Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
reduction decrease » reduction decreased (Expand Search), reduction reuse (Expand Search), production increases (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
reduction decrease » reduction decreased (Expand Search), reduction reuse (Expand Search), production increases (Expand Search)
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2861
RNA targets and biological process GO terms associated with Mod RiP-Seq analysis.
Published 2024Subjects: -
2862
Comparison of postoperative rest and activity between APS score groups in Experiment 2.
Published 2025Subjects: -
2863
Phylogenetic analysis of <i>Anaplasma</i> spp. based on the partial 16S rRNA gene sequence.
Published 2025Subjects: -
2864
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2865
Downregulation of miR-1247-3p inhibited apoptosis and reduced chemosensitivity in cells.
Published 2024Subjects: -
2866
Negative (Prednisone) and basal (ATP) control compounds binding to ALK protein.
Published 2025Subjects: -
2867
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2868
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2869
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2870
Example of sample data.
Published 2025“…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
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2871
Structure of BPNN.
Published 2025“…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
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2872
The workflow of EGA-BPNN.
Published 2025“…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
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2873
S1 Data -
Published 2025“…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
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2874
Algorithm flow of the GA-BPNN model.
Published 2025“…In contrast, the EGA-BPNN model achieves a significantly lower mean absolute relative error of 0.41% for single-flow prediction, demonstrating superior prediction performance. …”
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2875
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2876
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2877
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2878
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2879
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2880