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significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
i decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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2101
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2102
Transcriptomics Points-of-Departure (tPODs) to Support Hazard Assessment of Benzo[<i>a</i>]pyrene in Early-Life-Stage Rainbow Trout
Published 2025“…Benchmark concentration analysis of transcriptomic responses at 4 dph, based on the most sensitive transcriptomic features, yielded tPODs between 0.028 and 0.47 μg/L B[<i>a</i>]P. At 28 dph, Cyp1a1 exhibited significantly increased catalytic activity, with biochemical POD, bPOD<sub>EROD,28dph</sub> of 0.599 μg/L B[<i>a</i>]P, while morphometric analysis showed significant growth inhibition in terms of length, with apical POD, aPOD<sub>length,28dph</sub> of 1.77 μg/L B[<i>a</i>]P, with a notable decreasing trend in body weight. …”
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2103
Transcriptomics Points-of-Departure (tPODs) to Support Hazard Assessment of Benzo[<i>a</i>]pyrene in Early-Life-Stage Rainbow Trout
Published 2025“…Benchmark concentration analysis of transcriptomic responses at 4 dph, based on the most sensitive transcriptomic features, yielded tPODs between 0.028 and 0.47 μg/L B[<i>a</i>]P. At 28 dph, Cyp1a1 exhibited significantly increased catalytic activity, with biochemical POD, bPOD<sub>EROD,28dph</sub> of 0.599 μg/L B[<i>a</i>]P, while morphometric analysis showed significant growth inhibition in terms of length, with apical POD, aPOD<sub>length,28dph</sub> of 1.77 μg/L B[<i>a</i>]P, with a notable decreasing trend in body weight. …”
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2104
Transcriptomics Points-of-Departure (tPODs) to Support Hazard Assessment of Benzo[<i>a</i>]pyrene in Early-Life-Stage Rainbow Trout
Published 2025“…Benchmark concentration analysis of transcriptomic responses at 4 dph, based on the most sensitive transcriptomic features, yielded tPODs between 0.028 and 0.47 μg/L B[<i>a</i>]P. At 28 dph, Cyp1a1 exhibited significantly increased catalytic activity, with biochemical POD, bPOD<sub>EROD,28dph</sub> of 0.599 μg/L B[<i>a</i>]P, while morphometric analysis showed significant growth inhibition in terms of length, with apical POD, aPOD<sub>length,28dph</sub> of 1.77 μg/L B[<i>a</i>]P, with a notable decreasing trend in body weight. …”
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2105
Transcriptomics Points-of-Departure (tPODs) to Support Hazard Assessment of Benzo[<i>a</i>]pyrene in Early-Life-Stage Rainbow Trout
Published 2025“…Benchmark concentration analysis of transcriptomic responses at 4 dph, based on the most sensitive transcriptomic features, yielded tPODs between 0.028 and 0.47 μg/L B[<i>a</i>]P. At 28 dph, Cyp1a1 exhibited significantly increased catalytic activity, with biochemical POD, bPOD<sub>EROD,28dph</sub> of 0.599 μg/L B[<i>a</i>]P, while morphometric analysis showed significant growth inhibition in terms of length, with apical POD, aPOD<sub>length,28dph</sub> of 1.77 μg/L B[<i>a</i>]P, with a notable decreasing trend in body weight. …”
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2106
Transcriptomics Points-of-Departure (tPODs) to Support Hazard Assessment of Benzo[<i>a</i>]pyrene in Early-Life-Stage Rainbow Trout
Published 2025“…Benchmark concentration analysis of transcriptomic responses at 4 dph, based on the most sensitive transcriptomic features, yielded tPODs between 0.028 and 0.47 μg/L B[<i>a</i>]P. At 28 dph, Cyp1a1 exhibited significantly increased catalytic activity, with biochemical POD, bPOD<sub>EROD,28dph</sub> of 0.599 μg/L B[<i>a</i>]P, while morphometric analysis showed significant growth inhibition in terms of length, with apical POD, aPOD<sub>length,28dph</sub> of 1.77 μg/L B[<i>a</i>]P, with a notable decreasing trend in body weight. …”
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2107
Transcriptomics Points-of-Departure (tPODs) to Support Hazard Assessment of Benzo[<i>a</i>]pyrene in Early-Life-Stage Rainbow Trout
