311 results on '"Jiang, Guosong"'
Search Results
2. Feature extraction of multimodal medical image fusion using novel deep learning and contrast enhancement method.
3. CLIC3 interacts with NAT10 to inhibit N4-acetylcytidine modification of p21 mRNA and promote bladder cancer progression
4. Regulation of CD8+ T cells infiltration and immunotherapy by circMGA/HNRNPL complex in bladder cancer
5. Investigation on dynamic characteristics of herringbone planetarygear system considering tooth surface friction
6. Thermomechanical fatigue and fracture behaviours of welded joints at various temperatures
7. Surgical Strategies and Perioperative Outcomes of Robot‐Assisted Vena Cava Reconstruction.
8. Preliminary assessment of a portable Raman spectroscopy system for post-operative urinary stone analysis
9. Correction: CircPTPRA blocks the recognition of RNA N6-methyladenosine through interacting with IGF2BP1 to suppress bladder cancer progression
10. Erratum To: CircHIPK3 sponges miR‐558 to suppress heparanase expression in bladder cancer cells
11. circNR3C1 Suppresses Bladder Cancer Progression through Acting as an Endogenous Blocker of BRD4/C-myc Complex
12. lncRNA SNHG1 Promotes Basal Bladder Cancer Invasion via Interaction with PP2A Catalytic Subunit and Induction of Autophagy
13. Hsa_circ_0001361 promotes bladder cancer invasion and metastasis through miR-491-5p/MMP9 axis
14. Overexpressed miR-200a promotes bladder cancer invasion through direct regulating Dicer/miR-16/JNK2/MMP-2 axis
15. CircPTPRA blocks the recognition of RNA N6-methyladenosine through interacting with IGF2BP1 to suppress bladder cancer progression
16. CircLIFR synergizes with MSH2 to attenuate chemoresistance via MutSα/ATM-p73 axis in bladder cancer
17. CircNR3C1 inhibits proliferation of bladder cancer cells by sponging miR-27a-3p and downregulating cyclin D1 expression
18. MicroRNA-3648 Is Upregulated to Suppress TCF21, Resulting in Promotion of Invasion and Metastasis of Human Bladder Cancer
19. MEG3, as a Competing Endogenous RNA, Binds with miR-27a to Promote PHLPP2 Protein Translation and Impairs Bladder Cancer Invasion
20. The RING domain in the anti-apoptotic protein XIAP stabilizes c-Myc protein and preserves anchorage-independent growth of bladder cancer cells
21. Deep-learning-based resource allocation of satellite-assisted emergency rescue network for power grid
22. Load monitoring of distribution terminal-based handover algorithm of power grid for satellite communication
23. Research and design of smart campus security information recognition and architecture based on LoRaWAN
24. Optimizing log parsing efficiency: a heuristic-based distributed system approach
25. A survey of the cryptography enhancement technology in 5G and evolving network
26. A polymorphic perception AODV routing algorithm for high-speed mobile Ad hoc network
27. Autonomous network defense in cloud data center environments based on reinforcement learning
28. Network connectivity analysis of command information system based on link heterogeneity
29. Routing optimization strategy for power SDN communication network based on NSGA-II
30. Transmission characteristics of microwave in a coaxial hollow cathode glow discharge weakly ionized dusty plasma study
31. Star-earth cooperative network channel allocation algorithm based on power grid and deep learning
32. Lightweight convolutional neural network model for skin lesions classification
33. Leveraging AI for sustainable leadership: a transformative approach
34. Study on English verb classification based on K-means algorithm and support vector machine algorithm
35. Research on the detection characteristic of portal radiation alarm system for low-activity radioactive material based on artificial intelligence applications
36. Correction: Hsa_circ_0001361 promotes bladder cancer invasion and metastasis through miR-491-5p/MMP9 axis
37. MicroRNA-411 Downregulation Enhances Tumor Growth by Upregulating MLLT11 Expression in Human Bladder Cancer
38. ATG7 Overexpression Is Crucial for Tumorigenic Growth of Bladder Cancer In Vitro and In Vivo by Targeting the ETS2/miRNA196b/FOXO1/p27 Axis
39. LncRNA SPRY4-IT1 sponges miR-101-3p to promote proliferation and metastasis of bladder cancer cells through up-regulating EZH2
40. UBAC2 promotes bladder cancer proliferation through BCRC-3/miRNA-182-5p/p27 axis
41. Selenium-binding protein 1 transcriptionally activates p21 expression via p53-independent mechanism and its frequent reduction associates with poor prognosis in bladder cancer
42. Supplementary Figure1 from BRD4 Regulates EZH2 Transcription through Upregulation of C-MYC and Represents a Novel Therapeutic Target in Bladder Cancer
43. Supplemental Figure 1 from Isorhapontigenin (ISO) Inhibits Invasive Bladder Cancer Formation In Vivo and Human Bladder Cancer Invasion In Vitro by Targeting STAT1/FOXO1 Axis
44. Supplemental Figure 2 from Isorhapontigenin (ISO) Inhibits Invasive Bladder Cancer Formation In Vivo and Human Bladder Cancer Invasion In Vitro by Targeting STAT1/FOXO1 Axis
45. Data from Isorhapontigenin (ISO) Inhibits Invasive Bladder Cancer Formation In Vivo and Human Bladder Cancer Invasion In Vitro by Targeting STAT1/FOXO1 Axis
46. Supplemental Figure 3 from Isorhapontigenin (ISO) Inhibits Invasive Bladder Cancer Formation In Vivo and Human Bladder Cancer Invasion In Vitro by Targeting STAT1/FOXO1 Axis
47. Supplementary Table1 from BRD4 Regulates EZH2 Transcription through Upregulation of C-MYC and Represents a Novel Therapeutic Target in Bladder Cancer
48. XIAP Interaction with E2F1 and Sp1 via its BIR2 and BIR3 domains specific activated MMP2 to promote bladder cancer invasion
49. Figure S5 from Circ0008399 Interaction with WTAP Promotes Assembly and Activity of the m6A Methyltransferase Complex and Promotes Cisplatin Resistance in Bladder Cancer
50. Table S2 from Circ0008399 Interaction with WTAP Promotes Assembly and Activity of the m6A Methyltransferase Complex and Promotes Cisplatin Resistance in Bladder Cancer
Catalog
Books, media, physical & digital resources
Discovery Service for Jio Institute Digital Library
For full access to our library's resources, please sign in.