戻る
「早戻しボタン」を押すと検索画面に戻ります。

今後説明を表示しない

[OK]

コーパス検索結果 (1語後でソート)

通し番号をクリックするとPubMedの該当ページを表示します
1 which are used for post (14)C determination "corrections".
2 296 vs. 0.184, p = 0.040 after multi-testing correction).
3  CRISPR/Cas9-based genome editing (V247fs-MT-correction).
4 etween 0.41 and 0.59 (P = 0.0001, Bonferroni correction).
5 man correlation metric with multiple testing correction.
6 otein families perform key steps in mismatch correction.
7 (-4)) and was significant after a Bonferroni correction.
8 ed widely among centers, even after case-mix correction.
9 e a better approach to traditional PCA-based correction.
10 rs is often insufficient for full phenotypic correction.
11 rdiac output index remains low after preload correction.
12 veral different distances without the use of correction.
13 near and logistic regression with Bonferroni correction.
14 k sum test, and post hoc Dunn test with Holm correction.
15 east tumors was computed with and without B1 correction.
16 s contrast transfer function measurement and correction.
17 ally reaches a decision regarding the way of correction.
18 m for both quantum sensing and quantum error correction.
19 igh throughput algorithm for long read error correction.
20 rection with the ground-truth CT attenuation correction.
21 mately 14% of the sample, required structure correction.
22 imited accuracy compared with CT attenuation correction.
23 riation in fat was reduced to 0.96% after B1 correction.
24  which remained significant after Bonferroni correction.
25 ignificance threshold after multiple testing correction.
26  test, but only the latter passed Bonferroni correction.
27 ften leading to inadequate disease phenotype correction.
28 usion with decompression and spine deformity correction.
29 ameters in breast cancer with and without B1 correction.
30  Msh2, Mlh1 and Exo1 influence the extent of correction.
31 fts model with T1 values before and after B1 correction.
32 I (50%) were within +/-0.25D of the intended correction.
33 artment model with flow-dependent extraction correction.
34 no postlabeling cleanup or isotopic impurity corrections.
35 ntervention, mainly due to incisional hernia corrections.
36 fluence of waveform distortion on hydrophone corrections.
37 A11 was associated with ALT after Bonferroni correction (1.0 x 10(-7)).
38 e 2-tissue model with estimated blood volume correction (2Tv) performed best, particularly in regions
39  P = 0.002), mainly due to incisional hernia corrections (3% vs 14%; P = 0.047).
40 r debris, as well as participating in "cross-correction," a process that supplies neurons with key fa
41 aim of this study was to compare attenuation-correction (AC) approaches for PET/MRI in clinical neuro
42      Metalic implants may affect attenuation correction (AC) in PET/MR imaging.
43 shot noise, the precision of the SPIFF-based correction achieves (and can even exceed) the unbiased C
44                      After family-wise error correction across all traits (FWERacross), an increased
45                        This is an unbalanced correction across the two eyes where one eye is correcte
46 ated algorithms than typically employed: the correction algorithm must take into account whether isot
47 the use of physical barriers or active drift-correction algorithms.
48  (76.6%) were within +/-0.5D of the intended correction and 23 eyes (76.6%) in group I and 15 eyes in
49 T for sequence alignment and Fermi for error correction and sequence assembly.
50  forecast approach combining dynamical error correction and statistical filtering techniques.
51 ecast approach that combines dynamical error correction and statistical filtering techniques.
52 he respondents claimed about needing to wear correction and their actual use of correction, there wer
53 le elucidating the physical origins of these corrections and generalizing straightforwardly to more c
54                             Performing these corrections and quantifying with surface area calibratio
55 ssociated with BD (P<0.05 after Bonferroni's correction) and disease specificity was supported by the
56 itional neuroimaging method for brain volume correction, and (3) allow more valid and accurate resolu
57 al temperature, (vi) internal standard-based correction, and (vii) simple recalculation based on the
58 s impending challenges, including aberration correction, and also examine current issues and solution
59 gmentation, semi-automated user-guided error correction, and data analysis.
60 ent a tool that combines fast mapping, error correction, and de novo assembly for processing single-m
61 ests were performed with and without optical correction, and in monocular and binocular conditions; o
62 tric suture position and tension, inadequate correction, and lash location.
63 nt the substantial overhead of quantum error correction, and the need to compile into discrete gate s
64   The results indicate that the reabsorption corrections, applied on molecular emission spectra and q
65 tion factors, and 3) the use of a regression correction approach.
66           We determined that age-contaminant corrections are required to accurately report contaminan
67  of view of 450 x 450 mum(2) and expands the correction area to nine times that of conventional metho
68 significant genes (p < 0.05 after Bonferroni correction) associated with T1D, CD, RA and T2D.
69 ucted of 319 patients who underwent surgical correction at a tertiary medical center for congenital p
70  preprocessing bulk nonlinear retention time correction at the raw data level.
71 poverty level, lacking/not using near-vision correction at time of examination, and impaired distance
72 ependent accuracy of atlas-based attenuation correction (ATAC) for brain positron emission tomography
73 AC (ZTACUC) and a CT atlas-based attenuation correction (ATAC).
74 g transaxial reconstructed images and linear correction based on phantom data acquisitions.
75 tial inaccuracies in MRAC may affect scatter correction, because the attenuation image (mu-map) is us
76 use of visual impairment in children despite correction being highly cost-effective.
77 ldren who received overnight orthokeratology correction between January 1998 and December 2013.
78 emain significant after multiple comparisons correction, but exhibited a similar sexual dimorphism.
79 ate acquisition, combined with micromovement correction by blood oxygen level-dependent sensitive ind
80 s were still considered noteworthy after the correction by the false-positive report probability.
81 tatistical comparisons without multi-testing correction can generate a large number of false positive
82 eteroduplex DNA is strongly polar, favouring correction close to the DSB end.
83 s associated with BMI after multiple testing corrections (combined P = 2.20 x 10(-4)).
84  refractive error (reversible with spectacle correction) continue to cause most cases of blindness an
85 mework also provides a new approach to batch correction, correcting batch effect (correctBATCH), whic
86                                         Bias correction could remove more than 40% of the bias for mi
87                          Nearly all mismatch correction depends on the proofreading activity of DNA p
88 usting for CRP and AGP.The use of regression correction (derived from internal data), which accounts
89 tate between-sample comparisons and/or batch correction due to system drift.
90 isualize rare and unexpected events of error correction during anaphase in wild-type or mutant cells.
91                                     The gene correction efficiency was 20.6% in heterozygous cells an
92 in instrument parameters and natural isotope correction enable more accurate measurement of metabolit
93 structed using iterative algorithms with all corrections enabled.
94  systematically compared six different error correction enzymes across 11 conditions.
95 odes (a variant of topological quantum error correction), especially if the goal is to minimise overh
96 rimentally constrained model to evaluate the correction factor (Phi) needed for chamber SOA mass yiel
97                       This method includes a correction factor for each protein, based on the peptide
98                               We introduce a correction factor to adjust for biases due to non-optima
99                                          The correction-factor approach yielded a more modest reducti
100 ease than was achieved with the exclusion or correction-factor approaches, and accounting for malaria
101 specific and predictable, the application of correction factors allows abundance estimates.
102                                              Correction factors are proposed that estimate the relati
103                        Without trend data or correction factors for dolphin availability, the impact
104 n framework to calculate and apply empirical correction factors for ligase bias.
105  key functional groups and carbon types, and correction factors were determined.
106 ons >1 g/L, 2) the application of arithmetic correction factors, and 3) the use of a regression corre
107 ons >1 g/L, 2) the application of arithmetic correction factors, and 3) the use of regression approac
108 on >1 g/L), 2) the application of arithmetic correction factors, and 3) the use of regression correct
109                                              Correction for 'Design and development of photoanodes fo
110                                              Correction for 'Privileged chiral N-heterocyclic carbene
111                                              Correction for 'Selective photocatalysis of lignin-inspi
112                                              Correction for 'Understanding MAOS through computational
113 sed on a threshold of 1 x 10(-5) (Bonferroni correction for 3131 haplotype blocks), four gene loci yi
114 cant at a P value of <1.0x10(-3) (Bonferroni correction for 50 tests).
115  children whose mothers had not smoked after correction for age, sex, birth weight, height, body weig
116 d functionalities have been added, including correction for cell-type heterogeneity, network analysis
117 ients (5.1%) reported the need for spectacle correction for certain activities.
118 determined that the respondent actually wore correction for certain activities.
119                              The accuracy of correction for count losses and randoms was 3.9%.
120                             Therefore, after correction for CR1 copy number, the Sl and McCoy polymor
121 concentrations were not measured; regression correction for CRP concentrations increased the estimate
122 erves as a reference and provides a built-in correction for environmental effects.
