Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant change » significant changes (Expand Search), significant challenge (Expand Search), significant challenges (Expand Search)
change decrease » change increases (Expand Search), change degree (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant change » significant changes (Expand Search), significant challenge (Expand Search), significant challenges (Expand Search)
change decrease » change increases (Expand Search), change degree (Expand Search)
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2641
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2642
Effects of PCM7−4 on the relative expression of genes associated with biofilm formation.
Published 2025Subjects: -
2643
Effects of bacteriocin PCM7−4 on bacteria within the biofilm in <i>L. monocytogenes.</i>
Published 2025Subjects: -
2644
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2645
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2646
Effects of bacteriocin PCM7−4 on the quantification of biofilm formation in <i>L. monocytogenes.</i>
Published 2025Subjects: -
2647
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2648
Effects of bacteriocin PCM7−4 on the exopolysaccharide production in <i>L. monocytogenes.</i>
Published 2025Subjects: -
2649
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2650
Probing the Histamine H<sub>1</sub> Receptor Binding Site to Explore Ligand Binding Kinetics
Published 2024“…Therefore, the levocetirizine mimics are less sensitive to structural changes. This study illustrates that for H<sub>1</sub>R, there are several ways to increase RT but the different strategies differ significantly in SKR.…”
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2651
Probing the Histamine H<sub>1</sub> Receptor Binding Site to Explore Ligand Binding Kinetics
Published 2024“…Therefore, the levocetirizine mimics are less sensitive to structural changes. This study illustrates that for H<sub>1</sub>R, there are several ways to increase RT but the different strategies differ significantly in SKR.…”
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2652
S4 Data -
Published 2024“…The results show that both surface temperature and residual tensile stress exhibit systematic trends with parameter changes. Specifically, surface residual tensile stress increases with cutting depth initially but decreases sharply once the cutting depth exceeds 25 μm. …”
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2653
S3 Data -
Published 2024“…The results show that both surface temperature and residual tensile stress exhibit systematic trends with parameter changes. Specifically, surface residual tensile stress increases with cutting depth initially but decreases sharply once the cutting depth exceeds 25 μm. …”
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2654
S2 Data -
Published 2024“…The results show that both surface temperature and residual tensile stress exhibit systematic trends with parameter changes. Specifically, surface residual tensile stress increases with cutting depth initially but decreases sharply once the cutting depth exceeds 25 μm. …”
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2655
Thermal properties of alumina bioceramics.
Published 2024“…The results show that both surface temperature and residual tensile stress exhibit systematic trends with parameter changes. Specifically, surface residual tensile stress increases with cutting depth initially but decreases sharply once the cutting depth exceeds 25 μm. …”
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2656
S5 Data -
Published 2024“…The results show that both surface temperature and residual tensile stress exhibit systematic trends with parameter changes. Specifically, surface residual tensile stress increases with cutting depth initially but decreases sharply once the cutting depth exceeds 25 μm. …”
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2657
S6 Data -
Published 2024“…The results show that both surface temperature and residual tensile stress exhibit systematic trends with parameter changes. Specifically, surface residual tensile stress increases with cutting depth initially but decreases sharply once the cutting depth exceeds 25 μm. …”
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2658
S1 Data -
Published 2024“…The results show that both surface temperature and residual tensile stress exhibit systematic trends with parameter changes. Specifically, surface residual tensile stress increases with cutting depth initially but decreases sharply once the cutting depth exceeds 25 μm. …”
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2659
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2660
Transcript levels of MAPK, NIK, NLR and SA-dependent gene pathways and responsive genes.
Published 2025Subjects: