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1 hemically active phases (i.e., compositional inhomogeneity).
2  structures and areas of high magnetic field inhomogeneity.
3 disadvantages due to sample or particle size inhomogeneity.
4 se of the robust preconfigured nature of the inhomogeneity.
5 tion of single-emitter linewidths and sample inhomogeneity.
6 ge single-particle linewidth and from sample inhomogeneity.
7 ular and/or cellular conditions modulated by inhomogeneity.
8 ich possess obvious compartmentalisation and inhomogeneity.
9 metry, spherical topology, and no domains of inhomogeneity.
10 ted the high tolerance of SHARPER to dynamic inhomogeneity.
11 thin a cortical area is their high degree of inhomogeneity.
12 n corresponds to region-dependent mechanical inhomogeneity.
13 anding puzzle is usually explained by charge inhomogeneity.
14 n errors were due to urine specimen handling inhomogeneity.
15 ument variability (< or = 1% RSD) and sample inhomogeneity.
16 ated from a single pixel provide the largest inhomogeneity.
17 mperatures are observed, indicating magnetic inhomogeneity.
18 gnetic field mapping showed no induced field inhomogeneity.
19 d-dependent deflection of current around the inhomogeneity.
20 ct observations of hidden static and dynamic inhomogeneity.
21 ional response of an ensemble is affected by inhomogeneity.
22 an effect on microscopic tumor absorbed-dose inhomogeneity.
23 cipitated gypsum contained a small amount of inhomogeneity.
24 ng large magnetic fields and reducing strain inhomogeneity.
25 although we also consider the possibility of inhomogeneity.
26 anoparticles contributing to aggregation and inhomogeneity.
27 ogical defects can be introduced via density inhomogeneities.
28  intrinsically susceptible to magnetic field inhomogeneities.
29 scattering from charged impurities and other inhomogeneities.
30 e, routine doping becomes problematic due to inhomogeneities.
31 racterized by nonnegligible size of material inhomogeneities.
32 ure owing to nanometre- and micrometre-scale inhomogeneities.
33 the nature and origin of these compositional inhomogeneities.
34  is short compared with the scale of spatial inhomogeneities.
35 tion distribution, and minimized lung tissue inhomogeneities.
36 nd is thought to be homogenous with marginal inhomogeneities.
37 kground and compensates for local brightness inhomogeneities.
38 y are localized and easily pinned by network inhomogeneities.
39 ed by ensemble averaging over their inherent inhomogeneities.
40 eased but did not abolish the extent of lung inhomogeneities.
41 fferent combinations of noise and bias field inhomogeneity, (2) classification of 4 high-dimensional
42 ta and approaches that show that a mid-range inhomogeneity (~30 to 1000 nt) not only exists in mammal
43                                        These inhomogeneities account for the limitations of surface a
44 ble explanation may be the presence of local inhomogeneities acting as pressure multipliers (stress r
45 nifested by a quantum dot formed by chemical inhomogeneity along the tube.
46                                              Inhomogeneity along with the coexistence of Li-rich and
47                                    The axial inhomogeneity also results in an induced pressure gradie
48 s United States are distributed with extreme inhomogeneity among its counties.
49 aPb(9)Sn(9)BiTe(20) phase contains extensive inhomogeneities and nanostructures with size distributio
50 nhomogeneities similar to sunspots, chemical inhomogeneities and other magneto-optical effects.
51                    We compare lateral strain inhomogeneities and the local mosaic structure (crystall
52 fully-ionized media exhibiting steep spatial inhomogeneities and/or fast temporal fluctuations.
53 NP) following CED remains poor due to tissue inhomogeneity and anatomical barriers present in the bra
54 y phase), and with indicators of ventilation inhomogeneity and anisotropic lung and airway growth.
55 confounders could result from radiofrequency inhomogeneity and displaced normal microvasculature.
