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1 iomedical conditions characterized by subtle time-dependent changes.
2 is past year, may provide some insights into time-dependent changes after superior oblique palsy as w
3                                              Time-dependent changes also were observed during the tes
4                           Furthermore, these time-dependent changes appeared to be unaffected by the
5  after an initial 1 h incubation few further time-dependent changes are observed.
6                                          For time dependent changes, cell adhesion, vasculature devel
7 se data demonstrate that microglia exhibit a time dependent change in morphology after reperfusion an
8 nd mice trained to find the platform, subtle time dependent changes in editing patterns are seen as s
9                        Additionally, we show time dependent changes in RNA profiles of the draining l
10     Both techniques demonstrated a dose- and time-dependent change in [(3)H]palmitate labeling of alp
11  timers (tFTs) report on protein age through time-dependent change in color, which can be exploited t
12 month mortality was strongly associated with time-dependent change in eGFR, hepatorenal syndrome, dia
13                                   A complex, time-dependent change in enzyme intrinsic fluorescence w
14  of allele age, these distributions mark the time-dependent change in genetic differentiation.
15 its synthesis, perhaps before it undergoes a time-dependent change in its conformation or aggregation
16                Following photolysis of CO, a time-dependent change in ligation is evident in both ste
17 n models adjusted for age, sex, baseline and time-dependent change in mean arterial pressure, and cli
18 rvested during carotid endarterectomy show a time-dependent change in plaque composition characterize
19                                          The time-dependent change in Rap1 immunoreactivity was paral
20 e formation with a specific target lead to a time-dependent change in the branch-specific accumulatio
21 ction, control of the qubit state produces a time-dependent change in the frequency of the light fiel
22               Stimulation with TNF induces a time-dependent change in the level of Jak2, c-Src, and P
23         QGE031 elicited a concentration- and time-dependent change in the provocative concentration o
24 ct 5-HT2C receptor antagonists resulted in a time-dependent change in the quaternary organization to
25             Thus, we have uncovered a novel, time-dependent change in the relationship between total
26  determines propagation between domains is a time-dependent change in the sensitivity of ryanodine re
27  for charge-trapping dynamics that renders a time-dependent change in the threshold voltage as the do
28 rahydrocannabinol also attenuated the normal time-dependent change in ventrostriatal activation durin
29 upport the view that HSV-1 virions undergo a time-dependent change in which the tegument is transform
30 d reference region model, which accounts for time-dependent changes in (18)F-fallypride displacement.
31 he model was based on a synthesis of data on time-dependent changes in atomic force microscopy measur
32 ice near the end of the dark phase, and with time-dependent changes in basal forebrain acetylcholines
33 summary, these data show that KMeth produces time-dependent changes in basic membrane properties and
34                       Kinetic analysis shows time-dependent changes in beta and delta binding that we
35           For glycine-conjugated bile salts, time-dependent changes in binding did not occur, consist
36 is was a prospective cohort study evaluating time-dependent changes in biomarkers of inflammation and
37                                              Time-dependent changes in both fluorescence anisotropy a
38        Alcohol dependence is associated with time-dependent changes in brain GABA(A) receptor density
39 d reaction medium and subsequent analysis of time-dependent changes in bubble dimensions.
40 ation through MLCP deinhibition, we compared time-dependent changes in Ca(2+), myosin light chain (ML
41                                              Time-dependent changes in candidate cell(s) were evaluat
42 K1 and CKD2 inhibitors on population growth, time-dependent changes in cell cycle distributions, and
43 ng of cells and multicellular organisms, and time-dependent changes in cell structure.
44 high-power computational analysis to profile time-dependent changes in cellular phospholipids after t
45 f asparaginyl and glutaminyl residues causes time-dependent changes in charge and conformation of pep
46  kinetic model was developed to describe the time-dependent changes in concentration of a lipid under
47 numeric integration methods accounts for the time-dependent changes in concentration.
48  kinases (RTKs) involves complex ligand- and time-dependent changes in conformation and modification
49                                              Time-dependent changes in CRH concentrations were assess
50 temporal lobe epilepsy was used to study the time-dependent changes in dentate gyrus circuitry after
51     Here we used ultrasonography to evaluate time-dependent changes in diaphragm function in vivo, by
52 nse to denervation, we have investigated the time-dependent changes in dopamine D2, D3, and D4 recept
53 graphy as a reliable technique for assessing time-dependent changes in dystrophic diaphragm function
54  low starch contents and were not related to time-dependent changes in either the rate of photosynthe
55       Data from dated human samples revealed time-dependent changes in endometrial apoptosis precedin
56                                          The time-dependent changes in ERK activation were examined i
57 cidualization of ESC resulted in significant time-dependent changes in expression of AKR1C3 and SRD5A
58 nteracts with older filaments by recognizing time-dependent changes in F-actin structure associated w
59                   Therefore, we suggest that time-dependent changes in factors within AB descendants
60  whether these states could be inferred from time-dependent changes in feeding-related measures.
