Showing 3,561 - 3,580 results of 14,318 for search '(functional OR function) modules', query time: 0.19s Refine Results
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    Small object detection in complex open-pit mine backgrounds based on improved YOLOv11 by ZHU Yongjun, CAI Guangqi, HAN Jin, MIAO Yanzi, MA Xiaoping, JIAO Wenhua

    Published 2025-04-01
    “…The original CIoU loss function was replaced with the Powerful-IoU (PIoU) loss function to solve the anchor box expansion issue during training, enabling the model to rapidly and accurately focus on small targets. …”
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  5. 3565

    Phytotherapeutic potential of herbal extracts on male reproductive organs in rat models by A.A. Ammari, A.R. Alhimaidi, R.A. Amran, A. Rady, H. aljawdah

    Published 2025-07-01
    “…Herbal extracts, recognized for their bioactive properties such as antioxidation and hormone modulation, were evaluated for their effects on testicular function, spermatogenesis, and reproductive hormone levels. …”
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  6. 3566

    Impact of elexacaftor/tezacaftor/ivacaftor on the small airways in cystic fibrosis by Sofia Campos Silva, Andreia Barroso, Maria Cunha, Elsa Fragoso, Pilar Azevedo

    Published 2025-06-01
    “…Among the patients within the cohort, the same parameters were evaluated separately in those who had advanced lung disease and in those who had previously undergone CFTR modulator therapy. Results: There was a significant post-treatment improvement in lung function, with a median increase of 0.42 L/s in the FEF25-75% (p < 0.001) and a 5% reduction in the mean RV/TLC ratio (p < 0.001). …”
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  7. 3567

    Design, Synthesis, and Biological Assessment of Novel Vanillin-Isoxazole Derivatives as Positive Allosteric Modulators of α7 Nicotinic Acetylcholine Receptor by Santiago Stabile, Juan Facundo Chrestia, Gabriel Radivoy, Cecilia Bouzat

    Published 2023-11-01
    “…Therefore, enhancing its function with positive allosteric modulators (PAMs) is a promising therapeutic approach for treating cognitive deficits and neurodegenerative disorders. …”
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  8. 3568

    BCG Vaccination Potentially Modulates the Transcriptome of Infant CD4 T Cells in Addition to Age-Dependent Immune Ontogeny-Associated Changes by Vidya Vijayan Karuvan Kandiyil, Eunchong Kang, Emily Coates, Portia Kamthunzi, Gerald Tegha, Mina Hosseinipour, Di Wu, Fei Zou, Kristina De Paris

    Published 2025-06-01
    “…Vaccination with BCG resulted in additional modulation of the CD4 T cell transcriptome and differentially expressed genes could be linked to metabolomic function. …”
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    Modulation of cardiac fatty acid or glucose oxidation to treat heart failure in preclinical models: a systematic review and meta-analysis by Tom Fischer, Christina Schenkl, Estelle Heyne, Peter Schlattmann, Torsten Doenst, P. Christian Schulze, T. Dung Nguyen

    Published 2025-06-01
    “…Therefore, we conducted a comprehensive meta-analysis to assess the effects of modulating myocardial GO or FAO on heart function. Methods We screened MEDLINE via Ovid, Scopus, and Web of Science until March 02, 2024 for interventional studies reporting significant changes in cardiac GO or FAO in established animal models of HF, such as ischemia-reperfusion, pressure overload, rapid pacing, and diabetic cardiomyopathy. …”
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    TRIM29 upregulation contributes to chemoresistance in triple negative breast cancer via modulating S100P-β-catenin axis by Qitong Wu, Sumit Siddharth, Deepak Verma, Sheetal Parida, Dipali Sharma

    Published 2025-05-01
    “…Furthermore, an enrichment of β-catenin pathway in chemoresistant TNBC cells is observed. We uncovered a functional network where S100P, a metastasis inducing secretory factor, bidirectionally interacts with TRIM29, and modulates the expression of SERPINB3, SERPINB4, CEACAM5, CEACAM6 as well as β-catenin pathway genes. …”
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    The role of SPI1/VSIG4/THBS1 on glioblastoma progression through modulation of the PI3K/AKT pathway by Jie Shen, Lihui Zhou, Ke Ye, Jiangbiao Gong, Fan Wu, Kangnan Mo, Yu Zhu, Chao Chen, Renya Zhan

    Published 2025-05-01
    “…Objectives: This research aims to explore the function and molecular mechanism involving VSIG4 in the malignant progression of glioma. …”
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