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29. Two-photon lithography for customized microstructured surfaces and their influence on wettability and bacterial load.

30. Biodegradable, Self-Reinforcing Vascular Grafts for In Situ Tissue Engineering Approaches.

31. S-nitroso human serum albumin as a nitric oxide donor in drug-eluting vascular grafts: Biofunctionality and preclinical evaluation.

32. Graphene Oxide Coating Improves the Mechanical and Biological Properties of Decellularized Umbilical Cord Arteries.

33. Electrospinning of small diameter vascular grafts with preferential fiber directions and comparison of their mechanical behavior with native rat aortas.

34. Assessment of a long-term in vitro model to characterize the mechanical behavior and macrophage-mediated degradation of a novel, degradable, electrospun poly-urethane vascular graft.

35. Riboflavin-mediated photooxidation to improve the characteristics of decellularized human arterial small diameter vascular grafts.

36. Dynamic measurement of centering forces on transvalvular cannulas.

37. Impact of the testing protocol on the mechanical characterization of small diameter electrospun vascular grafts.

38. Long Term Evaluation of Nanofibrous, Bioabsorbable Polycarbonate Urethane Grafts for Small Diameter Vessel Replacement in Rodents.

39. Hard Block Degradable Polycarbonate Urethanes: Promising Biomaterials for Electrospun Vascular Prostheses.

40. Acellular vascular matrix grafts from human placenta chorion: Impact of ECM preservation on graft characteristics, protein composition and in vivo performance.

41. Biocompatibility Assessment of a New Biodegradable Vascular Graft via In Vitro Co-culture Approaches and In Vivo Model.

42. Mass spectrometric imaging of in vivo protein and lipid adsorption on biodegradable vascular replacement systems.

43. Activated Schwann Cell-Like Cells on Aligned Fibrin-Poly(Lactic-Co-Glycolic Acid) Structures: A Novel Construct for Application in Peripheral Nerve Regeneration.

44. Biodegradable, thermoplastic polyurethane grafts for small diameter vascular replacements.

47. Healing characteristics of electrospun polyurethane grafts with various porosities.

48. An alternative method to create highly transparent hollow models for flow visualization.

49. Electrospinning of aligned fibers with adjustable orientation using auxiliary electrodes.

50. Electrospun small-diameter polyurethane vascular grafts: ingrowth and differentiation of vascular-specific host cells.

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