56  applications, issues surrounding structural inhomogeneity and imprecise assembly have impeded robust
57 ach describes spatial patterns in degrees of inhomogeneity and incorporates an intensity-based correc
58 ed in current studies, although the chemical inhomogeneity and irreversibility of the resulting graph
59 ors, notably signal dropouts due to magnetic inhomogeneity and low signal-to-noise ratio, making it d
60 degrees orbit may have significant erroneous inhomogeneity and overestimation of defect size, in part
61 m two ECG-derived measures of repolarization inhomogeneity and were related to changes in magnitude a
62 effect, suggesting important roles of charge inhomogeneity (and a related classical LMR), although ex
63 en limited by noise, large mobilities, image inhomogeneities, and path crossings.
64 ture in NpSRII to the loss of Arg-72 dynamic inhomogeneity, and an increase in the intensity of the s
65 siders discrete basepairs, thus allowing for inhomogeneity, and apply the model to analysis of DNA cy
66 ing of diagnostic accuracy, control for data inhomogeneity, and identification of publication bias.
67 , such as increased susceptibility, B1 field inhomogeneity, and increased specific absorption rate.
68 an MRI measure of microscopic magnetic field inhomogeneity, and is increased by the paramagnetic effe
69           Fibril insolubility, morphological inhomogeneity, and multiple possible ligand binding site
70 n interpreted as resulting from site-to-site inhomogeneity, and simulated using g strain, a continuou
71                  We also retrieve the radial inhomogeneities apparent in particle composition during
72                                   Electronic inhomogeneity appears to be an inherent characteristic o
73                                         Lung inhomogeneities are associated with overall disease seve
74  However, residual radiofrequency (RF) field inhomogeneities are often unavoidable, leading to artefa
75            Under certain circumstances, such inhomogeneities are required for initial evolution to pr
76  been concluded that ionospheric/mesospheric inhomogeneities are required for their initiation, but i
77                                          The inhomogeneities are revealed by changes in the coherence
78 measurements, whereby relatively large local inhomogeneities are revealed to exist on the epitaxial s
79 pen question as to what the sources of those inhomogeneities are.
80 ve mechanisms capable of generating membrane inhomogeneity are often disregarded.
81 ifacts resulting from local base-composition inhomogeneity are taken into account.
82 amics; they retain very considerable spatial inhomogeneity (as they certainly do in the molecular lim
83 lyte/matrix co-crystallization, spot-to-spot inhomogeneity, as well as a typically low number of repl
84                         Introducing chemical inhomogeneities at nanoscale induces a local change in d
85                            The occurrence of inhomogeneities at steady state and in response to mecha
86 converted domains that lead to compositional inhomogeneities at the microscale.
87                                     Magnetic inhomogeneity at a superconductor (S)-ferromagnet (F) in
88 rromagnet (F) heterostructures with magnetic inhomogeneity at the S-F interface.
89 have focused primarily on eliminating sample inhomogeneities, because conventional single-molecule me
90 ocesses that establish visible morphological inhomogeneities before the onset of gastrulation.
91  used for quantifying the degree of membrane inhomogeneity between individual vesicles within each sa
92  degrees acquisition orbit showed increasing inhomogeneity, both visually and quantitatively (e.g., p
93 rated measurements, which can reveal surface inhomogeneities but cannot unambiguously resolve surface
94  functional reentry with large scale spatial inhomogeneity, but find that elimination of anatomical r
95 odels, it is essential to test for potential inhomogeneities by measuring the abundances out to large
96 agation of light through samples with random inhomogeneities can be described by way of transmission
97                                         Such inhomogeneities can be eliminated by performing measurem
98                      Structural and temporal inhomogeneities can have a marked influence on the perfo
99 lived adsorption events arising from surface inhomogeneity can overwhelm the correlation measurement
100  composed of more than one cell type and the inhomogeneity can substantially confound the transcript
101 netic orientation, and hence the interfacial inhomogeneity, can be controlled by small magnetic field
102 mogeneous magnetic fields, including dynamic inhomogeneity caused by gas sparging.
103          Finally, we suggest that sarcomeric inhomogeneity, caused by asymmetric thick filaments, cou
104 lmonary disease (COPD) because time-constant inhomogeneities could foster overdistention of some lung
105 ects are associated with a strong electronic inhomogeneity, creating an important distinction between
106                      The contributions of B1-inhomogeneity, CSA orientation effects, and the effects
107                                The degree of inhomogeneity (DI) was similar for Chol/DOPC vesicles pr
108                      Because of this kinetic inhomogeneity, differences in the degrees of cure at dif
109 res exhibit a range of dynamic lipid lateral inhomogeneities ("domains").
