Pub. No. US 2001/0039446 A1, Pub. Date Nov. 8, 2001, Edwin et al., application 08/833,797.* |
Pub. No. US 2001/0039449 A1, Pub. Date Nov. 8, 2001, Johnson et al. application 09/768,700.* |
Pub. No. US 2002/0010481 A1, Pub. Date Jan. 24, 2002, Jayaraman et al. application 09/739,830.* |
US Pub. No. 2001/0047202 A1, Slaikeu et al., Bioactive aneurysm closure device assembly and kit, filed Jul. 12, 1999.* |
Duerig, T.W. et al., Ti-Ni Shape Memory Alloys, Materials Properties Handbook Titanium Alloys, Advanced Materials, 1035-1048, ASM International (1994). |
Duerig, T.W. et al., An Engineer's Perspective of Pseudoelasticity, The Mechanisms of Pseudoelast icit, 369-393. |
Khmelvskaya, I. Y. et al., Thermomechanical Treatment of Ti-Ni Shape Memory Alloys: Transformations, Structure and Properties, First European Conference on Shape Memory and Superlastic Technologies SMST-99, 1-8 (Sep. 5-9, 1999). |
Nishida, M. et al., Precipitation Processes in Near-Equiatomic TiNi Shape Memory Alloys, Metallurgical Transactions, 17A, 1505-1515 (Sep. 1986). |
Pelton, A.R. et al., Optimisation of Processing and Properties of Medical Grade Nitinol Wire, Min Invas Ther & Allied Technol 2000, 9(1), 107-118. |
Simon, M. et al., A Vena Cava Filter Using Thermal Shape Memory Alloy, Radiology, 125, 89-94 (Oct. 1977). |