Showing 1,421 - 1,440 results of 13,123 for search '(( significant ((side decrease) OR (step decrease)) ) OR ( significantly increased decrease ))', query time: 0.71s Refine Results
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    Dataset. by Awole Seid (3839965)

    Published 2025
    Subjects:
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    Image 2_Changes of brain structure and structural covariance networks in Parkinson’s disease with different sides of onset.tif by Tianqi Xu (9574329)

    Published 2025
    “…In our SCNs analysis, LPD patients exhibited increased normalized characteristic path length and decreased small-world index in CSA-based networks, while in CT-based networks, they showed increased small-world index and global efficiency compared to RPD. …”
  16. 1436

    Image 1_Changes of brain structure and structural covariance networks in Parkinson’s disease with different sides of onset.tif by Tianqi Xu (9574329)

    Published 2025
    “…In our SCNs analysis, LPD patients exhibited increased normalized characteristic path length and decreased small-world index in CSA-based networks, while in CT-based networks, they showed increased small-world index and global efficiency compared to RPD. …”
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    Image 3_Changes of brain structure and structural covariance networks in Parkinson’s disease with different sides of onset.tif by Tianqi Xu (9574329)

    Published 2025
    “…In our SCNs analysis, LPD patients exhibited increased normalized characteristic path length and decreased small-world index in CSA-based networks, while in CT-based networks, they showed increased small-world index and global efficiency compared to RPD. …”
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    Cyclization Decoded: Engineering Amylomaltase for Efficient α‑Glucan Transformations by Han Liu (288039)

    Published 2025
    “…Furthermore, we identify that postglycosylation noncovalent polysaccharide chain transfer emerges as the decisive factor in cyclization, particularly for AM–degree of polymerization (DP) greater than 30 substrate complexes, where this noncovalent step (≥13.6 kcal/mol) dictates the rate of CA production. 57 variants with enhanced activity (up to a 2.3-fold increase) were engineered in our biochemical experiments by strategically modulating the chain transfer step. …”
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