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5. Tissue Engineering for Periodontal Ligament Regeneration: Biomechanical Specifications

11. Morphological and Mechanical Characterization of Extracellular Vesicles and Parent Human Synoviocytes under Physiological and Inflammatory Conditions

12. Synovial Extracellular Vesicles: Structure and Role in Synovial Fluid Tribological Performances

16. Correction: Sadiq et al. A Characterization and Cell Toxicity Assessment of Particulate Pollutants from Road Traffic Sites in Kano State, Nigeria. Atmosphere 2022, 13, 80

23. Nano/micro implant debris affect osteogenesis by chondrocytes: Comparison between ceramic and UHMWPE from hip walking simulator.

24. Réponses biologiques aux sollicitations tribologiques. Rôle de médiateur des structures phospholipidiques.Application au diagnostic et à la thérapeutique des pathologies articulaires

25. CROSSLINKED MALEIC ANHYDRIDE COPOLYMERS MICROSPHERES FOR DYE ADSORPTION

26. From electrochemical behaviour to biotribocorrosion of metal alloys dedicated to joint prostheses

27. The Minapild Study Project: New tools to identify causes and prevent Interstitial Lung Diseases

28. Caractérisation à l'usure du couple céramique-céramique utilisé dans les prothèses totales de hanche

30. In situ analysis by SEM-EDX spectroscopy of 10 sarcoidosis cases from MINASARC study

31. Comparison of Adhesive Force of Additive's Layer on The Rubbed Surface Using Microscopic Methods

32. Correlation between nanomechanical and tribological properties of healthy and pathological synovial fluids reconstituted from synoviocyte cultures

33. Structural and pathological analysis of healthy and pathological synovial fluids

34. Wear Behavior of a New Titanium Alloy in Biological Conditions

35. A New Titanium Alloy for Biomedical Applications

36. Nano-mechanical and tribological analysis of healthy and pathological synovial fluids reconstituted from synoviocyte cultures

37. Biolubrication From Phospholipid Membranes: A Correlation between Nanomechanical Stability and Tribological Properties

38. Analysis of the tribological performances of Phospholipid Molecular Assemblies of the biological lubricants

39. Analysis of the mechanical resistance of phospholipid bilayers to shear and normal indentation in relation to lubrication: role of ions and lipid phase

40. Nano-bio-tribological analysis of the synovial fluid: role of the molecular assemblies

41. Biolubrication from Phospholipid Membranes

42. Analysis of the tribological operation of fluid phase phospholipid biomimetic surfaces

44. Phospholipides dans le fluide synovial - influence sur le fonctionnement tribologique des articulations synoviales pathologiques

45. Mechanical and physicochemical analysis of the tribological operation of joint replacements

46. ETUDES DES PROPRIETES MECANIQUES DES MEMBRANES PHOSPHOLIPIDIQUES PAR MICROSCOPIE A FORCE ATOMIQUE

47. Role of ions concentration and pH in the tribological operation of phospholipid biomimetic surfaces

48. Analysis of the tribological role of molecular assemblies of synovial fluid in the healthy joints operation

49. Lipodomic analysis of synovial fluid lubricant in pathlogical articular joints

50. Role of nano-mechanical properties in the tribological performances of phospholipid biomimetic surfaces

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