Title :
Control of uniformity of plasma-surface modification inside of small-diameter polyethylene tubing using microplasma diagnostics
Author :
Lauer, Jason L. ; Shohet, J. Leon ; Albrecht, Ralph M. ; Esnault, Stephane ; Malter, James S. ; Von Andrian, Ulrich H. ; Shohet, Stephen B.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Wisconsin, Madison, WI, USA
fDate :
4/1/2005 12:00:00 AM
Abstract :
A hollow-cathode microplasma was used to modify the lumenal surface of small-diameter polyethylene (PE). We make use of two microplasma diagnostics to monitor the plasma properties during the treatment process. A microwave cavity was used to measure the density of the microplasma. Emitted light from the microplasma was fed into a monochromator at various positions along the PE tube to assess uniformity of the microplasma. Effectiveness of plasma treatments were evaluated using the capillary-rise method at various positions along the tubing. We show a correlation between the properties of the inner surface of the PE tubing and the light emitted from the plasma. A Poly(ethylene oxide) (PEO) surfactant was immobilized to the lumenal surface of the PE tubing using the microplasma discharge. An in vitro blood-circulation loop was constructed to test the hematocompatibility of the PE tubes. After blood exposure, scanning electron microscope images were taken to assess the density of adhering platelets along the length of the tubes. The plasma-treated tubing showed fewer blood adherents than the untreated tubing. By suitably controlling the pressure drop along the tube, the uniformity of the microplasma treatment along the tubing can be optimized.
Keywords :
adhesion; biomedical materials; glow discharges; materials testing; plasma density; plasma diagnostics; plasma materials processing; polymers; scanning electron microscopy; surface treatment; adhering platelet density; blood adherents; blood-circulation loop; capillary-rise method; hematocompatibility; hollow-cathode microplasma; lumenal surface; microplasma density; microplasma diagnostics; microwave cavity; monochromator; plasma light emission; plasma treatments; plasma-surface modification; polyethylene oxide surfactant; polyethylene tubing; scanning electron microscope; Blood; Density measurement; Monitoring; Plasma density; Plasma diagnostics; Plasma measurements; Plasma properties; Polyethylene; Surface discharges; Surface treatment; Argon plasma immobilization; biomaterials; blood; capillary rise method; hematocompatibility; hollow cathode discharges; microplasma diagnostics; microplasma surface modification; microwave cavity; polyethylene oxide (PEO); small-diameter polymer tubing; vascular grafts;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2005.844533