110 led statistically more clustering (perfusion inhomogeneity) down to tissue volumes less than that of
111 that clustering of MNPs enhances local field inhomogeneity due to reduced field symmetry, which can b
112 l network geometry, a development of density inhomogeneities during contraction, a constant final net
113 reducing signal broadening by magnetic field inhomogeneities during the interrupted data acquisition.
114 stry that lead to nonstoichiometry and depth inhomogeneity during Li2S sputter deposition.
115                     Moreover, local membrane inhomogeneities, e.g., the so-called membrane domains, r
116 f the CL motion induced through the chemical inhomogeneity effects.
117 strated an attenuated increase in conduction inhomogeneity, flattening of restitution slope and decre
118 piratory pressure reduced the extent of lung inhomogeneities from 18 +/- 8 to 12 +/- 7% (P < 0.0001)
119 e for pulse imperfections and magnetic field inhomogeneity, generating an extremely narrow singlet wi
120 remains indirect, and the nature of membrane inhomogeneities has been difficult to characterize.
121 ical understanding for the existence of such inhomogeneities has been lacking.
122 e cells has been challenging in part because inhomogeneity has not usually been definable by optical
123 However, because surface roughness and other inhomogeneities have so far limited surface-plasmon prop
124            Theoretical explanations for this inhomogeneity have ranged from chemical disorder to spon
125 e element analyses show significant chemical inhomogeneities in all three ternary bronze alloys with
126 y nucleating cubic prussian blue crystals at inhomogeneities in carbon nanotubes.
127 te secondary plots in which correlations and inhomogeneities in correlations are more easily detected
128 ion between topological effects and sequence inhomogeneities in determining the thermodynamics and th
129 ated paths with variable velocity because of inhomogeneities in initial stress or fracture energy.
130                    We measured the intrinsic inhomogeneities in initial water and fixed charge densit
131 ur findings support a model in which initial inhomogeneities in inputs are amplified to produce robus
132                                        Local inhomogeneities in lipid composition play a crucial role
133 ientation plasticity is probably mediated by inhomogeneities in local intracortical interactions that
134                                 Considerable inhomogeneities in local reactivity are observed for mic
135 oscopy revealed the presence of micron-scale inhomogeneities in meibum films at higher temperatures.
136 ncreased cellular diffusional resistance and inhomogeneities in oxygen supply on oxygen consumption.
137 the rate at which information in the form of inhomogeneities in particle concentration spread out wit
138 an conceivably generate spatial and temporal inhomogeneities in semi-enclosed spaces within cavities
139         The latter finding is due to spatial inhomogeneities in the anatomy and distribution of ion c
140 viations, correlation coefficients) can mask inhomogeneities in the correlations between properties.
141 rocess, and relate it to the layout of local inhomogeneities in the cortical maps of orientation and
142 tedly small lengths, of only 1 nm, where the inhomogeneities in the density of matter occur within sp
143  coordination of cellular functions; and 3), inhomogeneities in the extravascular tissue lead to spro
144 at vortex clusters appear near magnetization inhomogeneities in the ferromagnet, called bifurcations.
145    In order to treat the time-dependence and inhomogeneities in the incompressibility constraint intr
146  Island Arc in particular, there are lateral inhomogeneities in the mantle.
147 an provide a means of determining microscale inhomogeneities in the mechanical properties of articula
148               We also examine the effects of inhomogeneities in the motor-speeds.
149                       We present a theory of inhomogeneities in the plasma membrane, or rafts, that c
150  theoretical description attributing them to inhomogeneities in the probe excitation process that ren
151 ecognizing the existence of certain in-plane inhomogeneities in the sample.
152 lated, gilding-related and corrosion-related inhomogeneities in the silver base.
153 residuals and appear to be caused by lateral inhomogeneities in the velocity structure of the lower m
154 gy of the ion selective membranes as well as inhomogeneities in their electrochemical properties.
