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1 e of approximately 1.5 degrees full width at half maximum.
2 e was no significant change in full width at half maximum.
3  rather than extrapolating the full-width at half-maximum.
4 k separations and anodic peak full widths at half-maximum.
5 p125fak and paxillin, at low concentrations (half maximum 0.3 nM).
6 bution centered around 103 Gy (full width at half maximum, 20 Gy).
7 ve resolutions of up to 7.5-nm full width at half maximum (3.2-nm localization precision), limited on
8 on a higher resolution tomograph (full width half maximum, 4.2 mm).
9 rmediate resolution tomograph (full width at half maximum, 8 mm); the subsequent 18 patients (Group B
10                           The voltage of one-half maximum activation (V(1/2)) was not significantly a
11 nd gating properties, such as the voltage of half-maximum activation and voltage sensitivity, were al
12                                    At +40 mV half-maximum activation occurred at an [ATP](i) of 3 mM
13 mary culture of hepatocytes indicated that a half-maximum activation was achieved after 6 h, and gluc
14 gher Ca(2+) sensitivity, 10 mV more negative half-maximum activation, and a smaller dynamic range in
15 eighted border zone, and modified full-width half-maximum algorithms (hazard ratios 1.23, 1.22, and 1
16                            The PNCR width at half maximum amplitude (5.0+/-0.2 microm) was also signi
17 acteristics (full width and full duration at half-maximum amplitude) were approximately exponentially
18                                Full width at half-maximum analysis (fwhm) was performed on the powder
19 hm, were compared with a modified full-width half-maximum and a 2-3SD threshold-based algorithm (2-3S
20 lem were the ratio between the full width at half-maximum and the half-maximum intensity for enhancem
21 eak widths of Deltam/z 0.6 Th (full width at half-maximum) and a mass range of up to m/z 900 are demo
22  the broadest emission (183 nm full width at half-maximum) and longest lifetime (tauavg = 1.39 ns).
23 e lineshapes (down to a few nm full-width-at-half-maximum) and the generation of singularities of pha
24 n energy of 3 MeV per nucleon (full-width at half-maximum approximately 0.5 MeV per nucleon) and a lo
25 a(max)(T(1)-->T(n)) = 1150 nm; full width at half-maximum approximately 350 cm(-1)), and a substantia
26 taext = 1.9%) with an emission full width at half-maximum as narrow as 70 nm.
27 The inhibition desensitized rapidly (18 s to half maximum at 100 nM concentration) and was dose-depen
28 sed calcium sensitivity of force production (half-maximum at 2.5 vs. 1.3 microM calcium).
29  the same function of [Ca(2+)](ER), reaching half-maximum at approximately 200 microM with a Hill coe
30 ansaxial direction was 4.6 mm (full width at half maximum) at the center, and the axial resolution wa
31 solution values of 1 keV fwhm (full width at half-maximum) at 5.5 MeV have been achieved, an order of
32      The flash intensity required to evoke a half-maximum b-wave amplitude (log sigma) was significan
33  interactions, measurement of the full width half-maximum bandwidth (fwhm) of the W3 band is suggeste
34 larly, gelsolin is able to bind F-actin with half-maximum binding at 0.14 microM free Ca2+ concentrat
35 ount of P. gingivalis LPS required to obtain half-maximum binding to CD14 was approximately 10-fold g
36  reduced the cGMP concentration required for half-maximum binding to the allosteric cGMP-binding site
37 t over a range from 0.05 to 10 mmol/L, and a half-maximum binding was attained at approximately 0.6 m
38 line width of HgTe NPLs (40 nm full width at half-maximum, centered at 880 nm) is a factor of 2 small
39 e and measure sharp (20 25 microL full-width-half-maximum) chromatography peaks.
40 e narrow emission spectra with full-width at half-maximum close to 20 nm, and quantum yield that can
41 ) in a concentration-dependent manner with a half-maximum concentration between 0.007 and 0.4 mg .
42  K+ currents that activated rapidly (time to half-maximum current, 11.5 ms at 0 mV) and inactivated i
43 -induced actin depolymerization suggest that half-maximum depolymerization occurs at approximately 0.
44 ncentration of 100 nM, lipoxin A4 produced a half-maximum displacement (EC50) of [3H]TCDD binding.
45 -locked operation, pulses with full-width at half maximum durations of 610 fs and 1.68 ps at waveleng
46 rwise), and the duration required to cause a half-maximum effect (rise-time) was estimated.
47 n complex III is reduced by C2-ceramide with half-maximum effect at 5-7 microM.
48 m Cdc42Hs in a dose-dependent manner, with a half-maximum effect at approximately 50 microM.
