Dotter et al., Transluminal Treatment of Arteriosclerotic Obstruction, Circulation, Vol. XXX (Nov. 1964), pp. 654-670. |
Graham et al., Expanded Polytetrafluoroethylene Vascular Prostheses Seeded with Enzymatically Derived and Cultured Canine Endothelial Cells, Surgery, vol. 91, No. 5 (May, 1982), pp. 550-559. |
Stanley et al., Enhanced Patency of Small-Diameter, Externally Supported Dacron Iliofemoral Grafts Seeded with Endothelial Cells, Surgery, vol. 92, No. 6 (Dec. 1982), pp. 994-1005. |
Popov et al, Mechanism of Cell Protrusion Formation in Electrical Field: the role of actin, Biochimica et Bioplysica Acta 1066 (1991), pp. 151-158. |
Tian Y. Tsong, Electroporation of Cell Membranes, Biophys. J. Biophysical Society, Vol. 60 (Aug. 1991), pp. 297-306. |
Douville et al., Impact of Endothelial Cell Seeding on Long-Term Patency and Subendothelial Proliferation in a Small-Caliber Highly Porous Polytetrafluoroethylene Graft, Journal of Vascular Surgery, vol. 5, No. 4 (Apr. 1978), pp. 544-550. |
Dichek et al., Seeding of Intravascular Stents with Genetically Engineered Endothelial Cells, Circulation, vol. 80, No. 5 (Nov. 1987), pp. 1347-1353. |
Flugelman et al., Genetically Engineered Endothelial Cells Remain Adherent and Viable After Stent Deployment and Exposure to Flow in Vitro, Circulation Research, vol. 70, No. 2 (Feb. 1992), pp. 348-354. |