155 Pd82Si18, cavitation is governed by chemical inhomogeneity in addition to topological structures.
156 Here we report the presence of an electronic inhomogeneity in Bi2Sr2CaCu2O8+x, on the basis of observ
157 derstanding the role of particle and lattice inhomogeneity in determining the properties of plasmonic
158 le neutron scattering data indicate that any inhomogeneity in dielectric permittivity is confined to
159 l scattering, metal-ligand interactions, and inhomogeneity in ensemble measurements.
160 echo spectroscopy can simultaneously resolve inhomogeneity in ensembles and fast dynamics by correlat
161 superconductors display unexpected nanoscale inhomogeneity in essential properties such as pseudogap
162                  These results indicate that inhomogeneity in matrix structure and composition may si
163 ught to test the hypothesis that quantifying inhomogeneity in myocardial sympathetic innervation coul
164 the laser scan distance is wide, there is an inhomogeneity in subgrain size, precipitate distribution
165                                          The inhomogeneity in sympathetic innervation in viable dysfu
166             Acute transmural ischemia causes inhomogeneity in sympathetic innervation that may lead t
167 ss spectrometry, we have observed systematic inhomogeneity in the abundance of toxic metals (Cr, As,
168 tes an absence of Ba/K ordering, while local inhomogeneity in the Ba/K distribution takes place at a
169 ticles, which arises from a similarly radial inhomogeneity in the cross-linker concentration.
170                                Only when the inhomogeneity in the density persists through the tempor
171  of multicomponent membranes suggest lateral inhomogeneity in the form of membrane domains, but the s
172 ort has focused on studying wire arrays, the inhomogeneity in the geometry, doping, defects and catal
173   Aberrations introduced by refractive index inhomogeneity in the sample distort the wavefront and en
174 her, the presence of knobs results in strain inhomogeneity in the spectrin network with elevated shea
175    We did not find obvious signs of temporal inhomogeneity in the substitution rates and concluded th
176 s insensitive to particle size, defects, and inhomogeneity in the superlattice.
177 transport in the dye monolayer combined with inhomogeneity in the TiO2 surface reactivity can contrib
178 nanocrystals, revealing significant spectral inhomogeneity in their mid-infrared LSPRs.
179  levels of non-randomness, in particular, an inhomogeneity in their nucleotide composition.
180  transverse relaxation rate from local field inhomogeneities) in a voxel given measurements of the lo
181                          However, microscale inhomogeneities including cell bodies, dendritic structu
182 ty of reasons might account for the observed inhomogeneities including differences in the structure o
183                           The extent of lung inhomogeneities increased with the severity of ARDS (14
184  of the macroscopic centric symmetry through inhomogeneity induced by the high-temperature processing
185  ground-based lidars because spatial aerosol inhomogeneities introduce systematic error into the aver
186 e alternate scenario of quark-hadron-induced inhomogeneities is also discussed.
187               The characteristic size of the inhomogeneities is equal to the square-root of the ratio
188      Measuring and then correcting for these inhomogeneities is the province of adaptive optics.
189              Our analysis suggests that this inhomogeneity is a consequence of proximity to a Mott in
190                                          The inhomogeneity is dependent on the number of pixels used
191     The largest contribution to the observed inhomogeneity is found to be the fluctuating site energi
192  antimonide with an embedded concentric gold inhomogeneity is found to exhibit room-temperature geome
193 intronics where engineering tunable magnetic inhomogeneity is key for certain applications.
194                                              Inhomogeneity is manifest from the short-range where nei
195                                          The inhomogeneity is manifested as spatial variations in bot
196 le of approximately 30 ps, while the rest of inhomogeneity is static on the time scale of the measure
197                            As such, chemical inhomogeneity leads to more difficult cavitation initiat
198 the incorporation of experimentally informed inhomogeneity leads to variation in far-field extinction
199                                         Such inhomogeneity leads to variations of the radical pair pa
200  see text] is independent of temperature and inhomogeneity lengthscale, and [Formula: see text] is a
201 rie-temperatures due to cluster formation or inhomogeneities limited their consideration.
202 esis, indicating that solving magnetic field inhomogeneity may become a powerful way to build correla
203 of DNA to any significant extent, dielectric inhomogeneity modeled in this way has no detectable effe
204 tle explored phenomenon of genomic mid-range inhomogeneity (MRI).
