98% for alpha1), but differ in that maximum open pro
6  the two common FLG null variants was 0.270 (cf. population frequency 0.046).
7 oportion of species assessed by the IUCN (3% cf. 4% of non-marine species).
8 reduction in misclassification rates of 75% (cf. PLS-DA) and 80% (cf. SIMCA)-when measurements from s
9 ification rates of 75% (cf. PLS-DA) and 80% (cf. SIMCA)-when measurements from samples not included i
10 e Midas cichlid species complex (Amphilophus cf. citrinellus) including fish from five lakes in Nicar
11 onscious recognition memory-guided behavior (cf.[5]) and (2) align with mouse models of experience-de
12 America, a 130,000-y-old steppe bison, Bison cf. priscus We extracted and sequenced mitochondrial gen
13 tochromes c, c1; chloroplast cytochromes c6, cf; bacterial cytochromes c2, c550, c551; in total 164 s
14 e selectivity (cf. amine) and high capacity (cf. MOF), but also increased adsorption at higher temper
15 are close to the volume limit of the cavity (cf. Rebek's 55% rule), so the association constant is se
16  between synthetic and theoretical chemists (cf. the cerocene problem).
17 lite isolated from the marine cyanobacterium cf. Oscillatoria sp. that exhibits selective antileishma
18 1 form a dihedral angle of only 3.9 degrees (cf. pyridine-benzene dihedral angles of 35.4 degrees and
19  factor of 2 between a concentration factor (cf) of 1 and of 20.
20                                   Cell-free (cf) DNA was isolated from the plasma of 11 pregnant wome
21 Tumor DNA from serum (circulating cell free [cf); all patients] and biopsies [160 mg/day and expansio
22                         The occurrence of G. cf. bengawanicus in Thailand allows us to propose a scen
23 l described herein is attributed to Gavialis cf. bengawanicus and sheds new light on the occurrence o
24  five binding sites are occupied by glycine (cf. three out of five sites for alpha1).
25 om DFT calculations) trans head-head isomer (cf. 50% with PMe3) and the largest affording small amoun
26    Extracts prepared from recollected Jaspis cf. coriacea from five sites in Fiji were pooled.
27 larial potency with an ED(50) of 2.12 mg/kg (cf. artemether = 6 mg/kg) versus P. berghei.
28                                           L. cf. uymesi can grow a posterior extension of its tube an
29 ments, which exposed the root portions of L. cf. luymesi to sulfide concentrations between 51-561 mic
30 s between 51-561 microM, demonstrate that L. cf. luymesi use their roots as a respiratory surface to
31 tion by roots of the seep vestimentiferan L. cf. luymesi can be sufficient to fuel net autotrophic to
32 feran species at these sites, Lamellibrachia cf. luymesi, grows quite slowly to lengths exceeding 2 m
33 iated with supra-additive responses in left (cf. results for speech integration) or right (due to emo
34  90% repolarication (APD90) (54.4 +/- 2.4 ms cf. 48.5 +/- 0.3 ms, P < 0.05; n = 5).
35    (1) Prolonged epicardial (57.1 +/- 0.5 ms cf. 36.1 +/- 0.07 ms in wild-type (WT), P < 0.001; n = 5
36 ive IC(50) values of 20-227 and 0.82-100 nM (cf. letrozole, 0.89 nM).
37 basis of the observed association between O. cf. ovata blooms, respiratory illness in people, and det
38 taneous contact have been reported during O. cf. ovata blooms and were attributed to palytoxin (PLTX)
39 nd accurate manner (Bias = 0.3%), also in O. cf. ovata extracts and contaminated mussels.
40 -a, the major toxic compound contained in O. cf. ovata extracts.
41 itant with Ostreopsis spp. blooms (mainly O. cf. ovata) in the Mediterranean area.
42              During the mass abundance of O. cf. ovata also exposure to the aerosols on the beach evo
43 sults, besides confirming the presence of O. cf. ovata cells, demonstrated for the first time the occ
44 ation being consistent within the species O. cf. ovata, a certain degree of toxin variability was obs
45   Previous studies have demonstrated that O. cf. ovata produces analogues of palytoxin (ovatoxins and
46  palytoxin as the causative agents of the O. cf. ovata -related human sufferings.
47 en normalized the abundance data of toxic O. cf. ovata.
48 erosols were collected concomitantly with O. cf. ovata blooms, and they were analyzed by both PCR ass
49                                   Ostreopsis cf. ovata appeared in masses from September through Octo
50 X-a), the major toxin produced by Ostreopsis cf. ovata in the Mediterranean Sea.
51  2005, the benthic dinoflagellate Ostreopsis cf. ovata has bloomed across the Mediterranean basin, pr
52  the toxic benthic dinoflagellate Ostreopsis cf. ovata in the complex matrix of marine aerosol at San
53 ans, Penicillium chrysogenum and Penicillium cf. citrinum were the most frequent species, which occur
54 r (+)-20Z also proved potent albeit reduced (cf. 34.6 nM) when evaluated against the same cell line p
55 to be 1.2, 1.5, and 15 microM, respectively (cf. 6 microM for the classic substrate bufuralol).
56  or TACI (P < .01 and P < .05, respectively, cf. control, effector-to-target [E:T] ratio 16:1).
57   A desirable system would have selectivity (cf. amine) and high capacity (cf. MOF), but also increas
58 AT5 selective (>3-fold specificity for STAT5 cf. STAT1 and STAT3) inhibitors, BP-1-107, BP-1-108, SF-
59 ections of Xestospongiacf. carbonaria and X. cf. exigua has provided further insights on the structur

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