Published 2025“…Benchmark concentration analysis of transcriptomic responses at 4 dph, based on the most sensitive transcriptomic features, yielded tPODs between 0.028 and 0.47 μg/L B[<i>a</i>]P. At 28 dph, Cyp1a1 exhibited significantly increased catalytic activity, with biochemical POD, bPOD<sub>EROD,28dph</sub> of 0.599 μg/L B[<i>a</i>]P, while morphometric analysis showed significant growth inhibition in terms of length, with apical POD, aPOD<sub>length,28dph</sub> of 1.77 μg/L B[<i>a</i>]P, with a notable decreasing trend in body weight. …”
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2108
Transcriptomics Points-of-Departure (tPODs) to Support Hazard Assessment of Benzo[<i>a</i>]pyrene in Early-Life-Stage Rainbow Trout
Published 2025“…Benchmark concentration analysis of transcriptomic responses at 4 dph, based on the most sensitive transcriptomic features, yielded tPODs between 0.028 and 0.47 μg/L B[<i>a</i>]P. At 28 dph, Cyp1a1 exhibited significantly increased catalytic activity, with biochemical POD, bPOD<sub>EROD,28dph</sub> of 0.599 μg/L B[<i>a</i>]P, while morphometric analysis showed significant growth inhibition in terms of length, with apical POD, aPOD<sub>length,28dph</sub> of 1.77 μg/L B[<i>a</i>]P, with a notable decreasing trend in body weight. …”
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2109
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2110
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2111
Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane
Published 2025“…The resulting RFM exhibited outstanding oil–water separation capabilities, achieving a pure oil flux of up to 1,187 LMH with a separation efficiency up to 99% in water–oil emulsions, as demonstrated in tests with dichloromethane and other oils. …”
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2112
Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane
Published 2025“…The resulting RFM exhibited outstanding oil–water separation capabilities, achieving a pure oil flux of up to 1,187 LMH with a separation efficiency up to 99% in water–oil emulsions, as demonstrated in tests with dichloromethane and other oils. …”
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2113
Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane
Published 2025“…The resulting RFM exhibited outstanding oil–water separation capabilities, achieving a pure oil flux of up to 1,187 LMH with a separation efficiency up to 99% in water–oil emulsions, as demonstrated in tests with dichloromethane and other oils. …”
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2114
Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane
Published 2025“…The resulting RFM exhibited outstanding oil–water separation capabilities, achieving a pure oil flux of up to 1,187 LMH with a separation efficiency up to 99% in water–oil emulsions, as demonstrated in tests with dichloromethane and other oils. …”
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2115
Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane
Published 2025“…The resulting RFM exhibited outstanding oil–water separation capabilities, achieving a pure oil flux of up to 1,187 LMH with a separation efficiency up to 99% in water–oil emulsions, as demonstrated in tests with dichloromethane and other oils. …”
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2116
A Comparison of Pediatric Prehospital Opioid Encounters and Social Vulnerability
Published 2024“…The analysis demonstrated that as socioeconomic status (SES) improves, the likelihood of opioid-related activations increases significantly supported by a significant negative linear trend (Estimate = −0.2971, SE = 0.1172, z = −2.54, <i>p</i> = 0.0112. …”
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2117
Microflow Liquid Chromatography Coupled to Multinozzle Electrospray Ionization for Improved Lipidomics Coverage of 3D Clear Cell Renal Cell Carcinoma
Published 2025“…A far higher sensitivity can be obtained with electrospray at nanoflow (10–1000 nL/min) thanks to a better ionization efficiency and significant decrease in matrix effects. …”
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2118
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2119
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2120