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Keyword [Wear debris]
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1. Experimental Studying The Prevention Of Post-Operative Aseptic Loosening Of The Prosthetic Component With Calcitonin
2. Influence Of Different-Sized Titanium Particles Loading On Predominant Cell's Function In Peri-prosthetic Loosening
3. Study Of Ex Vivo OPG Gene Therapy In Preventing Wear Debris Induced Osteolysis
4. Description To Wear Debris Of Artificial Joint And Its Bioreaction
5. Adeno-Associated Virus-Mediated Osteoprotegerin Gene Transfer Protects Against Wear Debris Induced Osteolysis In A Murine Pin Model
6. Cell-Based Osteoprotegerin Therapy For Debris-Induced Aseptic Loosening Using A Murine Model
7. Combination Gene Therapy Targeting On Interleukin-1b And RANKL For Wear Debris-induced Aseptic Loosening
8. In Vitro Studies On The Role Of Wear Debris In Aseptic Loosening
9. Experimental Studies Of Aseptic Loosening Resulted From The Wear Debris Of The Magnesium Silicon Jade Total Hip
10. Erythromycin Inhibits Wear Debris-induced Osteolysis
11. Experimental Studies Of Pharmacologic Effects On Osteoclastic Osteolysis Induced By Wear Debris
12. Diverse Apoptotic Response And Caspase-3,iNOS,ONOO~- Expression To Alumina And Ultra-high-molecular-weight Polyethylene Particles
13. The Relation Of Adherent Endotoxin Ceramic Wear Debris And TNF-α
14. Erythromycin And Alendronate Inhibit Aseptic Loosening In Murine Osteolysis Model
15. The Research Of The Effect Of NF-κB Inhibitor Pyrrolidine Dithiocarbamate(PDTC) To Aseptic Loosening That Induced By Wear Debris Of High Molecular Weight Polyethylene Around Prosthesis
16. Experimental Study Of Cannabinoid Receptor 2 In Titanium Particle Induced Osteolysis
17. Study On UHMWPE Wear Debris Morphology In Artificial Hip Joints
18. Establishment Of UHMWPE Wear Debris Induced Aseptic Loosening Animal Model And The Anti-peri-implant Osteolysis Effect Of Bisphosphonate Composed HA Coating
19. The Impact Of Simvastatin On Osteolysis Around UHMWPE Wear Debris Induced Aseptic Loosening Of Artificial Joint
20. Effect Of Alendronate On The Differentiation And Generation Of Osteoclast Stimulated By Wear Debris
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