123                                              Correction for H-D exchange is required for accurate ass
124 gh resolution, we found that natural isotope correction for high-resolution labeling data requires mo
125                                      Further correction for malaria does not appear to materially alt
126                                Conclusion B1 correction for more accurate T1 values should be conside
127 sing a whole-brain, mixed-effects ANOVA with correction for multiple comparisons at currently recomme
128 ied 11 independent SNPs in eight genes after correction for multiple comparisons by a false discovery
129  VT and clinical or cognitive measures after correction for multiple comparisons.
130 cleus was found in PD-ICB, but not surviving correction for multiple comparisons.
131 one of the significant associations survived correction for multiple comparisons.
132  CpGs were associated with incident AF after correction for multiple testing (FDR < 0.05).
133  from healthy control subjects (n=121) after correction for multiple testing (P<7.3e-5) and confoundi
134 ated variables was associated with EFS after correction for multiple testing, but this analysis was u
135                                        After correction for multiple testing, three of the 78 microRN
136 associated with BUA and seven with VOS after correction for multiple testing, with one novel locus fo
137 ns remaining statistically significant after correction for multiple testing.
138 d not remain statistically significant after correction for multiple testing.
139 , this association was not significant after correction for multiple testing.
140 information requires special care, such as a correction for naturally occurring isotopes, or overlapp
141         KEY POINTS: Monovision is an optical correction for presbyopes that consists of correcting on
142       Differences remained significant after correction for several confounders.
143 re was no statistical difference in OS after correction for sex, age at the diagnosis of distant meta
144 tatistical uncertainties associated with the correction for spectral interferences limit the number o
145  the ng/mL range with single-stage MS, after correction for spray instability.
146         Re-evaluation of the growth data and correction for the bias result in significant positive g
147  depressive symptoms) were significant after correction for the multiple hypotheses tested.
148 servations of vertical land motion (VLM) and corrections for local geoid changes resulting from ice m
149                       Results were robust to corrections for sample-selection bias and to the exclusi
150         The mean (SD) result of the Dresdner correction formula (17.6 [4.1] mm Hg) was closer to the
151 ce reliance on GAT readings, and abandon any correction formula.
152                     Application of GAT-based correction formulas involves a possible risk of creating
153 cal charge of Weyl points, and non-quantized corrections from disorder and additional bands can be sm
154  will depend on fault-tolerant quantum error correction (FTQEC) to compute reliably.
155 ombination with built-in manual tracking and correction functionalities.
156  children will require additional refractive correction given the high variability of refractive outc
157            All data and scripts used in this correction have been made available as a new, updated Gi
158  Using habitual distance visual acuity (with correction if prescribed), participants were assigned to
159  power, (ii) initial buffer resistance-based correction, (iii) rational cooling adjustment, (iv) elim
160                                    Immediate correction improves data quality, particularly in patien
161 ify the effect of T1 estimation in fat by B1 correction in breast magnetic resonance (MR) imaging at
162 lants, to be used for whole-body attenuation correction in integrated PET/MR scanners.
163 ble progress has been made toward dystrophin correction in mice.
164 n PET images depends on accurate attenuation correction in reconstruction.
165 he success and failure rates of scleral lens correction in severe keratoconus.
166                      There was a significant correction in the angle of esotropia (ET) from 39+/-17De
167 eads to a reciprocal pattern of histological correction in the respective tissues when comparing intr
168 nfluence PNVI and utilization of near-vision correction in the US.
169 andidate biomarkers that survived Bonferroni correction in the validation step.
170 timulation produced large polarity-dependent corrections in arm position.
171 tually affect many others while, conversely, corrections in one database may fail to percolate to oth
172  2 tested feedback control, examining online corrections in response to inconsistent perturbations of
173 ngs indicate that the main pathway for error correction is DNA polymerase dissociation-mediated DNA t
174                    A formula for making this correction is presented, and its ramifications on the de
175 e tested the hypothesis that use of artifact correction logic would improve the specificity of clinic
176 ative to the characteristic split-belt error-correction mechanisms (i.e. muscle activity and kinemati
177 ontrol loops as opposed to longer-term error correction mechanisms commonly associated with split-bel
178               By contrast, a reference-based correction method performed well and did not show these
179                              Enzymatic error correction methods are cost-effective means to ameliorat
180                 Current MR-based attenuation correction methods for body PET use a fat and water map
181                  We compared eight cell-type correction methods including the method in the minfi R p
182 ation of epsilon-values according to current correction methods is prone to considerable systematic e
183  errors in gene assemblies, to profile error correction methods, and to benchmark DNA synthesis metho
184 re available for performing integrated error correction, micro-assemblies and alignment.
185                                        These corrections mimicked those evoked when chair velocity wa
186  model, robust standard errors in a variance-correction model, random effect in a frailty model).
