1. Kanda, K. and Matsuda, T.1994. “Mechanical Stress-Induced Orientation and Ultrastructural Change of Smooth Muscle Cells Cultured in Three-Dimensional Collagen Lattices”, Cell Transplantation, 3(6): 481–492.
2.
2. Wainwright, S. A., Biggs, W. D., Currey, J. D. and Gosline, J. M.1982. Mechanical Design in Organsims, Princeton, NJ: Princeton University Press.
3.
3. Rhodin, J. A. G.“Architecture of the Vessel Wall”, in Handbook of Physiology, 2(II), 1980.
4.
4. Gershon, B., Marom, G. and Cohn, D.1990. “New Arterial Prosthesis by Filament Winding”, Clinical Materials, 5: 13–27.
5.
5. Fung, Y. C.1991. “What Are the Residual Stressed Doing in Our Blood Vessels?”Annals of Biomedical Engineering, 19: 237–249.
6.
6. Annis, D., Bornat, A., Edwards, R. O., Higham, A., Loveday, B. and Wilson, J.1978. “An Elastomeric Vascular Prosthesis”, Trans. Am. Soc. Artif. Intern. Organs., 24: 209–214.
7.
7. Reneker, D. H. and Chun, I.1996. “Nanometre Diameter Fibres of Polymer, Produced by Electrospinning”, Nanotechnology, 7(3): 216–223.
8.
8. Doshi, J. and Reneker, D. H.1995. “Electrospinning Process and Applications of Electrospun Fibers”, J. Electrostatics, 32(2–3): 151–160.
9.
9. Fong, H., Chun, I and Reneker, D. H.1999. “Beaded Nanofibers Formed during Electrospinning”, Polymer, 40(16): 4585–4592.
10.
10. Fang, X., Chun, I. and Reneker, D. H.1997. “DNA Fibers by Electrospinning”, J. Macromol, Sci. Phys., 36(2): 169–173.
11.
11. Martin, G. E. and Cockshott, I. D. U.S. Patent 4, 043, 331, August 23, 1977.
12.
12. Pawlowski, K. 1999. “Development of a Biomimicking Vascular Prosthetic: Apparatus Design and Feasibility Study”, Virginia Commonwealth University Masters Thesis.
13.
13. Mikos, A. G., Lyman, M. D., Freed, L. E. and Langer, R.1994. “Wetting of Poly(L-lactic acid) and Poly(DL-lactic-co-glycolic acid) Foams for Tissue Culture”, Biomaterials, 15(1): 55–58.