Search alternatives:
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
linear decrease » linear increase (Expand Search)
teer decrease » mean decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
linear decrease » linear increase (Expand Search)
teer decrease » mean decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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2401
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2402
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2403
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2404
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2405
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2406
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2407
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2408
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2409
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2410
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2411
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2412
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2413
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2414
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2415
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2416
Heterogeneous Condensation on Simplified Viral Envelope Protein Structures
Published 2025“…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
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2417
Primer sequences for qPCR.
Published 2025“…Furthermore, when S2R + <i>Drosophila</i> cells are incubated at high temperatures, there is a marked decrease in Akt phosphorylation, directly supporting the notion that elevated temperatures can inhibit insulin signaling in a cell-autonomous manner, independent of Ilp levels. …”
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2418
Source data for graphs.
Published 2025“…Furthermore, when S2R + <i>Drosophila</i> cells are incubated at high temperatures, there is a marked decrease in Akt phosphorylation, directly supporting the notion that elevated temperatures can inhibit insulin signaling in a cell-autonomous manner, independent of Ilp levels. …”
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2419
The reagents used in this study.
Published 2025“…Furthermore, when S2R + <i>Drosophila</i> cells are incubated at high temperatures, there is a marked decrease in Akt phosphorylation, directly supporting the notion that elevated temperatures can inhibit insulin signaling in a cell-autonomous manner, independent of Ilp levels. …”
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2420