205    By minimizing interemitter electric field inhomogeneities, much larger arrays having closer emitte
206 R spectra, 2DIR spectra are sensitive to the inhomogeneity naturally present in any solvated protein
207                                          The inhomogeneities observed for TEOS sol-gels are different
208 le-free i.e. they are characterized by large inhomogeneities of degrees like most complex networks.
209                      Models with geometrical inhomogeneities of fracture thresholds can limit the siz
210 ults presented here show that with resistive inhomogeneities of large spatial scale, all three of the
211                               The calculated inhomogeneities of segments of the peptide predict exper
212                 On the other hand, resistive inhomogeneities of small spatial scale produce a defibri
213                                          For inhomogeneities of sufficiently large diameter relative
214 y of dark times imply the dynamic and static inhomogeneities of the interfacial ET dynamics.
215 al and minimizes the associated cracking and inhomogeneities of the resulting inverse opal films.
216 wice and as such can elucidate couplings and inhomogeneities of the various degrees of freedoms.
217 imulations on simple networks of faults with inhomogeneities of threshold develop episodes of lacunar
218       Antiinflammatory therapy decreased the inhomogeneity of atrial conduction after atriotomy (1.16
219 sociated with a proportional increase in the inhomogeneity of atrial conduction and AF duration.
220                                          The inhomogeneity of atrial conduction of the atriotomy and
221 tin, collagen-1, and collagen-3; reduced the inhomogeneity of atrial conduction; and attenuated atria
222 hemical shifts well beyond the typical field inhomogeneity of clinical MRI.
223 detectability and reproducibility related to inhomogeneity of color development, which leads to low a
224                                              Inhomogeneity of conduction correlated with myeloperoxid
225                                              Inhomogeneity of conduction was quantified by the variat
226  overlooked aspect of the noise arising from inhomogeneity of copies of biomolecules in a realistic b
227 resulting directional anisotropy and spatial inhomogeneity of cytoplasmic rheology may play an import
228                         Patients had greater inhomogeneity of flow than volunteers.
229 l cells and fiber disorganization related to inhomogeneity of intracortical signal intensity.
230 ected the proarrhythmic status of the heart (inhomogeneity of left ventricular repolarization).
231 o the low solubility of lipid A in water and inhomogeneity of lipid A preparations.
232                                      Lateral inhomogeneity of lipid and protein composition is curren
233                                      Spatial inhomogeneity of liquid crystals offers the capability t
234 so for the first time accounting for spatial inhomogeneity of nuclear organization.
235 (pointiness of pixel distribution), entropy (inhomogeneity of pixel distribution), and mean value of
236 f the sensory hair cells; we argue that this inhomogeneity of properties not only protects the hair b
237 simulation studies showed that the dendritic inhomogeneity of spike-timing-dependent synaptic modific
238                    The vibrational frequency inhomogeneity of the amide-I band arises from fluctuatio
239 domization process preserves the short-range inhomogeneity of the corresponding natural sequences, th
240 ed photoelectron spectra reveals the spatial inhomogeneity of the Dirac energy shift and that a phono
241       The proposed approach requires neither inhomogeneity of the ferromagnetic film nor nonuniformit
242 ent study has implications for resolving the inhomogeneity of the general electrochemically driven ph
243                                We found that inhomogeneity of the reaction mixture does not prevent h
244 ion and repolarization; 3) the physiological inhomogeneity of transmural myocardial mechanics and the
245 which we interpret as a signature of surface inhomogeneities on one of the components.
246 arge-scale structure of the universe suggest inhomogeneities on scales between 100h-1 and 150h-1 Mpc
247 by transient immobilization owing to spatial inhomogeneities on the plasma membrane.
248                        There are significant inhomogeneities on these faults, which we assume will ha
249 erspective and examine the role of resistive inhomogeneity on defibrillation efficacy.
250 y the role of the spatial scale of resistive inhomogeneity on defibrillation.
251                  The principal source of the inhomogeneity on the large scale is the influence of geo
252 tz particles, gas bubbles, and compositional inhomogeneity on the melter feed viscosity were determin
253 ch and Sn-rich regions, creating substantial inhomogeneity on the nanoscale.
254 periment to explore the effect of structural inhomogeneity on the optical response in DNA-gold nanopa
255                                       Plasma inhomogeneities orbiting a few kilometres above the star
256 s a natural mechanism for the self-organized inhomogeneities over both nanometre and micrometre scale
257 luding determinations of shift effects under inhomogeneities overwhelming individual chemical identit
258 otonic crystals with transverse permittivity inhomogeneity perpendicular to the traveling direction o
259 crystal classes, and for example, structural inhomogeneities, phase transitions, ferroic order and re
260 based analysis of regional-ventilation-delay inhomogeneity provides a good estimate of the amount of
261               The mechanism by which elastic inhomogeneity reduces the yield stress is explained and
262 n variously attributed to surface brightness inhomogeneities similar to sunspots, chemical inhomogene
263 tensity information to address the intensity inhomogeneity, spatial cortical thickness constraint to
264 )] and W[PSI(+)] fibers contained structural inhomogeneities, specifically local regions of static cu
265                                         This inhomogeneity strongly suggests that disorder or local s
266  temperature is negligible and in which flow inhomogeneities such as shear bands or fractures are abs
267 y is extremely sensitive to distributions of inhomogeneities, suggesting that statistical rules for l
268 o inelastic clustering or persistent density inhomogeneity, suggesting two alternative explanations f
269 species displays a larger degree of spectral inhomogeneity than the ferric species, as reflected by m
270 eCo displays nanoscale chemical and magnetic inhomogeneities that affect the spin dynamics.
271  h-BN substrates have mobilities and carrier inhomogeneities that are almost an order of magnitude be
272  materials, which are brittle materials with inhomogeneities that are not negligible compared with th
273 cells has the potential downside of creating inhomogeneities that may predispose the heart to reentra
274   Biological specimens are rife with optical inhomogeneities that seriously degrade imaging performan
275 BW), is a noninvasive measure of ventilation inhomogeneity that holds promise as an objective physiol
276                                Also, spatial inhomogeneity that is inherent to crystalline matrixes c
277                   Regional-ventilation-delay inhomogeneity that quantifies heterogeneity of ventilati
278  existence of polar nanoregions, a nanoscale inhomogeneity, that coexist with normal ferroelectric do
279             We defined as the extent of lung inhomogeneities the fraction of the lung showing an infl
280 h as the formation and the effect of network inhomogeneities, the manifestation of the crosslink rela
281 on in the presence of marked B0 and B1 field inhomogeneities, the MR fingerprinting framework was ext
282        Two key results arise from geographic inhomogeneity: the "subsistence boundary," land so poor
283                     With small spatial scale inhomogeneity, there are no similar restrictions.
284 ale atmospheric motions' phase space and the inhomogeneities therein.
285 s of the observation, suggesting atmospheric inhomogeneity; they are consistent with two 200-km-high
286          Here we show that such pre-existing inhomogeneities, though feasible causes, are not require
287 ng symmetry by tuning the degree of magnetic inhomogeneity through the thicknesses of the holmium inj
288 vated to develop strategies that allow these inhomogeneities to be more easily detected.
289 ion once the 2DES is formed and relates this inhomogeneity to recently reported magnetic order at STO
290        The technique enables one to quantify inhomogeneity, vibrational couplings, spectral diffusion
291                   Regional-ventilation-delay inhomogeneity was excellently correlated with tidal recr
292                                          The inhomogeneity was not be observed if an average of a lar
293                                           No inhomogeneity was observed when an average of a large nu
294                                  Despite the inhomogeneity, we find that every pairing gap develops l
295                                         Lung inhomogeneities were greater in nonsurvivor patients tha
296 ured by CT scan as gas/tissue ratio and lung inhomogeneities were measured as lung regions with lower
297 , and only homogeneous broadening and static inhomogeneity were observed.
298                           Strong conductance inhomogeneity, which is associated with the fluctuations
299  protein layers and determined their spatial inhomogeneity with the help of the hyperspectral imaging
300 correspond with cyto- and myeloarchitectonic inhomogeneities within the barrels and are enriched in t

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