49   On the other hand, with large variation of half-maximum effective concentration (EC50) across teste
50 indicate that it is highly unlikely that ASM half-maximum effective concentration (EC50) or Vmax cont
51  of EBI2-expressing mouse B and T cells with half-maximum effective concentration values around 500 p
52 the HCV NS5A protein that exhibits picomolar half-maximum effective concentrations (EC(50)) towards r
53  at a cRNA ratio (MiRP1:Kv4.2) of 13:1, with half-maximum effects at estimated cRNA ratios of 2 to 4.
54  the peak amplitude and the full-duration at half-maximum (FDHM) of Delta[Ca2+] were 18.4 +/- 0.5 mic
55                         The full-duration at half-maximum (FDHM) of DeltaF was found to be essentiall
56  hundred narrow (< 20 ms FWHM [full width at half maximum]) fluorescence peaks.
57 mator (e.g., 0.9 vs. 1.4 cm in full width at half maximum for (131)I).
58 atial resolution was 2.4 mm in full width at half maximum for image planes parallel to the detector f
59 he value for the concentration of EGF at the half-maximum for the activation of the tyrosine kinase w
60 ical mass resolving power (>10000 full width half-maximum for the results presented here at 7 T).
61 olution for 2D (3D) was 5.1 mm full width at half maximum (FWHM) (5.0 mm) at 1 cm from gantry center
62 ransaxial resolution is 6.1-mm full width at half maximum (FWHM) 1 cm off center and increases to 6.9
63 n algorithms were below 1.8-mm full width at half maximum (FWHM) at the center of the field of view.
64                              A full width at half maximum (FWHM) DOI resolution of 2 mm and an FWHM e
65 ction counting rates was 11.7% full width at half maximum (FWHM) for 662-keV gamma-rays.
66 found at a filter size of 8-mm full width at half maximum (FWHM) for elasticity and propagation param
67 epth resolutions approaching a full width at half maximum (fwhm) of 5 nm can be achieved.
68 0)) of approximately 2.0 and a full-width at half maximum (FWHM) of approximately 1 microm.
69                            The full width at half maximum (FWHM) of the average in vivo line-spread f
70                    The average full width at half maximum (FWHM) of the SLNs in the photoacoustic ima
71 ent) and sharp resonances with full width at half maximum (FWHM) of ~15 nm in the zero-order transmis
72 , with photoluminescence emission full width half maximum (FWHM) values below 40 meV and emission int
73 al resolution as low as 2.5 nm full width at half maximum (fwhm) was measured using an atomic emissio
74 ice ranges from 1.1- to 1.4-mm full width at half maximum (FWHM) without correction for the point-sou
75     In terms of sensitivity to full width at half maximum (FWHM), 15 TFs and 1 FOS had the best perfo
76 n a spectral bandwidth of 50% full width at half maximum (FWHM).
77  timing resolution was 1.42-ns full width at half maximum (FWHM).
78 dure the link between the peak full width at half-maximum (fwhm) and the drift time of model compound
79 nsitions at 708 nm and 714 nm (full-width at half-maximum (fwhm) approximately 200--300 cm(-1)).
80 mi-automatic techniques, using full-width at half-maximum (FWHM) criterion, correlated best with post
81  interface to preserve <300 ms full width at half-maximum (fwhm) fast GC peaks generated on the secon
82 he peak area, peak height, and full width at half-maximum (fwhm) for the internal standard were 2.5%,
83 he reconstructed probe shows a full-width-at-half-maximum (FWHM) peak size of 11.2 nm.
84 ed from 20% to 40%, and the PL full-width at half-maximum (fwhm) was maintained between 23 and 26 nm,
85 resolution in excess of 25,000 full width at half-maximum (fwhm), it became possible to isotopically
86 m gamma-rays (59.5 keV), with full widths at half-maximum (FWHM, in percentage) of 19% and 50%, respe
87 ransit times and dispersions (full widths at half maximum [FWHM]) were determined from the curves.
88 2 PD, 20 N; resolution: 7.5 mm full width at half maximum [FWHM]); group B (18 PD, 12 N; resolution:
89 7-fold increase in resolution (full width at half maximum, fwhm) as well as reduced peak tailing.
90 n manifold spectral bandwidth (full width at half-maximum, fwhm, approximately 2000-2500 cm(-1)).
91                  The averaged full widths at half maximum (FWHMs) of the radial/tangential/axial spat
92 , and CYP51C, resulted in growth inhibition [half-maximum growth inhibition (IC50) = 1.2 nM] as well
93 ide spectral stop-band widths (full-width at half-maximum &gt;80 nm), while preserving the material qual
94                   A virtual cross section at half-maximum height of the nucleosome structure was used
95  of this domain, as assessed by the width at half-maximum (HW) of the distance distribution, increasi
96 varied from 1.50 to 2.01 mm in full width at half maximum in the radial direction and from 1.32 to 1.
