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values decrease » values increased (Expand Search), largest decrease (Expand Search)
a large » _ large (Expand Search)
i large » _ large (Expand Search), via large (Expand Search), i larvae (Expand Search)
i also » _ also (Expand Search), mri also (Expand Search)
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Presynaptic inhibition also compensates for increases in recurrent excitation in alternative circuit motifs.
Published 2020“…Bottom: Firing rate of excitatory population in respective circuit model as a function of excitatory recurrence for increasing strengths of presynaptic inhibition (<i>β</i>).…”
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Supplementary Material for: Effects of White Matter Hyperintensities on 90-Day Functional Outcome after Large Vessel and Non-Large Vessel Stroke
Published 2020“…<b><i>Material and Methods:</i></b> We reviewed acute ischemic stroke patients admitted between 2009 and 2017 at a large healthcare system in the USA. …”
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149
Data_Sheet_1_Forced changes in El Niño–Southern Oscillation due to global warming and the associated uncertainties in ACCESS-ESM1.5 large ensembles.docx
Published 2022“…We document the forced changes in ENSO's amplitude, power spectrum, skewness, and feedbacks and quantify the internal variability associated with these forced changes. There is a modest but statistically significant GW-induced increase in the ensemble-mean ENSO amplitude and a sizable ensemble variation (due to internal variability) with both increases (in 80% of the members) and decreases. …”
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151
Data_Sheet_1_Estimating the Prevalence and Genetic Risk Mechanisms of ARFID in a Large Autism Cohort.PDF
Published 2021“…ARFID is highly comorbid with autism, and we provide the first estimate of its prevalence in a large and phenotypically diverse autism cohort (a subsample of the SPARK study, N = 5,157 probands). …”
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152
Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy
Published 2024“…Materials that display blue-shifted and enhanced luminescence in response to mechanical stimuli are limited, and the related mechanism is difficult to investigate due to the unclear structural information. In this work, a series of Cu(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
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153
Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy
Published 2024“…Materials that display blue-shifted and enhanced luminescence in response to mechanical stimuli are limited, and the related mechanism is difficult to investigate due to the unclear structural information. In this work, a series of Cu(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
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154
Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy
Published 2024“…Materials that display blue-shifted and enhanced luminescence in response to mechanical stimuli are limited, and the related mechanism is difficult to investigate due to the unclear structural information. In this work, a series of Cu(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
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155
Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy
Published 2024“…Materials that display blue-shifted and enhanced luminescence in response to mechanical stimuli are limited, and the related mechanism is difficult to investigate due to the unclear structural information. In this work, a series of Cu(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
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156
Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy
Published 2024“…Materials that display blue-shifted and enhanced luminescence in response to mechanical stimuli are limited, and the related mechanism is difficult to investigate due to the unclear structural information. In this work, a series of Cu(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
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157
Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy
Published 2024“…Materials that display blue-shifted and enhanced luminescence in response to mechanical stimuli are limited, and the related mechanism is difficult to investigate due to the unclear structural information. In this work, a series of Cu(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
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158
Decreased CNPase levels in the SG/RC in <i>Large</i><sup><i>myd/myd</i></sup> <i>mice</i>.
Published 2020“…<p>Lysates were obtained from the spiral ganglion (SG)/Rosenthal’s canal (RC) of the P5-7 control and <i>Large</i><sup><i>myd/myd</i></sup> mice. CNPase immunoblotting showed decreased levels of CNPase in the <i>Large</i><sup><i>myd/myd</i></sup> mice. …”
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Image_1_Leucine-rich alpha-2 glycoprotein as a potential biomarker for large vessel vasculitides.pdf
Published 2023“…Objectives<p>Serum levels of C-reactive protein (CRP) and erythrocyte sedimentation rate (ESR) have been used as useful biomarkers for reflecting the activity of large vessel vasculitides (LVV). However, a novel biomarker that could have a complementary role to these markers is still required. …”
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Table_1_Association between glucosamine use and cancer mortality: A large prospective cohort study.doc
Published 2022“…There were 9,366 cancer deaths during a median follow-up of 12.1 years, and we observed a significant association between the use of glucosamine and lower overall cancer mortality (HR = 0.95, 95% CI = 0.90–1.00, p < 0.05), kidney cancer (IRR = 0.68, 95% CI = 0.49–0.95, p < 0.05), lung cancer mortality (IRR = 0.84, 95% CI = 0.74–0.95, p < 0.05), and rectum cancer (IRR = 0.76, 95% CI = 0.59–0.98, p < 0.05). …”