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linear decrease » linear increase (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), teer decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
linear decrease » linear increase (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), teer decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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6401
A) Expression of known ‘tendon’ transcription factors, B) TGFβ and C) ECM genes measured with RNA-seq.
Published 2025“…Expression of ECM related genes are significantly differentially expressed in unique directions during postnatal stages with <i>Dcn</i> and <i>Fmod</i> increasing gradually over time, <i>Col2a1</i>, <i>Col14a1</i>, <i>Col3a1</i>, and <i>Tnmd</i> decreasing over time, <i>Col1a1</i> and <i>Col1a2</i> peak in expression at P14, and <i>Bgn</i> is expressed at higher levels from P0-P14 after which its levels decrease (C). …”
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6402
Regression analysis predicting PAEE-tr.
Published 2025“…<div><p>Background</p><p>Pain is associated with a decrease in physical activity for most individuals. …”
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6403
Sample characteristics.
Published 2025“…<div><p>Background</p><p>Pain is associated with a decrease in physical activity for most individuals. …”
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6404
Overview of direct and indirect associations.
Published 2025“…<div><p>Background</p><p>Pain is associated with a decrease in physical activity for most individuals. …”
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6405
Neonatal deletion of Yap in Scx-lineage cells disrupts collagen production in the tendon during postnatal development.
Published 2025“…<b>E)</b> RT-qPCR shows decreased expression of Col1a2, Ki67, and Yap in and Yap-cKO tendon at P14 compared to controls. …”
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6406
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6407
ELISA of the key proteins.
Published 2024“…KEGG pathway analysis showed a significant enrichment of DEPs in PI3K-Akt pathway and focal adhesion. …”
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6408
The error between test and simulation results.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6409
Relevant parameters of cutting head and pick.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6410
The stress variation of Node 33.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6411
Deformation trend of the gyration platform.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6412
Force transformation of cutting head.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6413
3D model of cutting head.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6414
Rigid-flexible coupling mode.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6415
The flow of cutting performance calculation.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6416
Results of different optimization schemes.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6417
Modal shape of the gyration platform.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6418
Deformation variation of Node 33.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6419
Optimization parameters of gyration platform.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
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6420
Property parameters of rock samples.
Published 2024“…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”