97 on ranged from 1.17 to 1.86 mm full width at half maximum in the radial direction from a radial offse
98 ft in the steady-state membrane potential at half-maximum inactivation (V ), without changing the slo
99 sing the rate of activation and shifting its half-maximum inactivation to a more hyperpolarized poten
100 n arc followed an asymptotic function with a half-maximum inflection point after 5.3 eyes.
101 on-dependent inhibition of peak ICa,L with a half-maximum inhibition concentration (IC50) of 142 nmol
102 rbobenzyloxy-LLY-diazomethyl ketone produced half-maximum inhibition of the caseinolytic activity of
103 ter than or equal to fivefold differences in half-maximum inhibitor concentration (IC(50)) between pa
104 accination, the geometric mean titres of the half maximum inhibitory concentration were 8745 for the
105 nd vaccination (geometric mean titres of the half maximum inhibitory concentration: 2688 in the 10 mu
106                                          The half maximum inhibitory concentrations of all the metall
107 imary tools for estimating the potency [e.g. half-maximum inhibitory concentration (IC) known as IC50
108 e potent than the best bNAbs (geometric mean half-maximum inhibitory concentration (IC50) < 0.05 mug
109  neutralized 62% of 181 pseudoviruses with a half-maximum inhibitory concentration (IC50) <50 mug ml(
110 at least 1000 copies per mL and a BMS-626529 half-maximum inhibitory concentration lower than 100 nmo
111  was associated with significantly higher PI half-maximum inhibitory concentration values compared wi
112                                     Parasite half-maximum inhibitory concentrations for seven antimal
113 ssure effect in a dose-dependent manner with half-maximum inhibitory concentrations of 70 nM, 2.5 mic
114 tween the full width at half-maximum and the half-maximum intensity for enhancement and correlation c
115 t (large-angle domain) and the full-width-at-half-maximum intensity of the point-spread function (50%
116 ibitory postsynaptic conductance reaches its half-maximum (IPSG50).
117   Interictal SPECT with 6-8-mm full-width at half-maximum is an alternative to PET.
118  m, where delta m, measured as full width at half-maximum, is estimated as 100.
119 e of 484 +/- 3 nm and an absorbance range at half maximum (lambda1/2max) of 440-540 nm, whereas for S
120  for decline of the Indo-1 Ca2+ transient to half-maximum levels (t(1/2) [Ca2+]i) (P<.05).
121 nm) and narrow emission bands (full width at half-maximum &lt;20 nm).
122 y, using a staged release assay, the time to half-maximum mature IL-1beta release is significantly de
123 coring and quantified with the full-width at half-maximum method.
124 tem ranges from 1.0- to 1.8-mm full width at half maximum near the center of the FOV, depending on th
125            A (12)C beam with a full width at half maximum of 10 mm was delivered to the atrioventricu
126  peaks at 45.7+/-0.5 mV with a full width at half maximum of 15 mV vs saturated calomel electrode (SC
127 -701 HU) greater than 1 L; and full width at half maximum of attenuation-frequency distribution 80 HU
128 rough CdSe quantum dots, with full widths at half maximum of only ~15 mV at room temperature.
129 m the beam axis by 1.25 times the full-width half maximum of the beam, it is possible to significantl
130 on, leading to improvements in full width at half maximum of the canine myocardium of 13% +/- 5%, sim
131 lution was determined from the full width at half maximum of the detected point spread function.
132         The shape and measured full width at half maximum of the line spread functions agree well wit
133                            The full width at half maximum of the line-spread function at 3,000,000 co
134 ventricle (LV) wall thickness (full width at half maximum of the medial sections), TD, and cavity con
135 pectively (where the error is the full width half maximum of the statistical distributions).
136                            The full width at half maximum of the transverse line spread function (LSF
137 nset time (OT) of 350 ms and a full width at half-maximum of 1 s.
138 -time of 20.8 +/- 0.2 ms and a full width at half-maximum of 1.40 +/- 0.03 microm (mean +/- s.e.m., n
139 uminescence exhibits only a small full-width-half-maximum of 48 meV, comparable to that of exfoliated
140 es between 55 and 120 V/cm and full width at half-maximum of 65-100 ms.
141  945 cm(-)(1) with a pass-band full width at half-maximum of 93 cm(-)(1).
142 find a red-shifted, broadband (full-width at half-maximum of about 0.4 eV), emission band below 200 K
143                              Peaks widths at half-maximum of approximately 0.06 s are generated for a
144 a Gaussian distribution with a full width at half-maximum of approximately 0.35 mm.
145 ing Pdots exhibit the emission full width at half-maximum of approximately 36 nm, which is approximat
146 des exhibited redox peaks with full width at half-maximum of approximately 45 mV, much sharper than t
147 e microscopy and show that the full width at half-maximum of features approximately 86 +/- 4 nm is si
148 omains were estimated from the full-width at half-maximum of gaussian fits to isochronal DeltaF/F plo
149                                Full-width at half-maximum of mass spectral peaks was found to increas
150  in an image, and the apparent full width at half-maximum of small particles.
151 k shifts and variations of the full width at half-maximum of specific Raman lines, respectively.
152 % at room temperature, and the full width at half-maximum of the corresponding PL peak was as narrow
153                   The spectral full-width at half-maximum of the emission is reduced from approximate
154 to an action potential, the full duration at half-maximum of the indicator's fluorescence change (Del
155 rate (V(max)) and the actin concentration at half-maximum of V(max) (K(ATPase)) of myo1e are similar
156 patial resolution, measured as full width at half maximum on single-slice rebinning/filtered backproj
157                                ORS reached a half-maximum on an asymptote after only 2.5 eyes.
158          Wavelet analysis reveals full-width half-maximum oscillations with periodicities ranging fro
159 ltam(50%) is the mass spectral peak width at half-maximum peak height) and mass accuracy (<300 ppb) u
160 to a factor of 2 in mass resolving power (at half-maximum peak height), compared to conventional magn
161 ata points per absorption-mode peak width at half-maximum peak height; and (d) avoidance of FT-ICR ap
162 neas treated with 2,000,000 MW Fl-d showed a half-maximum penetration depth of 156.7 mum compared wit
163 cle from SERCA2 transgenic mice, the time to half maximum postrest potentiation was significantly sho
164 ll described by a single Boltzmann function (half-maximum potential, V1/2, of -44.5; slope factor, k,
165 e to hyperoxia but declines to approximately half-maximum production over an additional 10 min.
166 l-defined Gaussian peak with a full width at half-maximum ranging from 4 to 30 nm.
167 CYP3A4, the inactivator concentration at the half-maximum rate of inactivation and inactivation rate
168 vation, the inactivator concentration at the half-maximum rate of inactivation and inactivation rate
169                               In Part 2, the half-maximum-rate concentrations and inhibition coeffici
170 osphate source, the Raman full peak width at half-maximum ratio for 88 h cultures was similar to that
171   With respect to the periphery, the time to half-maximum response (t1/2a) for arterial insulin was t
172 ssuming that a decrease occurred in the BRI1 half-maximum response values.
173  1.9 min), and the concentration of FMLP for half-maximum response was 28.6 nM.
174 ), EC(50) (the concentration that produces a half-maximum response), and the Hill coefficient (the ma
175 ased on the stimulus strength required for a half-maximum response, of the M-cone population was 38-f
176 dependant manner (effector concentration for half-maximum response=1.2 mM+/-0.7).
177 both fixed- and variable-size (full-width-at-half-maximum) ROI measures of the DOS total hemoglobin c
178 o membrane-bound [OG488]-EGR-hXa (10nM) with half-maximum saturation reached at approximately 6 nM.
179 ering by about 20%-50% between full-width-at-half-maximum settings of 5.0 and 7.5 mm.
180  mass was 29.8 g (3.9-60.2 g) (full-width at half-maximum, signal intensity thresholding algorithm).
181                                              Half-maximum steady-state inactivation was around -43 mV
182 lated from the insect venom concentration at half-maximum stimulation.
183 Rb+ influx in a dose-dependent manner with a half-maximum stimulatory concentration at about 550 nM a
184 narrow peaks of 300- to 600-nm full width at half-maximum that maintain their positions within 60 nm
185 stem resolution was 1.5-1.9-cm full width at half maximum, the sensitivity was (0.6-1.5) x 10(-5) cou
186 re determined by measuring the full width at half maximum through the vessels in the MSOT images.
187 ment and processing the peak's full width at half-maximum to reconstruct CCSDs.
188             After the last immunization, the half-maximum total immunoglobulin titer was stable over
189                            The full width at half maximum transverse resolution at a 1-cm (10-cm) rad
190         The concentration of vanadate giving half-maximum V-nitrogenase activity when added to V-star
191 tware-gated images, and lesion full width at half maximum values decreased by 9.9% +/- 9.6.
192 6); shape was characterized by full width at half maximum values of 174 msec +/- 11, 98 msec +/- 3, a
193               The effective concentration at half-maximum values of the peptides and compounds on ost
194 ated with modulated peak fwhm (full width at half-maximum) values ranging from 90 to 643 ms and modul
195 ofstee plots and substrate concentrations at half-maximum velocity ([S]0.5) that varied from 5 to mor
196 monstrate the first sub-100 nm full-width-at-half-maximum visible-blind red and NIR photodetectors wi
197 eeper by 66.7% (P = 0.001) and full width at half maximum was reduced by 20.6% (P = 0.001).
198 erebral blood flow response at full width at half-maximum was 470 microm under single-stimulus condit
199 shown to be approximately 180 (full width at half-maximum), with no significant loss in resolution as

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