61 otron small-angle X-ray diffraction to probe time-dependent changes in fibrillar structure during in
62  F-EGF with cells was monitored by observing time-dependent changes in fluorescence anisotropy follow
63 pressing 32D cells was observed by measuring time-dependent changes in fluorescence anisotropy follow
64                                              Time-dependent changes in FRET, Fourier transform infrar
65 pared between never and current smokers, and time-dependent changes in gene expression were studied i
66 NA microarray expression data to investigate time-dependent changes in gene expression, following ind
67                   In particular, we document time-dependent changes in genes involved in adhesion and
68 ll survival, non-F- and F-cell survival, and time-dependent changes in HbF content (%HbF) for the sur
69 imization with experimental data that relate time-dependent changes in keratinocyte surface area duri
70 he complexes were positively correlated with time-dependent changes in Lhcb1 transcript abundance, im
71  these intermediates can be gleaned from the time-dependent changes in local probes of macromolecular
72                             Thus, SVT causes time-dependent changes in LV geometry and function and t
73 graphy as a reliable technique for assessing time-dependent changes in mdx diaphragm function in vivo
74                                          The time-dependent changes in metabolite abundances, as well
75                                              Time-dependent changes in Mg(2+)-ATPase accompanying pro
76 ntly, the model can also reproduce the rapid time-dependent changes in mitochondrial NADH and Ca2+ in
77 that IFN-beta treatment induces specific and time-dependent changes in multiple mRNAs in lymphocytes
78       However, little is known regarding how time-dependent changes in nanoparticle structure due to
79 ues for GroEL allosteric rates are used, the time-dependent changes in native-state yield at eight Gr
80  inherently able to tell time as a result of time-dependent changes in network state.
81      These results highlight the contrast in time-dependent changes in neurochemical responsiveness t
82 ged cocaine self-administration and requires time-dependent changes in neuroplasticity at the level o
83 ncy of virion maturation resulted in greater time-dependent changes in neutralization potency and a m
84 extent of virion maturation, we investigated time-dependent changes in neutralization sensitivity ass
85                                              Time-dependent changes in nicotinic acetylcholine recept
86 l (AA) and sickle (SS) RBCs by measuring the time-dependent changes in osmotic fragility and RBC volu
87 sh a stable baseline, the concentration- and time-dependent changes in outflow facility induced by CH
88 on 40 consecutive KTx recipients to evaluate time-dependent changes in oxidative stress-related param
89 out 70% CD56+ cells on PAEC monolayer led to time-dependent changes in PAEC monolayer morphology.
90                                              Time-dependent changes in physicochemical properties of
91                             Here, we examine time-dependent changes in protein-protein interactions t
92 es whose expression shows striking dose- and time-dependent changes in response to 3-30 microM MSA ov
93                                          The time-dependent changes in rVR1-mediated conductance due
94                 RPPA characterization of the time-dependent changes in signaling pathways revealed th
95  competition, which involves quantifying the time-dependent changes in substrate or product ratios in
96                                          The time-dependent changes in the 2D IR vibrational echo lin
97 that oxidation resulted in concentration and time-dependent changes in the activation threshold for S
98 mental events are orchestrated before MGA by time-dependent changes in the array of maternal transcri
99 ts, differences among bacterial species, and time-dependent changes in the bacterial population are i
100         Our results suggest that progressive time-dependent changes in the balance between MMP activi
101 ytic replication cycle, we observed ordered, time-dependent changes in the cellular gene expression p
102 folding trajectories under force in terms of time-dependent changes in the distance between the beads
103                                              Time-dependent changes in the expression of 146 genes fr
104                                              Time-dependent changes in the extent of deglutathionylat
105                                              Time-dependent changes in the inflammatory reaction and
106                              On the basis of time-dependent changes in the intensity and shape of the
107  spectroscopy (SERS) has been used to detect time-dependent changes in the intensity of the vibration
108                       However, KMeth induced time-dependent changes in the intrinsic membrane propert
109      Thus, in keeping with recent reports of time-dependent changes in the ionic permeability of some
110                          This study assessed time-dependent changes in the level of BVR, following pe
111                                              Time-dependent changes in the localization of L-plastin
112                             We also examined time-dependent changes in the location of these cytoskel
113 t this brief timescale, neuronal adaptation--time-dependent changes in the size of successive respons
114                                          The time-dependent changes in the specific activity of cytos
115                         We hypothesized that time-dependent changes in the thanatomicrobiome within i
116 are causally related and speculate about how time-dependent changes in their interactions may regulat
117                                         With time-dependent changes in trimer lattices, we can genera
118 ence electron density maps that displays the time-dependent changes in underlying structure as a reac
119 Research Database to provide current data on time-dependent changes in US cardiac transplant practice
120 lysaccharide alone demonstrated significant, time-dependent changes in vital signs, white blood cell
121  1.4, respectively; P = .0008), with similar time-dependent changes observed among individual animals
122 e data show that these effects derive from a time-dependent change of the degree of DA S(1)-state pol
123 d an ultrasonography technique for measuring time-dependent changes of diaphragm function in mdx mice
124 namic nature of connectivity we explored the time-dependent changes of effective connectivity during
125                                          The time-dependent changes of human memory T cell repertoire
126 tatistical models that take into account the time-dependent changes of the clinical attachment loss m
127                              Analysis of the time-dependent changes of the complex frequency-dependen
128                                              Time-dependent changes of the injected activity per orga
129  hippocampal apoptosis presented significant time-dependent changes (P<0.01) within 2 weeks, and thei
130 itiation of receptor phosphorylation exhibit time-dependent changes, suggesting multiple associations
131 in in male Sprague-Dawley rats to assess the time-dependent changes that might potentially precipitat
132                    Together, our data reveal time-dependent changes to gene expression in uxs1 mutant
133 set, yet completely overlooked heterogeneous time-dependent changes within sub-sets of genes.

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