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we decrease » mean decrease (Expand Search), teer decrease (Expand Search), use decreased (Expand Search)
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a decrease » _ decreased (Expand Search), _ decreases (Expand Search)
_ decrease » _ decreased (Expand Search)
1_ we » _ we (Expand Search)
we decrease » mean decrease (Expand Search), teer decrease (Expand Search), use decreased (Expand Search)
nn decrease » mean decrease (Expand Search), gy decreased (Expand Search), b1 decreased (Expand Search)
a decrease » _ decreased (Expand Search), _ decreases (Expand Search)
_ decrease » _ decreased (Expand Search)
1_ we » _ we (Expand Search)
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1
The Dose–Response Decrease in Heart Rate Variability: Any Association with the Metabolites of Polycyclic Aromatic Hydrocarbons in Coke Oven Workers?
Published 2012“…After adjustment for potential confounders, elevation per interquartile range (IQR) (1.81 µg/mmol creatinine) of urinary 2-hydroxynaphthalene was associated with a 5.46% (95% CI, 2.50–8.32) decrease in standard deviation of NN intervals (SDNN). …”
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2
Global Land Use Change Impacts on Soil Nitrogen Availability and Environmental Losses
Published 2025“…However, how global land use changes impact soil N supply and potential N loss remains elusive. By compiling a global data set of 1,782 paired observations from 185 publications, we show that land use conversion from natural to managed ecosystems significantly reduced NNM by 7.5% (−11.5, −2.8%) and increased NN by 150% (86, 194%), indicating decreasing N availability while increasing potential N loss through denitrification and nitrate leaching. …”
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3
Temporal profiles of the key BO-NN features.
Published 2020“…Right plot show the gradual decrease in the TM tuning for the features highlighted in <b>c</b> as well as the gradual increase in the temporal response profile (i.e. optimal shifts for the prediction of the key BO-NN features using Praat features shown in <b>a</b>). …”
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4
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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5
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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6
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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7
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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8
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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9
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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10
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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11
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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12
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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13
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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14
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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15
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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16
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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17
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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18
Heart rate variability in type 2 diabetes mellitus: A systematic review and meta–analysis
Published 2018“…T2DM patients had significantly (P<0.01) lower RR–intervals (effect size = –0.61; 95%CI –1.21 to –0.01), lower SDNN (–0.65; –0.83 to –0.47), lower RMSSD (–0.92; –1.37 to –0.47), lower pNN50 (–0.46; –0.84 to –0.09), lower total power (–1.52; –2.13 to –0.91), lower LF (–1.08; –1.46 to –0.69]), and lower HF (–0.79; –1.09 to –0.50). …”
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20
Table_1_Brain–Heart Interaction During Transcutaneous Auricular Vagus Nerve Stimulation.docx
Published 2021“…In the delta-band, there were frontal increases (RMSSD, pNN50, rrHRV, SDNN) and decreases (SDNN) across stimulation sites. …”