187                                     Variance-correction models may be useful if predictor selection i
188       When compared with a balanced eye near correction, monovision produced both a clear reduction o
189 liable and reproducible MR-based attenuation correction (MR-AC).
190                               MR attenuation correction (MRAC) is generally conducted by image segmen
191                             After Bonferroni correction, no SNPs were associated with early AMD, late
192  recovers the electrophoretic and relaxation corrections obtained by Debye-Huckel-Onsager theory, whi
193 (FLNC) reads were analyzed, resulting in the correction of 2241 mis-annotated genes and the identific
194  CRISPR-Cas9-mediated genome editing for the correction of a TGFBI mutation in GCD patient-derived pr
195        Inhibition of oncogenic signaling and correction of aberrant metabolic processes may be key pa
196                                              Correction of abscission delays in SCCRO-deficient cells
197 rom confocal input images and enables manual correction of automatic segmentation results or direct i
198 ated that reduction of CSF spermine reflects correction of brain lesions in these animals.
199 tide ligand-or by genetic or pharmacological correction of ceramide levels-normalizes beta1-integrin
200  osmotic demyelination, we showed that rapid correction of chronic hyponatremia induces severe altera
201 tes that regression allows for a better user correction of control commands than classification.
202  elucidation of its functional mechanism and correction of cystic fibrosis causing mutants.
203 erformed in one patient, was associated with correction of dysbiosis, rapid clinical improvement, and
204 on defects in cancer cells by inhibiting the correction of erroneous KT-MT interactions.
205                               Differences in correction of errors produced during replication of the
206               We investigated whether motion correction of gated (18)F-fluoride PET/CT and PET/MRI of
207 enome editing has potential for the targeted correction of germline mutations.
208 est that it has potential to be used for the correction of heritable mutations in human embryos by co
209 ion is a predictable and safe method for the correction of high corneal astigmatism in complicated ca
210                                       Motion correction of hybrid (18)F-fluoride PET markedly improve
211                                       Abrupt correction of hyponatremia resulted in vigorous activati
212  because our computational approach to error correction of immunosequencing data is nearly as powerfu
213                                      Whether correction of iron deficiency with (intravenous) ferric
214 s, leading to non-compliance and ineffective correction of iron-deficiency anaemia.
215                                              Correction of MCP1 deficiency may thus be a new therapeu
216 exists from G1 through metaphase, allows for correction of misattachments.
217 f myotonia, which was accompanied by partial correction of misregulated alternative splicing.
218                                        Thus, correction of mitochondrial dysfunction and induction of
219 depend on a multifaceted approach, including correction of modifiable preoperative risk factors and p
220                    Developing a method for a correction of overlapping peaks is the primary objective
221             Footprint-free CRISPR-based gene correction of PSCs derived from patients carrying a homo
222                        Methodologies for the correction of respiratory motion in PET acquisitions wit
223                         Importantly, genetic correction of Shrub levels in the FXS model prevents syn
224                                     Mismatch correction of strand invasion heteroduplex DNA is strong
225 d increased GOT-mediated metabolism in vitro Correction of stroke-induced hypoxia using supplemental
226 f interest with high sensitivity, allows for correction of targeted information, enables better quant
227  imperfect, and completion involves the slow correction of the accumulated errors.
228 without recurrence of sickle crises and with correction of the biologic hallmarks of the disease.
229 or CD8 + single-positive T cells, confirming correction of the cellular X-SCID phenotype.
230 , each new calculation cycle begins with the correction of the components' concentrations in the near
231  are rescued by CRISPR/Cas9-mediated genetic correction of the FUS mutation in patient-derived iPSCs.
232                         Here we describe the correction of the heterozygous MYBPC3 mutation in human
233 Gs, allowing validation and in few instances correction of the reference genome sequence assembly.
234                                              Correction of this mutation in iPSC using CRISPR/Cas9 ed
235                                         Upon correction of VD levels, TGF-beta1 and TIMP-1 levels wer
236       Prospective studies on VitD status and correction of VitD deficiency in the setting of alloSCT
237  state to the receiver without requiring any corrections on the receiver's side.
238                       After multiple testing corrections, only 1 prognostic marker contributed a sign
239  can be modeled in this system using genetic correction or introduction of mutations via CRISPR/Cas9
240 mentally derived case-dependent mathematical corrections, or physicochemical removal of interfering e
241 (MPAO), which enables simultaneous wavefront correction over a field of view of 450 x 450 mum(2) and
242                             Application of a correction procedure to the template gray scales allowed
243                               After the same correction procedure was applied to the abdomen phantom,
244 tion deficits in models and after applying a correction, projected precipitation in this region shows
245 ET data were reconstructed using attenuation correction provided by both standard CT and iMAR-process
246                                    Real-time correction provided high spectral quality in all four gr
247                          After multiple test correction, PTSD associated with methylation of CpG site
248  were manufactured, different partial-volume correction (PVC) methods were applied, and the accuracy
249 pact of a joint-entropy based partial volume correction (PVC) technique on brain networks learned fro
250  a simple additive model with peptide length correction (R(2) value of approximately 0.96) was found
251                    Spherical and cylindrical correction range of -10 to +10 diopters with 0.1 diopter
252 as 24% (9 of 38), and the unplanned surgical correction rate was 8% (3 of 38), for a total complicati
253 ection factors, and 3) the use of regression correction.Regardless of the method that was used to adj
254                        However, Mps1's error correction-relevant substrates are unknown.
255                        Multiplicative signal correction removes baseline shifts within and between bi
256                                      Scatter correction residual bias was estimated as the maximum ca
257 d 30 (56%) PHVs with and without attenuation correction, respectively, and the pattern was homogeneou
258                        Our dissipative error correction scheme operates in a continuous manner withou
259 ent-ventilator asynchrony, and that artifact correction significantly improved the specificity of eve
260 olecular machine that is optimized for error-correction, speed and control.
261  21st century under the RCP8.5 scenario, the corrections substantially narrow the intermodel spread o
262 n obstructing tissue at the time of surgical correction, suggest that Hedgehog signaling is abnormall
263 f MRAC to scatter correction using 2 scatter-correction techniques and 3 mu-maps for MRAC.
264 use of B3LYP/cc-pVDZ with linear scaling and correction terms affords a powerful and efficient tool f
265  directional errors, usually not followed by corrections, than either controls or patients without DN
266 ectively; P=0.01 and P=0.02 after Bonferroni correction); the scores increased more in all exercise g
267                                  Without the correction, the hazard ratios are attenuated with increa
268 g to wear correction and their actual use of correction, there were various levels of function report
269 d support for the use of internal regression correction to estimate the prevalence of depleted iron s
270    To illustrate its utility, we applied the correction to HX-MS excipient screening data collected f
271 rrors and the general applicability of SPIFF correction to many experimental fields.
272 other insects, bees perform optomotor course correction to optic flow, a response that is dependent o
273 meter present in quantum waves, introduces a correction to the band structure of the two-dimensional
274                                            A correction to this article has been published and is lin
275 apping", which allows us to suppress quantum corrections to reveal the underlying mechanisms governin
276                         Added nonstatistical corrections to this model make the predictions worse.
277            In comparison to existing shading correction tools, BaSiC achieves high-accuracy with sign
278 umber of false positives while multi-testing correction tremendously decreases the statistic power.
279    We assessed the impact of MRAC to scatter correction using 2 scatter-correction techniques and 3 m
280  optimized shifting, icoshift; (iv) baseline correction (v) mean centering and (vi) selecting zones.
281 tation, multi-exon deletion or complete gene correction via homologous recombination in myogenic cell
282               Secondly, a simple ratio-based correction was applied to the rRNA-depleted estimates.
283 n (translation and rotation) and appropriate correction was applied.
284                         A fixed blood volume correction was applied.
285                               Not using near correction was associated with nonwhite race, younger ag
286           In the United States, inflammation correction was done only for CRP concentrations because
287 -based mu-maps on the performance of scatter correction was minimal in non-time-of-flight (18)F-FDG P
288  equality of two proportions with continuity correction was performed to compare the proportions betw
289                                   Bonferroni correction was used to account for multiple testing.
290 igher FIX expression and improved phenotypic correction were achieved with the haploid AAV2/8 1:3 vir
291          Images with and without attenuation correction were considered for interpretation.
292 iance and Mann-Whitney U tests with post hoc correction were used to assess differences in absolute g
293 analyses were performed and multiple testing corrections were carried out using the Bonferroni method
294                           In stark contrast, corrections were completely absent during the body-fixed
295 t baseline, surgical incisions, sutures, and corrections were graded during and immediately after sur
296                           After applying the correction (which, notably, is not necessary for pH dete
297 The assembly pipeline comprised initial read correction with Canu and assembly with SMARTdenovo.
298 10, 95% CI 0.83 to 1.46) or after Bonferroni correction with risk factors, except for an inverse asso
299 was used to compare the MR-based attenuation correction with the ground-truth CT attenuation correcti
300 ge of zero-echo-time (ZTE)-based attenuation correction (ZTAC) is the misclassification of air/tissue

WebLSDに未収録の専門用語(用法)は "新規対訳" から投稿できます。
 
Page Top